CA2353722C - Medication collecting system - Google Patents
Medication collecting system Download PDFInfo
- Publication number
- CA2353722C CA2353722C CA002353722A CA2353722A CA2353722C CA 2353722 C CA2353722 C CA 2353722C CA 002353722 A CA002353722 A CA 002353722A CA 2353722 A CA2353722 A CA 2353722A CA 2353722 C CA2353722 C CA 2353722C
- Authority
- CA
- Canada
- Prior art keywords
- medication
- package
- patient
- ampoules
- dispensing
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Expired - Lifetime
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Classifications
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B65—CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
- B65B—MACHINES, APPARATUS OR DEVICES FOR, OR METHODS OF, PACKAGING ARTICLES OR MATERIALS; UNPACKING
- B65B19/00—Packaging rod-shaped or tubular articles susceptible to damage by abrasion or pressure, e.g. cigarettes, cigars, macaroni, spaghetti, drinking straws or welding electrodes
- B65B19/02—Packaging cigarettes
- B65B19/12—Inserting the cigarettes, or wrapped groups thereof, into preformed containers
- B65B19/18—Inserting the cigarettes, or wrapped groups thereof, into preformed containers into drawer-and-shell type boxes or cartons
-
- G—PHYSICS
- G07—CHECKING-DEVICES
- G07F—COIN-FREED OR LIKE APPARATUS
- G07F11/00—Coin-freed apparatus for dispensing, or the like, discrete articles
- G07F11/46—Coin-freed apparatus for dispensing, or the like, discrete articles from movable storage containers or supports
- G07F11/50—Coin-freed apparatus for dispensing, or the like, discrete articles from movable storage containers or supports the storage containers or supports being rotatably mounted
- G07F11/54—Coin-freed apparatus for dispensing, or the like, discrete articles from movable storage containers or supports the storage containers or supports being rotatably mounted about vertical axes
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B65—CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
- B65B—MACHINES, APPARATUS OR DEVICES FOR, OR METHODS OF, PACKAGING ARTICLES OR MATERIALS; UNPACKING
- B65B5/00—Packaging individual articles in containers or receptacles, e.g. bags, sacks, boxes, cartons, cans, jars
- B65B5/10—Filling containers or receptacles progressively or in stages by introducing successive articles, or layers of articles
- B65B5/101—Filling containers or receptacles progressively or in stages by introducing successive articles, or layers of articles by gravity
- B65B5/103—Filling containers or receptacles progressively or in stages by introducing successive articles, or layers of articles by gravity for packaging pills or tablets
-
- G—PHYSICS
- G07—CHECKING-DEVICES
- G07F—COIN-FREED OR LIKE APPARATUS
- G07F17/00—Coin-freed apparatus for hiring articles; Coin-freed facilities or services
- G07F17/0092—Coin-freed apparatus for hiring articles; Coin-freed facilities or services for assembling and dispensing of pharmaceutical articles
Abstract
A medication dispensing apparatus of the present invention contains a plurality of different kinds of medication (23) separately, dispenses the medicament to pack them intopackage belt (13), and discharges the package belt (13). The medication dispensing apparatus comprises a cutting device (27) for cutting the package belt (13) into short package belt including at least one medication package (13a) for specified period in accordance with prescription data, a stacking device (44) for stacking the short package belts and a bundling device (47) for bundling the stacked short package belts. According to the medication dispensing apparatus, it is possible to cut off medication packages (13a) and empty packages(13c) from the package belt (13) automatically and rapidly, reducing medication distributing job in a hospital. The medication dispensing apparatus is applicable to a medicament collecting system comprising a tray feed station (1), a medication dispensing station (4, 5, 6) and a tray recovering station (2).
Description
r-_, `'CTIUS 9 9/ 2 8 8 2 9 ;QEA/US 3 0 J U N 2000 MEDICATION COLLECTING SYSTEM
FIELD OF THE INVENTION
The present invention relates to a medication dispensing apparatus which contains a plurality of different kinds of medication (in this application the terms medication and ,-..
medicament are used interchangeably) separately, dispenses the medicament to pack them into a package belt, and discharges ~--.
the package belt, as well as a medication collecting system in which a medication dispensing station comprising the medication dispensing apparatus is disposed along a conveyor line and by which medication discharged from the medication dispensing station is placed onto a tray conveyed along the conveyor line and then collected.
.~.i BACKGROUND OF THE INVENTION
It is an idea disseminated in the 1960s in Japan that medication may be packaged in dosages and delivered to patients. This idea has been put into practical use mainly as packaging machines for powdered medicines. Tablet machines were developed in 1970s, and ampoule dispensing machines were developed in 1990s. These machines have been used in different ways according to their respective proper applications.
U.S. Patent No. 5,604,692 discloses an apparatus in which a plurality of preparation stations classified according to the type of medication are arranged along a conveyor line and in which AMENDED SHEET
F
FIELD OF THE INVENTION
The present invention relates to a medication dispensing apparatus which contains a plurality of different kinds of medication (in this application the terms medication and ,-..
medicament are used interchangeably) separately, dispenses the medicament to pack them into a package belt, and discharges ~--.
the package belt, as well as a medication collecting system in which a medication dispensing station comprising the medication dispensing apparatus is disposed along a conveyor line and by which medication discharged from the medication dispensing station is placed onto a tray conveyed along the conveyor line and then collected.
.~.i BACKGROUND OF THE INVENTION
It is an idea disseminated in the 1960s in Japan that medication may be packaged in dosages and delivered to patients. This idea has been put into practical use mainly as packaging machines for powdered medicines. Tablet machines were developed in 1970s, and ampoule dispensing machines were developed in 1990s. These machines have been used in different ways according to their respective proper applications.
U.S. Patent No. 5,604,692 discloses an apparatus in which a plurality of preparation stations classified according to the type of medication are arranged along a conveyor line and in which AMENDED SHEET
F
-2-medicaments prepared at the individual preparation stations are collected to a checking station by the conveyor line. This apparatus prepares medicaments for the time period described in the prescription and delivers the medicaments to the patient.
In recent years, there has been developed an idea that medicaments prescribed to one patient are all collected regardless of the type of medicament and provided to the patient - see US Patent No. 5,988,858.
In America, medicaments for one-day doses to be administered to inpatients are placed in a packaged box in the dispensary, and the box is stored in a movable medication storage cabinet, for example, MEDSTATION marketed by Pyxis Co.
With the medication storage cabinet provided in the nurse station, when the medicament administration time comes, medicaments are taken out from the medication storage cabinet and administered to patients. Upon completion of the medicament administration for one-day doses, the medication storage cabinet is returned to the dispensary. The medication storage cabinet in which medicaments for the next day have been stored is then moved to the nurse station. By adopting such a system, clear histories of the administration to the patients CTlUS99/28829 jpEA/us 3 0 J U N 2000A
In recent years, there has been developed an idea that medicaments prescribed to one patient are all collected regardless of the type of medicament and provided to the patient - see US Patent No. 5,988,858.
In America, medicaments for one-day doses to be administered to inpatients are placed in a packaged box in the dispensary, and the box is stored in a movable medication storage cabinet, for example, MEDSTATION marketed by Pyxis Co.
With the medication storage cabinet provided in the nurse station, when the medicament administration time comes, medicaments are taken out from the medication storage cabinet and administered to patients. Upon completion of the medicament administration for one-day doses, the medication storage cabinet is returned to the dispensary. The medication storage cabinet in which medicaments for the next day have been stored is then moved to the nurse station. By adopting such a system, clear histories of the administration to the patients CTlUS99/28829 jpEA/us 3 0 J U N 2000A
-3-can be obtained, allowing accounting, medicament inventory management and the like to be carried out collectively.
However, medicaments, particularly tablets, for one-day doses are packaged in the form of a continuous package belt.
The package belt comprises a medication package portion in which one dose of tablet is packed, a print portion in which patient information, medicament information, dosage information and the like are printed, and an empty package portion which is inserted between diff`erent patients. This package belt arrangement necessitates troublesome work such as separating off medication packages for each patient or for each dose, or cutting off empty packaqes. In particular, in the case of, for example, medicaments to be ordered in operation rooms, CPUs, or emergency departments, it is desired --, 15 that such work as the separation of medication packages and the cutoff of empty packages be achieved promptly for subsequent delivery of the medicaments.
SUMMARY OF THE INVENTION
The present invention having been accomplished in view of these and other problems, an object o:f the invention is to provide a medication collecting systern which is capable of automatically and promptly achievinci the separation of medication packages in the medication package belt and the cutoff of empty packages.
A%iMED SHEET
i ` AWi =
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However, medicaments, particularly tablets, for one-day doses are packaged in the form of a continuous package belt.
The package belt comprises a medication package portion in which one dose of tablet is packed, a print portion in which patient information, medicament information, dosage information and the like are printed, and an empty package portion which is inserted between diff`erent patients. This package belt arrangement necessitates troublesome work such as separating off medication packages for each patient or for each dose, or cutting off empty packaqes. In particular, in the case of, for example, medicaments to be ordered in operation rooms, CPUs, or emergency departments, it is desired --, 15 that such work as the separation of medication packages and the cutoff of empty packages be achieved promptly for subsequent delivery of the medicaments.
SUMMARY OF THE INVENTION
The present invention having been accomplished in view of these and other problems, an object o:f the invention is to provide a medication collecting systern which is capable of automatically and promptly achievinci the separation of medication packages in the medication package belt and the cutoff of empty packages.
A%iMED SHEET
i ` AWi =
IpEAIUS 3 0 J U N 2000
-4-In order to achieve the above object, the present invention provides a medication dispensing apparatus which contains a plurality of different kinds of medication separately, dispenses the medicament to pack them into package belt, and discharges the package belt, comprising:
cutting means for cutting the package belt into shortened package belts including at least one medication package for a specified period in accordance with prescription data;
stacking means for stacking the s:hort package belts;
and bundling means for bundling the stacked short package belts.
The present invention also provides a medication collecting system, comprising:
a tray feed station for accumulating a plurality of empty trays and feeding the trays to a conveyor line;
= a medication dispensing station for containing a plurality of different kinds of m-edication separately, dispensing the medicament to pack them into package belt, and discharging the package belt into the tray fed to -the conveyor line from the tray feed station; and a tray recovering station for recovering the tray containing the package belt discharged from the medication dispensing station and for sorting the trays;
AMENDED SHEET
A b,
cutting means for cutting the package belt into shortened package belts including at least one medication package for a specified period in accordance with prescription data;
stacking means for stacking the s:hort package belts;
and bundling means for bundling the stacked short package belts.
The present invention also provides a medication collecting system, comprising:
a tray feed station for accumulating a plurality of empty trays and feeding the trays to a conveyor line;
= a medication dispensing station for containing a plurality of different kinds of m-edication separately, dispensing the medicament to pack them into package belt, and discharging the package belt into the tray fed to -the conveyor line from the tray feed station; and a tray recovering station for recovering the tray containing the package belt discharged from the medication dispensing station and for sorting the trays;
AMENDED SHEET
A b,
-5-wherein the medication dispensing station comprises;
cutting means for cutting the package belt into shortened package belts including at least one mE:dication package for a specified period in accordance with prescription data;
stacking means for stacking the short package belts;
and bundling means for bundling the stacked short package belts.
With the medication dispensincl apparatus and the medication collecting system having the above constitutions, the separation of medication packages in the medication package belt and the cutoff of empty packages can be achieved automatically and promptly so that medication delivery work in the hospital-can be reduced.
Preferably, the cutting means cuts the package belt into short package belts including medication packages taken at a day or at a time. Also, preferably, the short package belt cut by the cutting means includes at least one printed empty package and at least one medication package. Further, preferably, the cutting means cuts the empty package included in the package belt and the stacking means stacks the short package belts excluding the empty package.
Preferably, the medication dispensing station further includes: separating means for separating empty packages AiviErdDED SHEET
cutting means for cutting the package belt into shortened package belts including at least one mE:dication package for a specified period in accordance with prescription data;
stacking means for stacking the short package belts;
and bundling means for bundling the stacked short package belts.
With the medication dispensincl apparatus and the medication collecting system having the above constitutions, the separation of medication packages in the medication package belt and the cutoff of empty packages can be achieved automatically and promptly so that medication delivery work in the hospital-can be reduced.
Preferably, the cutting means cuts the package belt into short package belts including medication packages taken at a day or at a time. Also, preferably, the short package belt cut by the cutting means includes at least one printed empty package and at least one medication package. Further, preferably, the cutting means cuts the empty package included in the package belt and the stacking means stacks the short package belts excluding the empty package.
Preferably, the medication dispensing station further includes: separating means for separating empty packages AiviErdDED SHEET
-6-from the bundled short package belts; and means for putting the bundled short package separated by the separating means into the tray fed to the conveyor line.
The medication collecting system may further comprise a liquid medication dispensing station for containing a plurality of different kinds of liquid medication or ampoules separately, dispensing the liquid medicament, and discharging the liquid medicament into the tray fed to the conveyor line from the tray feed station.
BRIEF DESCRIPTION OF THE DRAWINGS
The following description of an embodiment of the present invention is carried out with reference to the accompanying drawings, in which:
~...~
= Fig. 1 is a schematic view of a medication collecting system according to the embodiment of the invention;
Fig. 2A is a front view of an initial state showing the tray discharging structure of the tray feed station, and Fig.
2B is a front view showing a state in which the lowermost tray is discharged;
Fig. 3 is a partly broken perspective view showing the tablet dispensing station of Fig. 1;
Fig. 4 is a front view showing the cutter part of Fig. 3;
AMENDED SHEET
' PCT/US99/28829
The medication collecting system may further comprise a liquid medication dispensing station for containing a plurality of different kinds of liquid medication or ampoules separately, dispensing the liquid medicament, and discharging the liquid medicament into the tray fed to the conveyor line from the tray feed station.
BRIEF DESCRIPTION OF THE DRAWINGS
The following description of an embodiment of the present invention is carried out with reference to the accompanying drawings, in which:
~...~
= Fig. 1 is a schematic view of a medication collecting system according to the embodiment of the invention;
Fig. 2A is a front view of an initial state showing the tray discharging structure of the tray feed station, and Fig.
2B is a front view showing a state in which the lowermost tray is discharged;
Fig. 3 is a partly broken perspective view showing the tablet dispensing station of Fig. 1;
Fig. 4 is a front view showing the cutter part of Fig. 3;
AMENDED SHEET
' PCT/US99/28829
-7-Fig. 5 is a perspective view showing the direction changing part of Fig. 3;
Fig. 6 is a front sectional view showing the conveyor of Fig. 3;
Fig. 7 is a perspective view showing the package-belt bundling section of Fig. 1;
Fig. 8 is a perspective view shc>wing the distributing member of Fig. 7;
Fig. 9 is a side sectional view of Fig. 8;
Fig. 10 is a partly broken perspective view showing the array ampoule dispensing station of Fig. 1;
Fig. 11A is a front sectional view showing the ampoule cassette of Fig. 10, Fig. 11B is a partial sectional view showing an ampoule discharging state including a stop provided in a lowermost portion of the ampoule cassette, and Fig. 11C
.,..' is a partial sectional view showing an ampoule-holding state including the stop;
Fig. 12 is a partly broken perspective view showing the random ampoule dispensing station;
Fig. 13A is a front sectional view showing the ampoule container of Fig. 12, and Fig. 13B is a top sectional view showing the ampoule container of Fig. 12;
Fig. 14 is a sectional view showing the lifter part of Fig. 12;
Fig. 15A is a sectional view showing the lifter container of the lifter part of Fig. 14 with its bottom plates ~"c"dDED SHEET
PCTlUS99/ 28 829 iPEA/Us 3 0 J U N 2000
Fig. 6 is a front sectional view showing the conveyor of Fig. 3;
Fig. 7 is a perspective view showing the package-belt bundling section of Fig. 1;
Fig. 8 is a perspective view shc>wing the distributing member of Fig. 7;
Fig. 9 is a side sectional view of Fig. 8;
Fig. 10 is a partly broken perspective view showing the array ampoule dispensing station of Fig. 1;
Fig. 11A is a front sectional view showing the ampoule cassette of Fig. 10, Fig. 11B is a partial sectional view showing an ampoule discharging state including a stop provided in a lowermost portion of the ampoule cassette, and Fig. 11C
.,..' is a partial sectional view showing an ampoule-holding state including the stop;
Fig. 12 is a partly broken perspective view showing the random ampoule dispensing station;
Fig. 13A is a front sectional view showing the ampoule container of Fig. 12, and Fig. 13B is a top sectional view showing the ampoule container of Fig. 12;
Fig. 14 is a sectional view showing the lifter part of Fig. 12;
Fig. 15A is a sectional view showing the lifter container of the lifter part of Fig. 14 with its bottom plates ~"c"dDED SHEET
PCTlUS99/ 28 829 iPEA/Us 3 0 J U N 2000
-8-released from the closed state, and F_Lg. 15B is a sectional view showing a state in which the lifter container has been elevated from the position shown in Fig. 15A;
Fig. 16 is a schematic perspective view showing the label issuing station of Fig. 1;
Fig. 17 is a sectional view showing the tray recovering station of Fig. 1;
Figs. 18A and 18B are front views showing examples of the ,-~
package belt in which medicaments are packed;
Figs. 19A and 19B are flow charits showing the tablet replenishing work in the tablet dispensing station;
Figs. 20A and 21A are f low charts showing the ampoule replenishing work in the array ampoule dispensing station or random ampoule dispensing station; and Fig. 21 is a schematic sectional view of an automatic packing station that can be provided instead of the tray recovering station of Fig. 17.
DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENT
Fig. 1 shows a medication collecting system according to the present embodiment.
In this medication collecting system, a tablet dispensing station 4, an array ampoule dispensinq station 5, a random ampoule dispensing station 6 and a label issuing station 7 are disposed one after another along a conveyor line AMENDED SHEET
IPEA/Us 3 0 J U N 2000
Fig. 16 is a schematic perspective view showing the label issuing station of Fig. 1;
Fig. 17 is a sectional view showing the tray recovering station of Fig. 1;
Figs. 18A and 18B are front views showing examples of the ,-~
package belt in which medicaments are packed;
Figs. 19A and 19B are flow charits showing the tablet replenishing work in the tablet dispensing station;
Figs. 20A and 21A are f low charts showing the ampoule replenishing work in the array ampoule dispensing station or random ampoule dispensing station; and Fig. 21 is a schematic sectional view of an automatic packing station that can be provided instead of the tray recovering station of Fig. 17.
DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENT
Fig. 1 shows a medication collecting system according to the present embodiment.
In this medication collecting system, a tablet dispensing station 4, an array ampoule dispensinq station 5, a random ampoule dispensing station 6 and a label issuing station 7 are disposed one after another along a conveyor line AMENDED SHEET
IPEA/Us 3 0 J U N 2000
-9-3 that connects a tray feed station 1 and a tray recovering station 2 to each other.
<Tray Feed Station>
The tray feed station 1, in which a plurality of trays 9 are stored in a stacked state within a cylindrical housing 8 having a rectangular cross section as shown in Fig. 2A, is .--, enabled to feed out the trays 9 one by one. The housing 8 has, on its opposite sides, support feed claws 10 which are pivoted by an unshown motor or the like, respectively. The support feed claws 10 support peripheries of the lowermost tray 9 by their lower claw portions l0a and, by pivoting, place the lowermost tray 9 onto a feed-out plate 11 located below the lowermost tray 9. During this process, the support feed claws 10 support peripheries of the next tray 9 by their upper claw portions lOb as shown in Fig. 2B, thereby making it possible to take out only the lowermost tray 9. In addition, the support feed claws 10, after taking out the lowermost tray 9, return to the original position and support the next tray 9 by their lower claw portions 10a. The feed-out plate 11, which is guided by a lower opposite face of the housing 8, can be moved up and down by a motor or the like. This feed-out plate 11 has a plurality of rotatiori-drivable rollers 12 provided in parallel. In the lower operating position, the feed-out plate 11 is enabled to transversely convey the tray 9 placed through a lower opening AMENDED SHEET
fpEA/Us 3 0 J U N 2000
<Tray Feed Station>
The tray feed station 1, in which a plurality of trays 9 are stored in a stacked state within a cylindrical housing 8 having a rectangular cross section as shown in Fig. 2A, is .--, enabled to feed out the trays 9 one by one. The housing 8 has, on its opposite sides, support feed claws 10 which are pivoted by an unshown motor or the like, respectively. The support feed claws 10 support peripheries of the lowermost tray 9 by their lower claw portions l0a and, by pivoting, place the lowermost tray 9 onto a feed-out plate 11 located below the lowermost tray 9. During this process, the support feed claws 10 support peripheries of the next tray 9 by their upper claw portions lOb as shown in Fig. 2B, thereby making it possible to take out only the lowermost tray 9. In addition, the support feed claws 10, after taking out the lowermost tray 9, return to the original position and support the next tray 9 by their lower claw portions 10a. The feed-out plate 11, which is guided by a lower opposite face of the housing 8, can be moved up and down by a motor or the like. This feed-out plate 11 has a plurality of rotatiori-drivable rollers 12 provided in parallel. In the lower operating position, the feed-out plate 11 is enabled to transversely convey the tray 9 placed through a lower opening AMENDED SHEET
fpEA/Us 3 0 J U N 2000
-10-of the housing 8 and feed out the tray 9 to the conveyor line 3.
<Tablet Dispensirig Station>
The tablet dispensing station 4, which is provided to pack tablets 23 into a strip-shaped package belt 13 in doses, comprises a tablet feed section 14, a printing and packaging section 15 and a package-belt bundling section 16 (Fig. 1) as shown in Fig. 3.
The tablet feed section 14 comprises a cylindrical drum 18 equipped with tablet guide parts 17 being doubled inside and outside and extending up and down, a plurality of motor bases 19 disposed vertically and circumferentially on outer periphery of each tablet guide part 17, and a plurality of tablet cassettes 20 removably attached to the motor bases, respectively. Each tablet guide part 17 is divided circumferentially for each column of the vertically arrayed motor bases 19 and tablet cassettes 20, by which a tablet guide passage 21 extending vertically is formed. Below the cylindrical drum 18, are disposed hoppers 22a, 22b, which make it possible to collect tablets 23 dropping via the tablet guide passages 21 to one place.
In the tablet cassettes 20, different types of tablets 23 are stored, respectively, and tablets 23 amounting to one-day doses are discharged in units of one dose based on prescription information. The discharged tablets 23 are counted by sensors (not shown) provided on the motor bases 19, and fed to the AIMIENDED SHEET
i- I Y
<Tablet Dispensirig Station>
The tablet dispensing station 4, which is provided to pack tablets 23 into a strip-shaped package belt 13 in doses, comprises a tablet feed section 14, a printing and packaging section 15 and a package-belt bundling section 16 (Fig. 1) as shown in Fig. 3.
The tablet feed section 14 comprises a cylindrical drum 18 equipped with tablet guide parts 17 being doubled inside and outside and extending up and down, a plurality of motor bases 19 disposed vertically and circumferentially on outer periphery of each tablet guide part 17, and a plurality of tablet cassettes 20 removably attached to the motor bases, respectively. Each tablet guide part 17 is divided circumferentially for each column of the vertically arrayed motor bases 19 and tablet cassettes 20, by which a tablet guide passage 21 extending vertically is formed. Below the cylindrical drum 18, are disposed hoppers 22a, 22b, which make it possible to collect tablets 23 dropping via the tablet guide passages 21 to one place.
In the tablet cassettes 20, different types of tablets 23 are stored, respectively, and tablets 23 amounting to one-day doses are discharged in units of one dose based on prescription information. The discharged tablets 23 are counted by sensors (not shown) provided on the motor bases 19, and fed to the AIMIENDED SHEET
i- I Y
-11-printing and packaging section 15 via the hoppers 22 through the tablet guide passages 21. The number of tablets left in a tablet cassette 20 can be counted based on the number of initial storage number and the count number by the sensor, allowing a decision as to whether or not the tablets are lacking.
The printing and packaging section. 15 comprises a roll 24 on which the package belt is wound, a printing part 25 for printing specified information on the surface of the package belt 13, a sealing part 26 for sealing the package belt 13 in doses, and a cutter part 27 for cutting the package belt 13 into specified lengths.
The cutter part 27, as shown iri Fig. 4, comprises a circular cutter 29 provided so as to be movable up and down along a guide shaft 28, and a pivotable cutter guide 30 which has a guide recess for guiding the peripheral cutting edge of the cutter 29 and which is pivotab:le about a pivot 30a provided at an upper end. A rod 32 of a solenoid 31 is coupled to a lower end portion of the cutter guide 30 so that the cutter guide 30 can be put into adjacency to the package belt 13, facilitating the cutting by the cutter 29.
The package-belt bundling section 16 is provided to bundle and bind the package belt 13 cut by the cutter 29. To this package-belt bundling section 16, the package belt 13 is fed via a direction changing part 33 and a conveyor 34.
AMENDED SHEET
A-PCT1'JS99/28 829 ipEAlUs 3 0 J U N 2000
The printing and packaging section. 15 comprises a roll 24 on which the package belt is wound, a printing part 25 for printing specified information on the surface of the package belt 13, a sealing part 26 for sealing the package belt 13 in doses, and a cutter part 27 for cutting the package belt 13 into specified lengths.
The cutter part 27, as shown iri Fig. 4, comprises a circular cutter 29 provided so as to be movable up and down along a guide shaft 28, and a pivotable cutter guide 30 which has a guide recess for guiding the peripheral cutting edge of the cutter 29 and which is pivotab:le about a pivot 30a provided at an upper end. A rod 32 of a solenoid 31 is coupled to a lower end portion of the cutter guide 30 so that the cutter guide 30 can be put into adjacency to the package belt 13, facilitating the cutting by the cutter 29.
The package-belt bundling section 16 is provided to bundle and bind the package belt 13 cut by the cutter 29. To this package-belt bundling section 16, the package belt 13 is fed via a direction changing part 33 and a conveyor 34.
AMENDED SHEET
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-12-The direction changing part 33, as shown in Fig. 5, is provided to turn the cut package belt 13 approximately 90 degrees (from generally vertical to generally horizontal) while conveying the package belt 13 in the direction of arrow.
This direction changing part 33 comprises a guide member 35 for guiding the package belt 13, a guicie plate 36 for guiding the lower edge of the package belt 13 to the guide member 35, and a wire 37 for gradually engaging the upper edge of the package belt 13 to turn the package belt 13 sideways.
The conveyor 34, as shown in Fig. 6, is enabled to convey the package belt 13 obliquely upward by a horizontal conveyor belt 38 and a sloped conveyor belt 39. A tension sheet 40 is disposed above part of the horizontal conveyor belt 38 and the sloped conveyor belt 39. This tension sheet 40 is formed of --~ 15 a flexible material having small frictional resistance. A
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sponge roller 41 is disposed up-and-down swingably on the entrance side of an insertion passage (lefined by the belt 38 and the tension sheet 40. The belit 38 being set to a conveyance speed higher than that in the direction changing part 33. If an unreasonable tensile force should act upon the swinging movement of the package belt 13, an unshown limit switch is turned off by the sponge roller 41 so that the driving of the belt 38 is stopped. Meanwhile, on the exit side of the insertion passage, a presser member 42 biased by a spring is provided, biasing the tension sheet 40 toward the belt 39. As a result, the package belt: 13 AMENDF-) cucrT
/ A
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This direction changing part 33 comprises a guide member 35 for guiding the package belt 13, a guicie plate 36 for guiding the lower edge of the package belt 13 to the guide member 35, and a wire 37 for gradually engaging the upper edge of the package belt 13 to turn the package belt 13 sideways.
The conveyor 34, as shown in Fig. 6, is enabled to convey the package belt 13 obliquely upward by a horizontal conveyor belt 38 and a sloped conveyor belt 39. A tension sheet 40 is disposed above part of the horizontal conveyor belt 38 and the sloped conveyor belt 39. This tension sheet 40 is formed of --~ 15 a flexible material having small frictional resistance. A
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sponge roller 41 is disposed up-and-down swingably on the entrance side of an insertion passage (lefined by the belt 38 and the tension sheet 40. The belit 38 being set to a conveyance speed higher than that in the direction changing part 33. If an unreasonable tensile force should act upon the swinging movement of the package belt 13, an unshown limit switch is turned off by the sponge roller 41 so that the driving of the belt 38 is stopped. Meanwhile, on the exit side of the insertion passage, a presser member 42 biased by a spring is provided, biasing the tension sheet 40 toward the belt 39. As a result, the package belt: 13 AMENDF-) cucrT
/ A
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-13-is pressed against the belt 38 with the frictional resistance increased, so that the package belt 13 can be prevented from clogging on the exit side. In addition, reference numeral 43 denotes a delivery belt for delivering the package belt 13 to the package-belt bundling section 16.
The package-belt bundling section 16, as shown in Figs.
7 and 8, comprises an inverting member 44, a lifter 45, a feed-in member 46, a bundling machine 47 and a distributing member 48.
The inverting member 44 is supported so as to be reciprocatively pivotable over a range of approximately 180 degrees about a support shaft 44a. This inverting member 44 comprises a pull-in conveyor 49 for pulling in the package belt 13 from the delivery belt 43. A stopper 50 for positioning the conveyed-in package belt 13 is protrusively at an end of the provided portion pull-in conveyor 49. A
sensor (not shown) is provided in proxi:mity to the stopper 50 so that the presence or absence of the :package belt 13 can be detected.
The lifter 45 is plate-shaped anci has a side wall 45a extending along both side edge portions, and a recess 45b extending longitudinally in a central portion. The lifter 45 is reciprocatively moved between a lower position where the package belt 13 inverted by the inverting member 44 can be loaded, and an upper position where the package belt 13 can be conveyed to the bundling machine 47 by the feed-in member 46.
AIMIENDED SFiEET
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ipEA/U5 3 0 J U N 2000
The package-belt bundling section 16, as shown in Figs.
7 and 8, comprises an inverting member 44, a lifter 45, a feed-in member 46, a bundling machine 47 and a distributing member 48.
The inverting member 44 is supported so as to be reciprocatively pivotable over a range of approximately 180 degrees about a support shaft 44a. This inverting member 44 comprises a pull-in conveyor 49 for pulling in the package belt 13 from the delivery belt 43. A stopper 50 for positioning the conveyed-in package belt 13 is protrusively at an end of the provided portion pull-in conveyor 49. A
sensor (not shown) is provided in proxi:mity to the stopper 50 so that the presence or absence of the :package belt 13 can be detected.
The lifter 45 is plate-shaped anci has a side wall 45a extending along both side edge portions, and a recess 45b extending longitudinally in a central portion. The lifter 45 is reciprocatively moved between a lower position where the package belt 13 inverted by the inverting member 44 can be loaded, and an upper position where the package belt 13 can be conveyed to the bundling machine 47 by the feed-in member 46.
AIMIENDED SFiEET
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-14-The feed-in member 46 has a brush 52 provided at an end of a feed-in arm 51 that reciprocatively moves along the side portion 45a of the lifter 45 located i;n the upper position.
The bundling machine 47 comprises a looped rectangular frame body 53, and a roller 55 on which bundling tape 54 is wound, where central part of the stacked package belt 13 can be bundled with the tape 54 unwound from the roller 55. A
chute 56 is provided in proximity to the bundling machine 47.
This chute 56 has a tip end directed obliquely upward, and a presser 46a of the feed-in member 46 presses a lever 56a, by which the chute 56 is pivoted and directed obliquely downward.
The distributing member 48, as shown in Fig. 8, has an opening 58 formed in a sloped plate 57 directed obliquely downward, and this opening 58 is opened and closed by a distributing plate 59. A lower end edge of the sloped plate 57 extends to the conveyor line 3, allowing the bundled package belt 13 to be accommodated in the tray 9. Also, a first link 60 is pivotably coupled at its one end portion to the distributing plate 59 as shown in Fig. 9. A second link 62 provided on the rotating shaft of a motor 61 is pivotably coupled to the other end portion of the first link 60. The motor 61 is so designed as to stop every 180 degree rotation.
As a result of this, the distributing plate 59 is pivotable between one position where the distributing plate 59 is aligned with the sloped plate 57 with the lower edge slightly out of alignment with the top surface, and another _"~DED SHEET
PCTIUS 9 t 29 IPFA/US 3tAR P000
The bundling machine 47 comprises a looped rectangular frame body 53, and a roller 55 on which bundling tape 54 is wound, where central part of the stacked package belt 13 can be bundled with the tape 54 unwound from the roller 55. A
chute 56 is provided in proximity to the bundling machine 47.
This chute 56 has a tip end directed obliquely upward, and a presser 46a of the feed-in member 46 presses a lever 56a, by which the chute 56 is pivoted and directed obliquely downward.
The distributing member 48, as shown in Fig. 8, has an opening 58 formed in a sloped plate 57 directed obliquely downward, and this opening 58 is opened and closed by a distributing plate 59. A lower end edge of the sloped plate 57 extends to the conveyor line 3, allowing the bundled package belt 13 to be accommodated in the tray 9. Also, a first link 60 is pivotably coupled at its one end portion to the distributing plate 59 as shown in Fig. 9. A second link 62 provided on the rotating shaft of a motor 61 is pivotably coupled to the other end portion of the first link 60. The motor 61 is so designed as to stop every 180 degree rotation.
As a result of this, the distributing plate 59 is pivotable between one position where the distributing plate 59 is aligned with the sloped plate 57 with the lower edge slightly out of alignment with the top surface, and another _"~DED SHEET
PCTIUS 9 t 29 IPFA/US 3tAR P000
-15-position where the distributing plate 59 is positioned generally vertical. Also, a dust box 63 is disposed below the opening 58 of the sloped plate 57, so as to collect unnecessary portions (empty packages) of the package belt 13.
<Array Ampoule Dispensing Station>
The array ampoule dispensing stati_on 5, as shown in Fig.
10, comprises an ampoule storage section 64, an ampoule conveying section 65 and an ampoule dispensing section 66, and is used mainly to dispense ampoules 67 each having a large capacity as much as 10 to 30 ml (for more details, see Japanese Patent Laid-Open Publication HEI 7-267370).
In the ampoule storage section 64, a plurality of drawer cradles 68 are provided in array. In each drawer cradle 68, a plurality of ampoule cassettes 69 are provided in array.
Each ampoule cassette 69, as shown in Fi.g. 11A, is shaped into a box having an openable/closable door 70 provided on one side face, and in its interior, the ampoules 67 are stored in a laterally-postured and arrayed state. Also, as shown in Figs.
11B and 11C, the lower face of the ampoule cassette 69 is opened, where a stop 71 is provided at the opening so as to prevent the ampoules 67 from falling off. When the ampoule cassette 69 is set up, only the lowermost-positioned ampoule 67 can be discharged out downward by wi'_thdrawing of stop 71.
Further, handles 72 each protruding in a generally L shape are formed above and below on one side face of the ampoule cassette 69 A."; SrdDEt? SHEEP
<Array Ampoule Dispensing Station>
The array ampoule dispensing stati_on 5, as shown in Fig.
10, comprises an ampoule storage section 64, an ampoule conveying section 65 and an ampoule dispensing section 66, and is used mainly to dispense ampoules 67 each having a large capacity as much as 10 to 30 ml (for more details, see Japanese Patent Laid-Open Publication HEI 7-267370).
In the ampoule storage section 64, a plurality of drawer cradles 68 are provided in array. In each drawer cradle 68, a plurality of ampoule cassettes 69 are provided in array.
Each ampoule cassette 69, as shown in Fi.g. 11A, is shaped into a box having an openable/closable door 70 provided on one side face, and in its interior, the ampoules 67 are stored in a laterally-postured and arrayed state. Also, as shown in Figs.
11B and 11C, the lower face of the ampoule cassette 69 is opened, where a stop 71 is provided at the opening so as to prevent the ampoules 67 from falling off. When the ampoule cassette 69 is set up, only the lowermost-positioned ampoule 67 can be discharged out downward by wi'_thdrawing of stop 71.
Further, handles 72 each protruding in a generally L shape are formed above and below on one side face of the ampoule cassette 69 A."; SrdDEt? SHEEP
-16-perpendicular to the door 70. Detent actuator portion 72a is formed in the lower handle 72, so that an engaging detent 72b provided at the lower end surface of the ampoule cassette 69 can be operated to extend and retract. By this engaging detent, the ampoule cassette 69 can be attached to the drawer cradle 68. The drawer cradle 68 is equipped with discharge rotors 73, and the ampoules 67 within the ampoule cassette 69 can be discharged one by one by the discharge rotor 73 pivoting between the states of Figs. 11B and 11A. In addition, an insertion hole (not shown) intended for a sensor is bored in the lower-end side surface of the ampoule cassette 69, making it possible to detect that the remaining quantity of stock of the ampoules 67 has decreased or is lacking.
The ampoule conveying section 65 comprises a first conveyor belt 74 disposed below the drawer cradle 68, a stock storage 75 provided at the conveyance end of the first conveyor belt 74, and a second conveyor belt 76 disposed below the stock storage 75 generally perpendicular to the first conveyor belt 74.
The ampoule dispensing section 66 comprises a stock container 77 for storing conveyed ampoules 67, and an up-down member 78 for discharging the ampoules 67 stored in container 77 to the tray 9 on the conveyor line 3 while suppressing any impact force acting on the ampoules 67.
<Random Ampoule Dispensing Station>
6 2ooo
The ampoule conveying section 65 comprises a first conveyor belt 74 disposed below the drawer cradle 68, a stock storage 75 provided at the conveyance end of the first conveyor belt 74, and a second conveyor belt 76 disposed below the stock storage 75 generally perpendicular to the first conveyor belt 74.
The ampoule dispensing section 66 comprises a stock container 77 for storing conveyed ampoules 67, and an up-down member 78 for discharging the ampoules 67 stored in container 77 to the tray 9 on the conveyor line 3 while suppressing any impact force acting on the ampoules 67.
<Random Ampoule Dispensing Station>
6 2ooo
-17-The random ampoule dispensing station 6, as shown in Fig.
12, comprises a drum-shaped rotary storage rack 79, and a lifter part 80 which goes up and down in the center of the rotary storage rack 79, and is used to dispense mainly small-capacity ampoules 81 (Fig. 13) with a capacity less than 10 ml (for more details, see Japanese Patent: Applications HEI 10-149489, HEI 10-99001, HEI 9-142473, HE:r 9-212102, etc.).
In the rotary storage rack 79, a plurality of ampoule containers 82 are disposed vertically ar.Ld circumferentially in so that an up-and-down space for the lifter part 80 can be obtained on the central side. Each ampoule container 82, as shown in Figs. 13A and 13B, comprises an ampoule storage chamber 83 and an ampoule array-and-coriveyance section 84.
A bottom wall 85 of the ampoule storage chamber 83 is pivotable about a pivot 85a, and will be inclined by rotation of a rotating arm 86 so that the ampoules 81 can be moved to the ampoule array-and-conveyance section 84. Also, in the ampoule array-and-conveyance section 84, a belt 88 is stretched between pulleys 87 so that the ampoules 81 placed on the belt 88 can be conveyed by one pulley 87 being rotated by the drive of a motor 87a. The ampoule array-and-conveyance section 84 can be moved up and down by the drive of a motor, between a lower position where the anipoules 81 within the ampoule storage chamber 83 can be loaded on, and an upper position where the ampoules 81 can be discharged to the lifter ..r' part 80 via a chute AMENDED SHEFT
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IPEA/US 3 n J U N 2000
12, comprises a drum-shaped rotary storage rack 79, and a lifter part 80 which goes up and down in the center of the rotary storage rack 79, and is used to dispense mainly small-capacity ampoules 81 (Fig. 13) with a capacity less than 10 ml (for more details, see Japanese Patent: Applications HEI 10-149489, HEI 10-99001, HEI 9-142473, HE:r 9-212102, etc.).
In the rotary storage rack 79, a plurality of ampoule containers 82 are disposed vertically ar.Ld circumferentially in so that an up-and-down space for the lifter part 80 can be obtained on the central side. Each ampoule container 82, as shown in Figs. 13A and 13B, comprises an ampoule storage chamber 83 and an ampoule array-and-coriveyance section 84.
A bottom wall 85 of the ampoule storage chamber 83 is pivotable about a pivot 85a, and will be inclined by rotation of a rotating arm 86 so that the ampoules 81 can be moved to the ampoule array-and-conveyance section 84. Also, in the ampoule array-and-conveyance section 84, a belt 88 is stretched between pulleys 87 so that the ampoules 81 placed on the belt 88 can be conveyed by one pulley 87 being rotated by the drive of a motor 87a. The ampoule array-and-conveyance section 84 can be moved up and down by the drive of a motor, between a lower position where the anipoules 81 within the ampoule storage chamber 83 can be loaded on, and an upper position where the ampoules 81 can be discharged to the lifter ..r' part 80 via a chute AMENDED SHEFT
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IPEA/US 3 n J U N 2000
-18-83a. In addition, the ampoule storage chamber 83 and the ampoule array-and-conveyance section 84 are partitioned from each other by a shutter 83b which is and opened and closed with a pinion 83c and a rack 83d.
In the lifter part 80, as shown in Figs. 12 and 14, a lifter container 90 is moved up and down along three rails 89 provided vertically in a center-side space of the rotary storage rack 79 (for more details, see Japanese Patent Application HEI 9-71530) The lifter container 90 is funnel-shaped and has spiral guide blades 91. formed therein. The lifter container 90 is rotated by an unshown motor and leads a fed ampoule 67 to a central opening 92 under the guide of the guide blades 91. The opening 92 is opened and closed by an opening/closing valve 94 that is moved up and down with an opening/closing arm 93.
Below the lifter container 90, is provided a delivery stock storage device 95. In this delivery stock storage device 95, as shown in Fig. 15A, bottom plates 96 are provided into two divisions, right and left, each of which is pivotable about a pivot 96a to open a bottom-f`ace opening 97. The bottom plates 96, as shown in Fig. 14, receive the ampoules 67 from the lifter container 90, and keep the bottom-face opening 97 closed by links 98 until the bottom p3ates 96 are located above and near the tray 9. Then, wheri the bottom plates 96 are located above and near the tray 9, the bottom plates 96 are released from the closed state by the links 98, as shown in Fig. 15A. As a result, when the lifter AMENDED SHEET
i --IpEA/US 3 0 J U N 2000
In the lifter part 80, as shown in Figs. 12 and 14, a lifter container 90 is moved up and down along three rails 89 provided vertically in a center-side space of the rotary storage rack 79 (for more details, see Japanese Patent Application HEI 9-71530) The lifter container 90 is funnel-shaped and has spiral guide blades 91. formed therein. The lifter container 90 is rotated by an unshown motor and leads a fed ampoule 67 to a central opening 92 under the guide of the guide blades 91. The opening 92 is opened and closed by an opening/closing valve 94 that is moved up and down with an opening/closing arm 93.
Below the lifter container 90, is provided a delivery stock storage device 95. In this delivery stock storage device 95, as shown in Fig. 15A, bottom plates 96 are provided into two divisions, right and left, each of which is pivotable about a pivot 96a to open a bottom-f`ace opening 97. The bottom plates 96, as shown in Fig. 14, receive the ampoules 67 from the lifter container 90, and keep the bottom-face opening 97 closed by links 98 until the bottom p3ates 96 are located above and near the tray 9. Then, wheri the bottom plates 96 are located above and near the tray 9, the bottom plates 96 are released from the closed state by the links 98, as shown in Fig. 15A. As a result, when the lifter AMENDED SHEET
i --IpEA/US 3 0 J U N 2000
-19-container 90 is moved up relative to the tray 9, the bottom plates 96 pivot while keeping their free end portions in contact with the top face of the tray 9, gradually opening the bottom-face opening 97 as shown in Fig. 15B. Accordingly, the ampoules 67 discharged from the li-fter container 90 are smoothly moved into the tray 9 without undergoing any impact force.
<Label Issuing Station>
The label issuing station 7 has a plurality of printers 99a, 99b arranged vertically as showr.i in Fig. 16, and the uppermost three printers 99a are fed with prescription paper 101 from stock storages 100, respectively. This prescription paper 101 is used for a pharmacist to later verify whether or not the dispensed medication is correcit. Also, the printers 99b (shown juxtaposed below printers 99a) are each fed with a label 103 wound around a roll 102. This label 103 is affixed to the ampoules 67, storage containers or the like, and is used to indicate their contents.
<Tray Recovering Station>
In the tray recovering station 2, as shown in Fig. 17, a support base 106 is provided on rails 105 placed above and below in a support main frame 104 so that the support base 106 is reciprocatively movable along an X-axis direction parallel to the conveyor line 3. The support base 106 is equipped with guide rails 107 extending vertically. Base 108a is movable up and down along rails 107 by a belt chain 108 along a vertical Y-axis direction.
PCTIu899/28 829 IPEpVUS 3 0 J U N ?nno
<Label Issuing Station>
The label issuing station 7 has a plurality of printers 99a, 99b arranged vertically as showr.i in Fig. 16, and the uppermost three printers 99a are fed with prescription paper 101 from stock storages 100, respectively. This prescription paper 101 is used for a pharmacist to later verify whether or not the dispensed medication is correcit. Also, the printers 99b (shown juxtaposed below printers 99a) are each fed with a label 103 wound around a roll 102. This label 103 is affixed to the ampoules 67, storage containers or the like, and is used to indicate their contents.
<Tray Recovering Station>
In the tray recovering station 2, as shown in Fig. 17, a support base 106 is provided on rails 105 placed above and below in a support main frame 104 so that the support base 106 is reciprocatively movable along an X-axis direction parallel to the conveyor line 3. The support base 106 is equipped with guide rails 107 extending vertically. Base 108a is movable up and down along rails 107 by a belt chain 108 along a vertical Y-axis direction.
PCTIu899/28 829 IPEpVUS 3 0 J U N ?nno
-20-Base 108a is equipped with a cylinder 109. Also, a rod 109a of the cylinder 109 is equipped with a gripping arm 110, which goes back and forth along a Z-axis direction perpendicular to the conveyor line 3. The gripping arin 110 has at its front end a claw portion 110a formed for gripping a peripheral portion of the tray 9 (see also Japanese Patent Laid-Open Publication HEI 9-51922 etc.).
<System Operation>
Next, operation of the medication collecting system constructed as described above is explained.
When patient prescription information is read, a tray 9 is fed out from the tray feed station 1 to the conveyor line 3. The tray 9 fed out to the conveyor line 3 is first conveyed to the tablet dispensing station 4. If information indicating that tablets 23 are not contained in the prescription information, then the tray 9 passes through the tablet dispensing station 4 without stopping. If such information is contained, the tray 9 is stopped below the sloped plate 57 of the distributing mennber 48.
For the prescription of the tablets 23, at the tablet dispensing station 4, one-day dose of medicaments are fed from the relevant tablet cassette 20 in steps of one dose one after another according to the dosage time, ar.id then are packed into medication packages formed in the package belt 13.
AMENDED SHEET
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<System Operation>
Next, operation of the medication collecting system constructed as described above is explained.
When patient prescription information is read, a tray 9 is fed out from the tray feed station 1 to the conveyor line 3. The tray 9 fed out to the conveyor line 3 is first conveyed to the tablet dispensing station 4. If information indicating that tablets 23 are not contained in the prescription information, then the tray 9 passes through the tablet dispensing station 4 without stopping. If such information is contained, the tray 9 is stopped below the sloped plate 57 of the distributing mennber 48.
For the prescription of the tablets 23, at the tablet dispensing station 4, one-day dose of medicaments are fed from the relevant tablet cassette 20 in steps of one dose one after another according to the dosage time, ar.id then are packed into medication packages formed in the package belt 13.
AMENDED SHEET
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-21-As for the form of package, if the one-day dosage includes a plurality of times, for exarnple, morning, noon and evening, then medication packages 13a of the tablets 23 are continuously packaged as shown in Fig. 18A. Alternatively, empty packages are formed between the niedication packages 13a of the tablets 23 and the contents of the tablets 23 dosage information and the like are printed on these empty packages to make printed portions 13b as shown in Fig. 18B. In the former case, as shown in Fig. 18A, the package belt is cut off by the cutter 29 with one-day doses taken as a unit. Thus, the need for bundling by the bundling machine 47 is eliminated. In the latter case, as shown in Fig. 18B, the package belt is cut off by the cutter 29 with one dose taken as a unit. In addition, with a different patient, two empty ~ 15 packages 13c are additionally formed between a printed portion 13b for A and a medication patient package portion 13a for the next patient B, thus enabling a continuous processing.
Further, the empty packages 13c are separated from the other portions by the cutter 29.
Subsequently, the cut package belt 13 isconveyed to the inverting member 44 via the direction changing part.33 and the conveyor 34, so as to be transferred to the lifter 45. For the package belt 13 or the empty packaqes 13c in the unit of one-day doses, the lifter 45 goes up without waiting for stacking by the transfer from the inverting member 44; for the package belt 13 in the unit of one dose, th-b lifter 45 will not go up AMENDED SHEET
A --IPEA/US 3 () J U N 2000
Further, the empty packages 13c are separated from the other portions by the cutter 29.
Subsequently, the cut package belt 13 isconveyed to the inverting member 44 via the direction changing part.33 and the conveyor 34, so as to be transferred to the lifter 45. For the package belt 13 or the empty packaqes 13c in the unit of one-day doses, the lifter 45 goes up without waiting for stacking by the transfer from the inverting member 44; for the package belt 13 in the unit of one dose, th-b lifter 45 will not go up AMENDED SHEET
A --IPEA/US 3 () J U N 2000
-22-until one-day doses has been completely stacked by the transfer from the inverting member 44. Then, the cut package belt 13 is moved sideways by the feed-in member 46, where in the case of the package belt 13 or empty packages 13c in the unit of one-day doses, the cut package belt 13 is passed through as it is without being bundled by the bundling machine 47; in the case of the stacked package belt 13, the cut package belt 13 is once stopped at the bundling machine 47, where the cut package belt 13 is bundled and then fed to the tray 9 via the distributing member 48. In addition, in the distributing member 48, for processing's sake, when empty packages 13c are conveyed up, the empty packages 13c are discarded to the dust box 63 via the opening 58 by rotating the distributing plate 59.
Subsequently, the tray 9 is conveyed to the array ampoule dispensing station 5, and further tc> the random ampoule dispensing station 6. In this case also, based on the prescription information, the tray 9 isi passed through as it is, or when ampoules 67, 81 are fed, the tray 9 is stopped at a relevant unit.
After that, the tray 9 is conveyed to the label issuing station 7. In the label issuing station 7, the prescription paper 101 on which prescription information as to all the medicaments within the conveyed-up tray 9 has been printed, as well as a label 103 to be affixed to the surface to show the contents of the stored ampoules 67 are fed into the tray 9.
AMENDED SHEET
s IPEA/U
Subsequently, the tray 9 is conveyed to the array ampoule dispensing station 5, and further tc> the random ampoule dispensing station 6. In this case also, based on the prescription information, the tray 9 isi passed through as it is, or when ampoules 67, 81 are fed, the tray 9 is stopped at a relevant unit.
After that, the tray 9 is conveyed to the label issuing station 7. In the label issuing station 7, the prescription paper 101 on which prescription information as to all the medicaments within the conveyed-up tray 9 has been printed, as well as a label 103 to be affixed to the surface to show the contents of the stored ampoules 67 are fed into the tray 9.
AMENDED SHEET
s IPEA/U
-23-Now that desired medicaments have been fed to the tray 9 in this way, this tray 9 is conveyed to the tray recovering station 2, where the medicaments are transferred onto shelves of a sorting cart (e.g., medication storage cabinet marketed by Pyxis Co.) C by the arm 110. In addition, this sorting cart C is movably set in the nurse station, and put into use for distribution to the patients in hospital when administration time has come.
<Medication Replenishment Operation>
Whereas the dispensing of medication is carried out as described above, the medication collecting system is enabled to detect the absence of the tablets 23, the ampoules 67, 81, and to perform appropriate replenishment by checking these medicaments.
For this purpose, the tablet dispensing station 4 and the ampoule dispensing stations 5, 6 are equipped, although not shown, with a touch panel to be controlled by a controller, a wireless barcode reader with a rechargirig cradle therefor, and a scale.
In the tablet dispensing station 4, the tablet cassettes 20 are exchanged according to the flow charts of Figs. 19A and 19B. That is, when specified tablets; 23 have come out of stock so that an empty tablet cassette 20 is detected (step S1), the cylindrical drum 18 is rotated so that the empty tablet cassette 20 is moved to an interchangeable position, where its AMENDED SHEET
1~ / --
<Medication Replenishment Operation>
Whereas the dispensing of medication is carried out as described above, the medication collecting system is enabled to detect the absence of the tablets 23, the ampoules 67, 81, and to perform appropriate replenishment by checking these medicaments.
For this purpose, the tablet dispensing station 4 and the ampoule dispensing stations 5, 6 are equipped, although not shown, with a touch panel to be controlled by a controller, a wireless barcode reader with a rechargirig cradle therefor, and a scale.
In the tablet dispensing station 4, the tablet cassettes 20 are exchanged according to the flow charts of Figs. 19A and 19B. That is, when specified tablets; 23 have come out of stock so that an empty tablet cassette 20 is detected (step S1), the cylindrical drum 18 is rotated so that the empty tablet cassette 20 is moved to an interchangeable position, where its AMENDED SHEET
1~ / --
-24-cassette number is notified, followed by a standby state (step S2). Also, a relevant medication profile is loaded from the database, and the current inventory count and expiration dates/lot numbers are displayed on the touch panel (step S3).
Then, the operator obtains a wireless barcode scanner (step S4), reads the barcode of this tablet cassette 20, verifying tablets 23 to be replenished (step S5) In this process, if the selected tablet cassette 20 is other than one containing the correct tablets 23, the operator is iriformed of an error by the touch panel.
Subsequently, the operator plac:es the empty tablet cassette 20 on the scale, where if the operator presses the "Tare" button on the touch panel (step S6), then the scale is initialized, prompting the operator to operate the bulk bottle for verification (step S7). If the verified bulk bottle is erroneous, the result is displayed or- the touch panel, by which the operator is reported of it. If the verification result is correct, then the operator is prompted to pour in a desired quantity of medication into the scale. Then, if the operator has poured oral medication into the tablet cassette 20 on the scale (step S8), the scale counts the total medications poured into the tablet cassette 20 (step S9) In this case, if too much medication is poured in, a warning is presented on the touch panel.
AMENDED SHEET
I --¾' p ipEA/us 3 n J U N 2nnn
Then, the operator obtains a wireless barcode scanner (step S4), reads the barcode of this tablet cassette 20, verifying tablets 23 to be replenished (step S5) In this process, if the selected tablet cassette 20 is other than one containing the correct tablets 23, the operator is iriformed of an error by the touch panel.
Subsequently, the operator plac:es the empty tablet cassette 20 on the scale, where if the operator presses the "Tare" button on the touch panel (step S6), then the scale is initialized, prompting the operator to operate the bulk bottle for verification (step S7). If the verified bulk bottle is erroneous, the result is displayed or- the touch panel, by which the operator is reported of it. If the verification result is correct, then the operator is prompted to pour in a desired quantity of medication into the scale. Then, if the operator has poured oral medication into the tablet cassette 20 on the scale (step S8), the scale counts the total medications poured into the tablet cassette 20 (step S9) In this case, if too much medication is poured in, a warning is presented on the touch panel.
AMENDED SHEET
I --¾' p ipEA/us 3 n J U N 2nnn
-25-Next, the operator operates a button on the touch panel, where if an end of the counting process is confirmed (step S10), then the final quantity is storecl in the database (step S11). Subsequently, the operator is prompted to enter the manufacturer's lot number and expiration date according to the indication on the bulk bottle (step S12). Also, an alphanumeric keypad is displayed on thie touch panel for the operator to key in values (step S13). If the operator has keyed in the manufacturer's lot number and expiration date and confirmed by touching an appropriate button on the touch panel (step S14), then the database is updated so that the lot number and expiration date are rewritten to the new ones (step S15).
After that, in order to verify a correct return place for the replaced tablet cassette 20, the operator is prompted to scan the barcode of cassette location (step S16), and this is displayed on the touch panel. The operator sets a new tablet cassette 20 according to this instruction, where the operator scans the barcode of the cassette location provided just above the motor base 19 with no tablet cassette 20 set. If a barcode of a wrong position is scanned, this fact is displayed on the touch panel so that the operator is notified of it (step S17). With these steps of work completed, the operator sets the tablet cassette 20 to the nlotor base 19 in the corresponding position, and returns the wireless scanner to the original position (step S18).
AMENDED SFfEET
lPEA/Us 3 0 J U N 2000 It is noted that, also for the ampoule cassettes 69 and the ampoule containers 82, the processes described above are carried out similarly according to the flow charts shown in Figs. 20A and 20B.
<Consumables Management Operation>
Also, in this medication collecting system, even consumption state of consumable articles (printing ink, package belt and the like) in the units can be detected.
For example, the remaining quantity of the package belt 13 which is used in the tablet dispensing station 4 is calculated based on an initial length and a length required per package. Similarly, the remaining quantity of the band set to the bundling machine 47 which _Ls used in the tablet dispensing station 4 is calculated based on an initial length and a band feed quantity. Further, remaining quantity of the prescription paper 101 which is used in the label issuing station 7 is calculated by subtracting the number of printed sheets f rom the initial setting number of sheets each time a printing process is performed. The remaining quantity of thermal transfer ink ribbon which is used in the label issuing station 7 is calculated based on an initial length and a consumption length (the consumption length for six-line printing is 3.5 mm).
Each time the consumption state of each consumable article is detected in this way, consur.nable article data is f: .
updated, where it is decided whether or not the article needs AMENDED SHEET
IPEAIUS 3 rl J U N 2nn0 to be replaced. If it is decided that the article needs to be replaced, then an instruction that, for example, "Package paper will soon be out. Do you want to replenish?", and "YES/NO" keys are displayed on the display as a replenishment operating screen. If the "YES" key is chosen, then replacement procedure for the relevant consumable article is displayed. Then, the article is replaced according to this procedure, and if the replacement is completed, a question, "Has replacement been completed?", and "YES/NO" keys are automatically displayed. If the "YES" key is chosen, the replenishment operating screen is ended and consumable article data is updated, followed by a return to the normal screen.
<Automatic Bagging Station>
Whereas the tray recovering station 2 is provided in the above-described embodiment, an automatic;bagging station shown in Fig. 21 may be adopted instead (for more details, see Japanese Patent Applications HEI 10-203749, HEI 10-75813, etc.).
In this automatic bagging station, a sheet 112 wound around a roll 111 is formed into a bag shape by a sealing part 113 and cut into bags by a cutter 114, and the bags are printed on the surfaces by a printer 115 and then conveyed to a medication feed part 116. In the med:i.cation feed part 116, with the bags opened, medicaments within the tray 9 are all put into the bags, and after sealing, the bags are accommodated in a large-size tray AMENDED SHEET
a, PUNS 9 9 I 2 8 8 2 9 IpEAIU8 3 0 J U N 2000 117 provided below the medication feed part 116. The large-size tray 117 is conveyed sideways by a conveyor 118.
Although an embodiment of the present invention has been described above with reference to the accompanying drawings, .5 modifications and changes apparent foi: those skilled in the art may be made in various ways. It is needless to say that these modifications and changes should be construed as being included in the present invention unless they depart from the spirit or scope of the invention.
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After that, in order to verify a correct return place for the replaced tablet cassette 20, the operator is prompted to scan the barcode of cassette location (step S16), and this is displayed on the touch panel. The operator sets a new tablet cassette 20 according to this instruction, where the operator scans the barcode of the cassette location provided just above the motor base 19 with no tablet cassette 20 set. If a barcode of a wrong position is scanned, this fact is displayed on the touch panel so that the operator is notified of it (step S17). With these steps of work completed, the operator sets the tablet cassette 20 to the nlotor base 19 in the corresponding position, and returns the wireless scanner to the original position (step S18).
AMENDED SFfEET
lPEA/Us 3 0 J U N 2000 It is noted that, also for the ampoule cassettes 69 and the ampoule containers 82, the processes described above are carried out similarly according to the flow charts shown in Figs. 20A and 20B.
<Consumables Management Operation>
Also, in this medication collecting system, even consumption state of consumable articles (printing ink, package belt and the like) in the units can be detected.
For example, the remaining quantity of the package belt 13 which is used in the tablet dispensing station 4 is calculated based on an initial length and a length required per package. Similarly, the remaining quantity of the band set to the bundling machine 47 which _Ls used in the tablet dispensing station 4 is calculated based on an initial length and a band feed quantity. Further, remaining quantity of the prescription paper 101 which is used in the label issuing station 7 is calculated by subtracting the number of printed sheets f rom the initial setting number of sheets each time a printing process is performed. The remaining quantity of thermal transfer ink ribbon which is used in the label issuing station 7 is calculated based on an initial length and a consumption length (the consumption length for six-line printing is 3.5 mm).
Each time the consumption state of each consumable article is detected in this way, consur.nable article data is f: .
updated, where it is decided whether or not the article needs AMENDED SHEET
IPEAIUS 3 rl J U N 2nn0 to be replaced. If it is decided that the article needs to be replaced, then an instruction that, for example, "Package paper will soon be out. Do you want to replenish?", and "YES/NO" keys are displayed on the display as a replenishment operating screen. If the "YES" key is chosen, then replacement procedure for the relevant consumable article is displayed. Then, the article is replaced according to this procedure, and if the replacement is completed, a question, "Has replacement been completed?", and "YES/NO" keys are automatically displayed. If the "YES" key is chosen, the replenishment operating screen is ended and consumable article data is updated, followed by a return to the normal screen.
<Automatic Bagging Station>
Whereas the tray recovering station 2 is provided in the above-described embodiment, an automatic;bagging station shown in Fig. 21 may be adopted instead (for more details, see Japanese Patent Applications HEI 10-203749, HEI 10-75813, etc.).
In this automatic bagging station, a sheet 112 wound around a roll 111 is formed into a bag shape by a sealing part 113 and cut into bags by a cutter 114, and the bags are printed on the surfaces by a printer 115 and then conveyed to a medication feed part 116. In the med:i.cation feed part 116, with the bags opened, medicaments within the tray 9 are all put into the bags, and after sealing, the bags are accommodated in a large-size tray AMENDED SHEET
a, PUNS 9 9 I 2 8 8 2 9 IpEAIU8 3 0 J U N 2000 117 provided below the medication feed part 116. The large-size tray 117 is conveyed sideways by a conveyor 118.
Although an embodiment of the present invention has been described above with reference to the accompanying drawings, .5 modifications and changes apparent foi: those skilled in the art may be made in various ways. It is needless to say that these modifications and changes should be construed as being included in the present invention unless they depart from the spirit or scope of the invention.
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Claims (46)
1. A medication dispensing apparatus for storing a plurality of different types of oral solid medication and for dispensing the medication in packaged, patient-specific medication dosage-units in accordance with patient-specific prescription information comprising:
-means for storing oral solid medication;
-means for dispensing the oral solid medication from the storing means in accordance with the patient-specific prescription information;
-means for packaging the oral solid medication in separate medication packages formed in a package belt, each medication package representing a patient-specific medication dosage-unit;
-cutting means for cutting the package belt into discrete sections, each section including at least one medication package in accordance with the patient-specific prescription information;
-stacking means for stacking the cut package belt sections for each patient; and -bundling means for bundling the stacked package belt sections.
-means for storing oral solid medication;
-means for dispensing the oral solid medication from the storing means in accordance with the patient-specific prescription information;
-means for packaging the oral solid medication in separate medication packages formed in a package belt, each medication package representing a patient-specific medication dosage-unit;
-cutting means for cutting the package belt into discrete sections, each section including at least one medication package in accordance with the patient-specific prescription information;
-stacking means for stacking the cut package belt sections for each patient; and -bundling means for bundling the stacked package belt sections.
2. The apparatus of claim 1 wherein the dispensing apparatus further includes means for organizing and discharging the cut package belt sections corresponding to a day on which the medication is to be taken by the patient.
3. The apparatus of claim 1 wherein the dispensing apparatus further includes means for organizing and discharging the cut package belt sections corresponding to the dosage-units to be taken at a particular time by the patient.
4. The apparatus of claim 1 wherein each discrete package belt section cut by the cutting means includes at least one empty package on which information is printed and at least one package containing a dosage-unit of medication.
5. The apparatus of claim 1 wherein the package belt further includes at least one empty package and the at least one empty package is not included with the stacked package belt sections.
6. A medication collecting system comprising:
-a conveyor;
-means for accumulating a plurality of empty trays, the trays being provided for receiving patient-specific medication from at least one medication dispensing station and for supplying the trays to the conveyor;
-at least one medication dispensing station disposed along the conveyor having means for storing a plurality of different types of oral solid medication and means for dispensing and packaging the medication in packaged, patient-specific medication dosage-units formed in a package belt in accordance with patient-specific prescription information, said packaged medication being discharged into a tray transported by the conveyor to the at least one dispensing station, the at least one medication dispensing station further having:
-means for cutting the package belt into discrete sections, each section including at least one medication package in accordance with the patient-specific prescription information;
-stacking means for stacking the cut package belt sections for each patient in accordance with the patient-specific prescription information; and -bundling means for bundling the stacked package belt sections in accordance with the patient-specific prescription information; and -means for recovering and sorting the trays containing the patient-specific package belt sections discharged from the at least one medication dispensing station.
-a conveyor;
-means for accumulating a plurality of empty trays, the trays being provided for receiving patient-specific medication from at least one medication dispensing station and for supplying the trays to the conveyor;
-at least one medication dispensing station disposed along the conveyor having means for storing a plurality of different types of oral solid medication and means for dispensing and packaging the medication in packaged, patient-specific medication dosage-units formed in a package belt in accordance with patient-specific prescription information, said packaged medication being discharged into a tray transported by the conveyor to the at least one dispensing station, the at least one medication dispensing station further having:
-means for cutting the package belt into discrete sections, each section including at least one medication package in accordance with the patient-specific prescription information;
-stacking means for stacking the cut package belt sections for each patient in accordance with the patient-specific prescription information; and -bundling means for bundling the stacked package belt sections in accordance with the patient-specific prescription information; and -means for recovering and sorting the trays containing the patient-specific package belt sections discharged from the at least one medication dispensing station.
7. The system of claim 6 wherein the at least one medication dispensing station further includes means for organizing and discharging the cut package belt sections corresponding to a day on which the medication is to be taken by the patient.
8. The system of claim 6 wherein the at least one medication dispensing station further includes means for organizing and discharging the cut package belt sections corresponding to the dosage-units to be taken at a particular time by the patient.
9. The system of claim 6 wherein each discrete package belt section cut by the cutting means includes at least one empty package on which information is printed and at least one package containing a dosage-unit of medication.
10. The system of claim 6 wherein the package belt further includes at least one empty package and the at least one empty package is not included with the stacked package belt sections.
11. The system of claim 6 wherein the medication dispensing station further includes:
-means for separating empty packages from the bundled package belt sections; and -means for directing the bundled package belt sections from the separating means to a tray transported along the conveyor.
-means for separating empty packages from the bundled package belt sections; and -means for directing the bundled package belt sections from the separating means to a tray transported along the conveyor.
12. The system of claim 6 further comprising at least one liquid medication dispensing station for storing a plurality of different types of liquid medication contained in ampoules, and for dispensing the ampoules into a tray in patient-specific dosage-units in accordance with the patient-specific prescription information comprising:
-means for storing a plurality of liquid medication ampoules;
-means for dispensing stored ampoules; and -means for discharging the ampoules into at least one patient-specific tray fed to the conveyor from the tray feed station.
-means for storing a plurality of liquid medication ampoules;
-means for dispensing stored ampoules; and -means for discharging the ampoules into at least one patient-specific tray fed to the conveyor from the tray feed station.
13. An automated medication dispensing system for filling patient-specific, dosage-unit prescription orders with oral solid and liquid medication comprising:
-a conveyor for transporting a plurality of medication-receiving trays one after the other;
-at least one oral solid medication dispenser disposed along the conveyor for storing a plurality of different types of oral solid medication, for packaging the oral solid medication in dosage-unit amounts in accordance with the patient-specific prescription orders and for discharging the packaged medication to the trays in accordance with the patient-specific prescription orders;
-at least one liquid medication dispenser disposed along the conveyor and spaced from the solid medication dispenser for storing a plurality of different types of liquid medication in a packaged, dosage-unit form and for discharging the packaged, dosage-unit liquid medication to the trays in accordance with the patient-specific prescription orders.
-a conveyor for transporting a plurality of medication-receiving trays one after the other;
-at least one oral solid medication dispenser disposed along the conveyor for storing a plurality of different types of oral solid medication, for packaging the oral solid medication in dosage-unit amounts in accordance with the patient-specific prescription orders and for discharging the packaged medication to the trays in accordance with the patient-specific prescription orders;
-at least one liquid medication dispenser disposed along the conveyor and spaced from the solid medication dispenser for storing a plurality of different types of liquid medication in a packaged, dosage-unit form and for discharging the packaged, dosage-unit liquid medication to the trays in accordance with the patient-specific prescription orders.
14. The medication dispensing system of claim 13 further including a tray feed station along the conveyor upstream of the oral solid and liquid medication dispensers for feeding trays onto the conveyor.
15. The medication dispensing system of claim 14 wherein the tray feed station includes:
-a housing for receiving and storing a plurality of stacked trays, the housing having walls forming a first opening for receiving the trays and a second opening for discharging the trays onto the conveyor;
-at least one pivoting feed claw disposed in the housing having a first position for supporting a lowermost stacked tray and a second position for discharging the lowermost tray onto the conveyor; and -a motor coupled to the at least one feed claw for pivoting the at least one feed claw between the first and second positions;
whereby, the trays may be discharged from the tray feed station, one after the other, onto the conveyor.
-a housing for receiving and storing a plurality of stacked trays, the housing having walls forming a first opening for receiving the trays and a second opening for discharging the trays onto the conveyor;
-at least one pivoting feed claw disposed in the housing having a first position for supporting a lowermost stacked tray and a second position for discharging the lowermost tray onto the conveyor; and -a motor coupled to the at least one feed claw for pivoting the at least one feed claw between the first and second positions;
whereby, the trays may be discharged from the tray feed station, one after the other, onto the conveyor.
16. The medication dispensing system of claim 14 further including a tray recovery station for recovering and sorting the trays.
17. The medication dispensing system of claim 13 wherein the at least one oral solid medication dispenser includes:
-a medication feed device having:
-a plurality of oral solid medication storage containers, each container having an opening through which dosage-units of the medication are metered out in a predetermined manner;
-metering apparatus for metering the dosage-units of medication from each storage container;
-at least one passageway for guiding the medication from the storage containers to a staging device;
-a staging device having a shuttered opening for receiving the medication from the at least one passageway and for discharging the medication in dosage-unit amounts to a package belt;
-a packaging device having:
-a feed assembly for supplying package belt material to receive the dosage-unit amounts of medication from the staging device;
-an information-adding device positioned adjacent the package belt material for supplying printed, patient-specific information to the package belt material corresponding to the dosage-units;
-a sealer for sealing the package belt material into separate medication packages, each package enclosing a dosage-unit of medication; and -a cutting device having a cutting edge adjacent the sealed package belt for engaging the package belt and cutting the package belt in a predetermined manner into discrete sections, each section including at least one medication package containing a dosage-unit of medication.
-a medication feed device having:
-a plurality of oral solid medication storage containers, each container having an opening through which dosage-units of the medication are metered out in a predetermined manner;
-metering apparatus for metering the dosage-units of medication from each storage container;
-at least one passageway for guiding the medication from the storage containers to a staging device;
-a staging device having a shuttered opening for receiving the medication from the at least one passageway and for discharging the medication in dosage-unit amounts to a package belt;
-a packaging device having:
-a feed assembly for supplying package belt material to receive the dosage-unit amounts of medication from the staging device;
-an information-adding device positioned adjacent the package belt material for supplying printed, patient-specific information to the package belt material corresponding to the dosage-units;
-a sealer for sealing the package belt material into separate medication packages, each package enclosing a dosage-unit of medication; and -a cutting device having a cutting edge adjacent the sealed package belt for engaging the package belt and cutting the package belt in a predetermined manner into discrete sections, each section including at least one medication package containing a dosage-unit of medication.
18. The medication dispensing system of claim 17 wherein the metering apparatus includes:
-a motorized base operatively connected to each storage container for actuating the containers to discharge the medication; and -a sensor associated with each motorized base for detecting the amount of medication dispensed from the storage container.
-a motorized base operatively connected to each storage container for actuating the containers to discharge the medication; and -a sensor associated with each motorized base for detecting the amount of medication dispensed from the storage container.
19. The medication dispensing system of claim 17 wherein the staging device is at least one hopper.
20. The medication dispensing system of claim 17 wherein the information-adding device is a printer for printing the patient-specific information directly on the package belt material.
21. The medication dispensing system of claim 17 further including:
-a stacking mechanism downstream of the cutting device for receiving the cut package belt sections and for stacking the cut package belt sections; and -a bundling mechanism for bundling the stacked package belt sections.
-a stacking mechanism downstream of the cutting device for receiving the cut package belt sections and for stacking the cut package belt sections; and -a bundling mechanism for bundling the stacked package belt sections.
22. The medication dispensing system of claim 21 further including a discharge mechanism for discharging the bundled package belt sections to at least one tray.
23. The dispensing system of claim 20 further including at least a second printer for printing patient-specific information and for discharging the printed information to each tray in accordance with the patient-specific prescription information.
24. The dispensing system of claim 23 wherein the printed information includes instructions for taking the medication.
25. The medication dispensing system of claim 13 wherein the at least one liquid medication dispenser is an array ampoule dispenser which includes:
-a plurality of liquid medication ampoule storage containers for storing an array of ampoules, each storage container having walls forming an opening through which the ampoules are metered out in a controlled manner;
-liquid medication ampoule metering apparatus for metering a predetermined quantity of ampoules from each storage container;
-conveyor apparatus for receiving ampoules from the metering apparatus and transporting the ampoules to an ampoule staging device; and -an ampoule staging device having a shuttered opening for receiving ampoules from the conveyor apparatus and for discharging the ampoules to a tray.
-a plurality of liquid medication ampoule storage containers for storing an array of ampoules, each storage container having walls forming an opening through which the ampoules are metered out in a controlled manner;
-liquid medication ampoule metering apparatus for metering a predetermined quantity of ampoules from each storage container;
-conveyor apparatus for receiving ampoules from the metering apparatus and transporting the ampoules to an ampoule staging device; and -an ampoule staging device having a shuttered opening for receiving ampoules from the conveyor apparatus and for discharging the ampoules to a tray.
26. The medication dispensing system of claim 25 wherein the conveyor apparatus includes:
-at least one loading conveyor for receiving ampoules metered out from the ampoule storage containers; and -a collecting conveyor for receiving ampoules from the loading conveyors and for transporting the ampoules to the staging device.
-at least one loading conveyor for receiving ampoules metered out from the ampoule storage containers; and -a collecting conveyor for receiving ampoules from the loading conveyors and for transporting the ampoules to the staging device.
27. The medication dispensing system of claim 13 wherein the at least one liquid medication dispenser is a random-storage ampoule dispenser which includes:
-a plurality of liquid medication random ampoule storage containers for storing an array of ampoules, each storage container having walls forming an opening through which the ampoules are metered out in a controlled manner;
-liquid medication ampoule metering apparatus for metering a predetermined quantity of the ampoules from each storage container;
-a collector apparatus for receiving ampoules from the metering apparatus and for transporting the ampoules to an ampoule staging device; and -an ampoule staging device having a shuttered opening for receiving ampoules from the conveyor apparatus and for discharging the ampoules to a tray.
-a plurality of liquid medication random ampoule storage containers for storing an array of ampoules, each storage container having walls forming an opening through which the ampoules are metered out in a controlled manner;
-liquid medication ampoule metering apparatus for metering a predetermined quantity of the ampoules from each storage container;
-a collector apparatus for receiving ampoules from the metering apparatus and for transporting the ampoules to an ampoule staging device; and -an ampoule staging device having a shuttered opening for receiving ampoules from the conveyor apparatus and for discharging the ampoules to a tray.
28. The medication dispensing system of claim 27 wherein the storage containers include:
-a storage chamber for storage of the ampoules in a random manner; and -a conveyor for transporting ampoules from each chamber to a discharge chute; and -a discharge chute for discharging the ampoules from the conveyor to the collector apparatus.
-a storage chamber for storage of the ampoules in a random manner; and -a conveyor for transporting ampoules from each chamber to a discharge chute; and -a discharge chute for discharging the ampoules from the conveyor to the collector apparatus.
29. The medication dispensing system of claim 28 wherein the collector apparatus includes:
-a moveable lifter container for receiving the ampoules from the discharge chute, the lifter having funnel-shaped walls forming a top opening through which the ampoules are received and a shuttered bottom opening through which the ampoules are discharged;
-moveable shutters positioned across the lifter bottom opening having a first position covering the opening and a second position away from the opening so that ampoules in the lifter can be discharged into the staging device when the shutters are in the second position; and -lift apparatus for raising and lowering the lifter so that the discharge chute is substantially aligned with the lifter top opening prior to discharge of an ampoule from the discharge chute and for positioning the lifter adjacent the staging device so that ampoules in the lifter can be discharged from the
-a moveable lifter container for receiving the ampoules from the discharge chute, the lifter having funnel-shaped walls forming a top opening through which the ampoules are received and a shuttered bottom opening through which the ampoules are discharged;
-moveable shutters positioned across the lifter bottom opening having a first position covering the opening and a second position away from the opening so that ampoules in the lifter can be discharged into the staging device when the shutters are in the second position; and -lift apparatus for raising and lowering the lifter so that the discharge chute is substantially aligned with the lifter top opening prior to discharge of an ampoule from the discharge chute and for positioning the lifter adjacent the staging device so that ampoules in the lifter can be discharged from the
30. The medication dispensing system of claim 17 wherein the at least one liquid medication dispenser is an array ampoule dispenser which includes:
-a plurality of liquid medication ampoule storage containers for storing an array of ampoules, each storage container having walls forming an opening through which the ampoules are metered out in a controlled manner;
-liquid medication ampoule metering apparatus for metering a predetermined quantity of ampoules from each storage container;
-conveyor apparatus for receiving ampoules from the metering apparatus and transporting the ampoules to an ampoule staging device; and -an ampoule staging device having a shuttered opening for receiving ampoules from the conveyor apparatus and for discharging the ampoules to a tray.
-a plurality of liquid medication ampoule storage containers for storing an array of ampoules, each storage container having walls forming an opening through which the ampoules are metered out in a controlled manner;
-liquid medication ampoule metering apparatus for metering a predetermined quantity of ampoules from each storage container;
-conveyor apparatus for receiving ampoules from the metering apparatus and transporting the ampoules to an ampoule staging device; and -an ampoule staging device having a shuttered opening for receiving ampoules from the conveyor apparatus and for discharging the ampoules to a tray.
31. The medication dispensing system of claim 30 further including at least a second liquid medication dispenser which is a random-storage ampoule dispenser including:
-a plurality of liquid medication random ampoule storage containers for storing an array of ampoules, each storage container having walls forming an opening through which the ampoules are metered out in a controlled manner;
-liquid medication ampoule metering apparatus for metering a predetermined quantity of the ampoules from each storage container;
-a collector apparatus for receiving ampoules from the metering apparatus and for transporting the ampoules to an ampoule staging device; and -an ampoule staging device having a shuttered opening for receiving ampoules from the conveyor apparatus and for discharging the ampoules to a tray.
-a plurality of liquid medication random ampoule storage containers for storing an array of ampoules, each storage container having walls forming an opening through which the ampoules are metered out in a controlled manner;
-liquid medication ampoule metering apparatus for metering a predetermined quantity of the ampoules from each storage container;
-a collector apparatus for receiving ampoules from the metering apparatus and for transporting the ampoules to an ampoule staging device; and -an ampoule staging device having a shuttered opening for receiving ampoules from the conveyor apparatus and for discharging the ampoules to a tray.
32. The medication dispensing system of claim 31 further including a tray feed station along the conveyor upstream of the oral solid and liquid medication dispensers for feeding trays onto the conveyor.
33. The medication dispensing system of claim 32 further including a tray recovery station along the conveyor downstream of the oral solid and liquid medication dispensers for recovering and sorting the trays.
34. The medication dispensing system of claim 33 further including at least one printer for printing patient-specific information and for discharging the printed information to each tray in accordance with the patient-specific prescription information.
35. A medication dispensing apparatus for storing a plurality of different types of oral solid medication and for dispensing the medication in packaged, patient-specific medication dosage-units in accordance with patient-specific prescription information comprising:
-a plurality of oral solid medication storage containers, each container having an opening through which the medication is discharged in a controlled manner;
-dispensing apparatus for dispensing oral solid medication from the medication storage containers in patient-specific dosage-units in accordance with the patient-specific prescription information;
-a packaging mechanism for packaging the oral solid medication in separate medication packages formed in a package belt, each medication package representing a patient-specific medication dosage-unit;
-a cutting mechanism for cutting the package belt into discrete sections, each section including at least one medication package in accordance with the patient-specific prescription information;
-a stacking mechanism for stacking the cut package belt sections for each patient; and -a bundling mechanism for bundling the stacked package belt sections.
-a plurality of oral solid medication storage containers, each container having an opening through which the medication is discharged in a controlled manner;
-dispensing apparatus for dispensing oral solid medication from the medication storage containers in patient-specific dosage-units in accordance with the patient-specific prescription information;
-a packaging mechanism for packaging the oral solid medication in separate medication packages formed in a package belt, each medication package representing a patient-specific medication dosage-unit;
-a cutting mechanism for cutting the package belt into discrete sections, each section including at least one medication package in accordance with the patient-specific prescription information;
-a stacking mechanism for stacking the cut package belt sections for each patient; and -a bundling mechanism for bundling the stacked package belt sections.
36. The apparatus of claim 35 wherein the medication dispensing apparatus organizes and discharges the cut package belt sections corresponding to a day on which the medication is to be taken by the patient.
37. The apparatus of claim 35 wherein the medication dispensing apparatus organizes and discharges the cut package belt sections corresponding to the dosage-units to be taken at a particular time by the patient.
38. The apparatus of claim 35 wherein each discrete package belt section cut by the cutting mechanism includes at least one empty package on which information is printed and at least one package containing a dosage-unit of medication.
39. The apparatus of claim 35 wherein the packaging belt further includes at least one empty package and the at least one empty package is not included with the stacked package belt sections.
40. A medication collecting system, comprising:
-a conveyor;
-a tray feed station for accumulating a plurality of empty trays for receiving patient-specific medication from at least one medication dispensing station and supplying the trays to the conveyor;
-a medication dispensing station disposed along the conveyor for storing a plurality of different types of oral solid medication and for dispensing the medication in packaged, patient-specific medication dosage-units in accordance with patient-specific prescription information to a patient-specific tray transported by the conveyor to the dispensing station, the medication dispensing station having:
-a plurality of oral solid medication storage containers, each container having an opening through which the medication is discharged in a controlled manner;
-dispensing apparatus for dispensing oral solid medication from the medication storage containers in patient-specific dosage-units in accordance with the patient-specific prescription information;
-a packaging mechanism for packaging the oral solid medication in separate medication packages formed in a package belt, each medication package representing a patient-specific medication dosage-unit;
-a cutting mechanism for cutting the package belt into predetermined discrete sections, each section including at least one medication package in accordance with the patient-specific prescription information;
-a stacking mechanism for stacking the cut package belt sections for each patient; and -a bundling mechanism for bundling the stacked package belt sections; and -a tray recovery station for recovering and sorting the trays containing the package belt sections discharged from the medication dispensing station.
-a conveyor;
-a tray feed station for accumulating a plurality of empty trays for receiving patient-specific medication from at least one medication dispensing station and supplying the trays to the conveyor;
-a medication dispensing station disposed along the conveyor for storing a plurality of different types of oral solid medication and for dispensing the medication in packaged, patient-specific medication dosage-units in accordance with patient-specific prescription information to a patient-specific tray transported by the conveyor to the dispensing station, the medication dispensing station having:
-a plurality of oral solid medication storage containers, each container having an opening through which the medication is discharged in a controlled manner;
-dispensing apparatus for dispensing oral solid medication from the medication storage containers in patient-specific dosage-units in accordance with the patient-specific prescription information;
-a packaging mechanism for packaging the oral solid medication in separate medication packages formed in a package belt, each medication package representing a patient-specific medication dosage-unit;
-a cutting mechanism for cutting the package belt into predetermined discrete sections, each section including at least one medication package in accordance with the patient-specific prescription information;
-a stacking mechanism for stacking the cut package belt sections for each patient; and -a bundling mechanism for bundling the stacked package belt sections; and -a tray recovery station for recovering and sorting the trays containing the package belt sections discharged from the medication dispensing station.
41. The system of claim 40 wherein the medication dispensing station organizes and discharges the cut package belt sections corresponding to a day on which the medication is to be taken by the patient.
42. The system of claim 40 wherein the medication dispensing station organizes and discharges the cut package belt sections corresponding to the dosage-units to be taken at a particular time by the patient.
43. The system of claim 40 wherein each discrete package belt section cut by the cutting mechanism includes at least one empty package on which information is printed and at least one package containing a dosage-unit of medication.
44. The system of claim 40 wherein the package belt further includes at least one empty package and the at least one empty package is not included with the stacked package belt sections.
45. The system of claim 40 wherein the medication dispensing station further includes:
-a separator mechanism for separating empty packages from the bundled package belt sections; and -an inclined distributing member for directing the bundled package belt sections from the separator mechanism to a tray transported along the conveyor.
-a separator mechanism for separating empty packages from the bundled package belt sections; and -an inclined distributing member for directing the bundled package belt sections from the separator mechanism to a tray transported along the conveyor.
46. The system of claim 40, further comprising at least one liquid medication dispensing station for storing a plurality of different types of liquid medication contained in ampoules, and for dispensing the ampoules into a tray in patient-specific dosage-units comprising:
-a plurality of liquid medication storage containers, each container having a first end through which the ampoules are discharged in a controlled manner;
-dispensing apparatus for dispensing the ampoules from the storage containers; and -a discharge mechanism for discharging the ampoules into at least one patient-specific tray.
-a plurality of liquid medication storage containers, each container having a first end through which the ampoules are discharged in a controlled manner;
-dispensing apparatus for dispensing the ampoules from the storage containers; and -a discharge mechanism for discharging the ampoules into at least one patient-specific tray.
Applications Claiming Priority (3)
Application Number | Priority Date | Filing Date | Title |
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US09/205,861 US6170230B1 (en) | 1998-12-04 | 1998-12-04 | Medication collecting system |
US09/205,861 | 1998-12-04 | ||
PCT/US1999/028829 WO2000032477A1 (en) | 1998-12-04 | 1999-12-02 | Medication collecting system |
Publications (2)
Publication Number | Publication Date |
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CA2353722A1 CA2353722A1 (en) | 2000-06-08 |
CA2353722C true CA2353722C (en) | 2009-05-12 |
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Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
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CA002353722A Expired - Lifetime CA2353722C (en) | 1998-12-04 | 1999-12-02 | Medication collecting system |
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US (2) | US6170230B1 (en) |
EP (3) | EP2082720B1 (en) |
JP (1) | JP2003512088A (en) |
KR (1) | KR100605769B1 (en) |
AU (1) | AU1750900A (en) |
CA (1) | CA2353722C (en) |
DE (1) | DE69940893D1 (en) |
WO (1) | WO2000032477A1 (en) |
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- 1999-12-02 EP EP09159907A patent/EP2082720B1/en not_active Expired - Lifetime
- 1999-12-02 WO PCT/US1999/028829 patent/WO2000032477A1/en active IP Right Grant
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EP2401996A1 (en) | 2012-01-04 |
KR20010093142A (en) | 2001-10-27 |
EP2082720B1 (en) | 2011-09-21 |
KR100605769B1 (en) | 2006-07-28 |
EP1147047B1 (en) | 2009-05-13 |
US6625952B1 (en) | 2003-09-30 |
WO2000032477A1 (en) | 2000-06-08 |
DE69940893D1 (en) | 2009-06-25 |
CA2353722A1 (en) | 2000-06-08 |
EP1147047A1 (en) | 2001-10-24 |
EP2401996B1 (en) | 2015-05-27 |
US6170230B1 (en) | 2001-01-09 |
EP2082720A3 (en) | 2009-08-05 |
AU1750900A (en) | 2000-06-19 |
EP2082720A2 (en) | 2009-07-29 |
JP2003512088A (en) | 2003-04-02 |
EP1147047A4 (en) | 2007-07-25 |
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