WO1984001509A1 - Syringe force amplification device - Google Patents

Syringe force amplification device Download PDF

Info

Publication number
WO1984001509A1
WO1984001509A1 PCT/US1983/001619 US8301619W WO8401509A1 WO 1984001509 A1 WO1984001509 A1 WO 1984001509A1 US 8301619 W US8301619 W US 8301619W WO 8401509 A1 WO8401509 A1 WO 8401509A1
Authority
WO
WIPO (PCT)
Prior art keywords
syringe
frame
carriage
plunger
gear
Prior art date
Application number
PCT/US1983/001619
Other languages
French (fr)
Inventor
Eric E Sabelman
Timothy A Koogle
William Kennedy
Original Assignee
Collagen Corp
Priority date (The priority date 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 date listed.)
Filing date
Publication date
Application filed by Collagen Corp filed Critical Collagen Corp
Priority to AU22023/83A priority Critical patent/AU2202383A/en
Publication of WO1984001509A1 publication Critical patent/WO1984001509A1/en

Links

Classifications

    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61MDEVICES FOR INTRODUCING MEDIA INTO, OR ONTO, THE BODY; DEVICES FOR TRANSDUCING BODY MEDIA OR FOR TAKING MEDIA FROM THE BODY; DEVICES FOR PRODUCING OR ENDING SLEEP OR STUPOR
    • A61M5/00Devices for bringing media into the body in a subcutaneous, intra-vascular or intramuscular way; Accessories therefor, e.g. filling or cleaning devices, arm-rests
    • A61M5/178Syringes
    • A61M5/31Details
    • A61M5/315Pistons; Piston-rods; Guiding, blocking or restricting the movement of the rod or piston; Appliances on the rod for facilitating dosing ; Dosing mechanisms
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61MDEVICES FOR INTRODUCING MEDIA INTO, OR ONTO, THE BODY; DEVICES FOR TRANSDUCING BODY MEDIA OR FOR TAKING MEDIA FROM THE BODY; DEVICES FOR PRODUCING OR ENDING SLEEP OR STUPOR
    • A61M5/00Devices for bringing media into the body in a subcutaneous, intra-vascular or intramuscular way; Accessories therefor, e.g. filling or cleaning devices, arm-rests
    • A61M5/178Syringes
    • A61M5/31Details
    • A61M5/315Pistons; Piston-rods; Guiding, blocking or restricting the movement of the rod or piston; Appliances on the rod for facilitating dosing ; Dosing mechanisms
    • A61M5/31511Piston or piston-rod constructions, e.g. connection of piston with piston-rod
    • A61M2005/3152Piston or piston-rod constructions, e.g. connection of piston with piston-rod including gearings to multiply or attenuate the piston displacing force
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61MDEVICES FOR INTRODUCING MEDIA INTO, OR ONTO, THE BODY; DEVICES FOR TRANSDUCING BODY MEDIA OR FOR TAKING MEDIA FROM THE BODY; DEVICES FOR PRODUCING OR ENDING SLEEP OR STUPOR
    • A61M5/00Devices for bringing media into the body in a subcutaneous, intra-vascular or intramuscular way; Accessories therefor, e.g. filling or cleaning devices, arm-rests
    • A61M5/48Devices for bringing media into the body in a subcutaneous, intra-vascular or intramuscular way; Accessories therefor, e.g. filling or cleaning devices, arm-rests having means for varying, regulating, indicating or limiting injection pressure
    • A61M5/484Regulating injection pressure

Definitions

  • the present invention is directed to a device for amplifying the mechanical force applied to a syringe to compress the plunger into the barrel of the syringe with a fine degree of control.
  • one pneumatic syringe assist device requires a syringe that does not have a plunger, so that the compressed air can act directly on the material to be injected.
  • Still another object of the invention is to provide a novel syringe force amplifying device that is both rugged and simple to construct.
  • Yet a further object of the invention is to provide a force amplification device that can be readily used with conventional syringes.
  • a syringe assist device including a frame and moveable carriage that are respectively attached to a conventional syringe and its plunger.
  • the frame has a toothed rack and the carriage contains a force amplifying gear and lever mechanism.
  • a thumb ring transmits the force applied by the user's thumb to the lever to rotate the gear and move the carriage along the frame. This action in turn applies amplified compression to the syringe plunger.
  • a ratchet connection between the lever and the gear enables the movement of the carriage to be continued when the lever has reached the end of its stroke.
  • Figure 1 is a perspective view of the syringe assist device, illustrating the manner that a syringe is inserted to be connected thereto?
  • Figure 2 is a top view of the device with a syringe inserted;
  • Figure 3 is a side view of the device with a syringe inserted?
  • Figure 4 is an enlarged top view of the frame and carriage with the top half of the carriage removed to illustrate the gear and lever mechanism
  • Figure 5 is a cross-sectional end view of the frame and carriage, taken along the section line ' 5-5 of Figure 4.
  • a syringe assist device constructed in accordance with the present invention basically comprises a frame 10 and a car- riage 12 that is moveable along the frame.
  • the for ⁇ ward end of the frame has a bore that accomodates the barrel 14 of a syringe.
  • This bore is defined by an upper arc-shaped bridge 16 at the forwardmost end of the frame, and a lower arc-shaped bridge 18 disposed behind the upper bridge 16.
  • the spacing of the bridges in this manner allows the syringe to be inser ⁇ ted into the bore at an angle, as depicted in Figure_ 1.
  • the lower bridge 18 is provided with a slot 20 to. acc ⁇ modate the flange 22 that is typically located at the top of the barrel, and thereby holds the syringe in place on the frame.
  • a spring clip 24 projects from the front of the frame, and includes an arcuate portion 26 at its
  • the spring clip not only serves to secure the attachment of the syringe to the frame, but it also retains the needle in place and prevents its detachment, for example due to needle hub or syringe failure under high internal pressure.
  • the carriage 12 includes a pair of clips 30 that accomodate the disk-type flange 32 at the end of the syringe plunger 34, to thereby secure the plunger to the carriage.
  • a thumb ring 36 is disposed on the end of a plunger 38 that projects from the rear of the carriage 12.
  • Two pairs of finger grips 40 and 42 are provided on the frame. The two pairs of grips are displaced along the length of the frame to thereby accomodate different hand sizes and different holding styles.
  • the plunger 38 is translated into and out of the carriage with the thumb ring, utilizing the same motion as is employed with a syringe by itself.
  • the carriage 12 can be made of two halves that are fitted together.
  • the car ⁇ riage is shown with the top half removed in Figure 4.
  • the frame 12 is provided with two opposed parallel racks 44 having teeth 46.
  • Two pinion gears 48 rotate about shafts 50 within the carriage, and their teeth respectively mesh with those of the racks 44.
  • a lever 52 is disposed on each shaft 50 for lim ⁇ ited pivotal movement. As best illustrated in Figure 5, each lever 52 is engaged with its associated pinion gear 48 by means of ratchet teeth 54 disposed on the opposing faces of the lever and the gear.
  • the ends of the levers 52 that are remote - from the shafts 50 include slots 58 that accomodate a- shaft 60.
  • the shaft 60 is parallel to the gear shafts 50, and is translatable in a transverse direction within two recesses 62 in the carriage 12. Transla ⁇ tion of the shaft 60, and hence pivoting of the levers 52, is provided by the plunger 38, which is rigidly connected to the shaft.
  • the moment arm, or operative length, of each lever 52 i.e., the distance between the axes of the shafts 50 and 60, is greater than that of the gear which it engages, i.e., greater than the distance between the axis of the shaft 50 and the point of engagement between the gear teeth and the rack teeth 46.
  • the gear and lever arrangement provides a mechanical advantage with respect to force applied through the plunger 38.
  • the levers and gears are dimensioned so that the carriage moves along the frame with a force that is four times greater than that applied to the thumb ring 36 and plunger 38.
  • the thumb ring 36 is pulled to move the carriage to the right (as viewed in Figure 4), and a syringe is inserted in the device in the manner illustrated in Figure 1.
  • the plunger flange 32 is engaged in the clips 30 of the carriage, and the retainer 26 snappped in place around the needle hub, to attach the syringe to the device as shown in Figures 2 and 3.
  • the levers 52 and , gears 48 will be pivoted about the shafts 50, causing the carriage to move forward along the frame and compress the plunger into the barrel 14 with a greater force than that applied by the thumb to the ring.
  • the carriage will move a proportionately shorter distance than the thumb ring.
  • the carriage can continue to move for ⁇ ward under direct pressure from the thumb if no mechanical advantage is required.
  • the ratchet teeth 54 will enable the pinion gears 48 to continue turning as the carriage moves along the frame, even though the levers are stationary.
  • the thumb ring is retracted to pull the plunger out of the carriage. In this case, the carriage will remain stationary due to the dampening effect provided by the syringe, i.e., the plunger will resist being pulled from the barrel.
  • the ratchet teeth will allow relative rotation between the levers and the gears, enabling the levers to be pivoted rearwardly while the gears remain motionless.
  • the thumb ring can then be pressed towards the carriage again, providing contin ⁇ ued forward movement of the carriage with force amplification.
  • a pair of cam surfaces 66 are provided on each lever 52. These cam surfaces are disposed at an appropriate angle, e.g., 45 ⁇ , relative to the axis of the shafts 50.
  • a pair of corresponding cams 68 are provided on the carriage adjacent each lever (only two of which are illustrated in Figure 4 adjacent the upper lever).
  • the present invention provides a device that amplifies the manual force applied to a syringe while retaining the ability to operate the syringe in a conventinal fash ⁇ ion and without obstruction. Precise control over the amount and rate of compression of the syringe is afforded, along with tactile feedback as to the resistance offered by the syringe.

Abstract

A syringe assist device including a frame (10) and moveable carriage (12) that are respectively attached to a conventional syringe (14) and its plunger. The frame has a toothed rack (44) and the carriage contains a force amplifying gear (48) and lever mechanism (52). A thumb ring (36) transmits the force applied by the user's thumb to the lever (52) to rotate the gear (48) and move the carriage (12) along the frame (10). This action in turn applies amplified compression to the syringe plunger. A ratchet connection between the lever (52) and the gear (48) enables the movement of the carriage (12) to be continued without force amplification when the lever (52) has reached the end of its stroke.

Description

SYRINGE FORCE AMPLIFICATION DEVICE
Description Technical Field
The present invention is directed to a device for amplifying the mechanical force applied to a syringe to compress the plunger into the barrel of the syringe with a fine degree of control.
Background Art
Most liquid medicines and the like that are typically injected with a syringe have a sufficiently low viscosity that the plunger of the syringe can be manually compressed into its barrel, to expel the liquid therefrom, with relatively little effort. How¬ ever, when a high viscosity material is to be injec¬ ted, particularly through a hypodermic needle having a small opening, difficulties are presented. As the force- required to move the plunger increases, the degree of control that can be exercised over the rate of injection is lessened. For materials having extremely high viscosity, such as a collagen implant for example, the force required to move the plunger approaches the maximum force available to finger and thumb muscles that is consistent with fine motor control.
In the past, most devices for assisting the compression of a syringe have been relatively complex and often obstruct the view of the needle or otherwise pose difficulties relative to conventional injection* techniques. One type of device comprises a pistol- grip pawl and ratchet mechanism. A drawback associ- ated with this type of device is that the advance of the plunger is limited to steps of a fixed size, as determined by the ratchet mechanism. Consequently, the degree of control that is available is limited. In addition, most commercially available devices of this type are adapted for relatively large syringes, and are not suited for use with smaller syringes having a capacity of 1-3 cc., for example.
Other types of devices are not suited for use with conventional syringes. For example, one pneumatic syringe assist device requires a syringe that does not have a plunger, so that the compressed air can act directly on the material to be injected.
Objects of the Invention
Accordingly it is a general object of the present invention to provide a novel device for amplifying the manual force that is applied to the plunger of a syringe during injection of a liquid material.
It is a more specific object of the present invention to provide a novel device that utilizes a mechanical advantage to amplify the force applied to a syringe plunger.
It is another object of the present inven¬ tion to provide such a device that does not obstruct the view of the needle, to possibly limit injection sites, or otherwise interfere with the injection process.
It is a further object of the present inven¬ tion to provide such a device that retains, and pos-_ sibly even enhances, the tactile feedback that is provided to the person operating the syringe. It is yet another object of the invention to provide a novel syringe force amplifying device that retains the ability to operate the syringe with the familiar and comfortable hand position that is nor¬ mally utilized.
OMPI It is still a further object of the inven¬ tion to provide such a device that can accomodate variations in hand size, strength and holding style.
Still another object of the invention is to provide a novel syringe force amplifying device that is both rugged and simple to construct.
Yet a further object of the invention is to provide a force amplification device that can be readily used with conventional syringes.
Disclosure of the Invention
In accordance with the present invention, these and other objects are achieved, and their atten¬ dant advantages are provided, by a syringe assist device including a frame and moveable carriage that are respectively attached to a conventional syringe and its plunger. The frame has a toothed rack and the carriage contains a force amplifying gear and lever mechanism. A thumb ring transmits the force applied by the user's thumb to the lever to rotate the gear and move the carriage along the frame. This action in turn applies amplified compression to the syringe plunger. A ratchet connection between the lever and the gear enables the movement of the carriage to be continued when the lever has reached the end of its stroke.
Further features and advantages of the invention are described in greater detail hereinafter with particular reference to a preferred embodiment of the invention illustrated in the accompanying drawings. Brief Description of the Drawings
Figure 1 is a perspective view of the syringe assist device, illustrating the manner that a syringe is inserted to be connected thereto? Figure 2 is a top view of the device with a syringe inserted;
Figure 3 is a side view of the device with a syringe inserted?
Figure 4 is an enlarged top view of the frame and carriage with the top half of the carriage removed to illustrate the gear and lever mechanism; and
Figure 5 is a cross-sectional end view of the frame and carriage, taken along the section line ' 5-5 of Figure 4.
Modes for Carrying Out the Invention
Referring to Figures 1-3, a syringe assist device constructed in accordance with the present invention basically comprises a frame 10 and a car- riage 12 that is moveable along the frame. The for¬ ward end of the frame has a bore that accomodates the barrel 14 of a syringe. This bore is defined by an upper arc-shaped bridge 16 at the forwardmost end of the frame, and a lower arc-shaped bridge 18 disposed behind the upper bridge 16. The spacing of the bridges in this manner allows the syringe to be inser¬ ted into the bore at an angle, as depicted in Figure_ 1. The lower bridge 18 is provided with a slot 20 to. accαmodate the flange 22 that is typically located at the top of the barrel, and thereby holds the syringe in place on the frame.
A spring clip 24 projects from the front of the frame, and includes an arcuate portion 26 at its
OMPI
forwardmost end that is snapped in place around the needle luer hub 28 of the syringe once it is inserted into the frame. The spring clip not only serves to secure the attachment of the syringe to the frame, but it also retains the needle in place and prevents its detachment, for example due to needle hub or syringe failure under high internal pressure.
The carriage 12 includes a pair of clips 30 that accomodate the disk-type flange 32 at the end of the syringe plunger 34, to thereby secure the plunger to the carriage. Thus, when the syringe is inserted into the frame with its flange 22 disposed in the slot 20 and the plunger is engaged in the clip 30, any movement of the carriage 12 relative to the frame will induce corresponding movement of the plunger relative to the barrel 14 of the syringe.
To enable the syringe assist device to be operated with the same one-handed holding style that is typically utilized with syringes, a thumb ring 36 is disposed on the end of a plunger 38 that projects from the rear of the carriage 12. Two pairs of finger grips 40 and 42 are provided on the frame. The two pairs of grips are displaced along the length of the frame to thereby accomodate different hand sizes and different holding styles. Thus the device can be held by placing the index and middle fingers of the hand in one of the pairs of grips and placing the thumb in the ring 36. The plunger 38 is translated into and out of the carriage with the thumb ring, utilizing the same motion as is employed with a syringe by itself.
The manner in which the device operates to amplify the force that is manually applied to the thumb ring is explained with reference to the detailed diagrams of Figures 4 and 5. For ease of manufacture and assembly of the device, the carriage 12 can be made of two halves that are fitted together. The car¬ riage is shown with the top half removed in Figure 4. The frame 12 is provided with two opposed parallel racks 44 having teeth 46. Two pinion gears 48 rotate about shafts 50 within the carriage, and their teeth respectively mesh with those of the racks 44. A lever 52 is disposed on each shaft 50 for lim¬ ited pivotal movement. As best illustrated in Figure 5, each lever 52 is engaged with its associated pinion gear 48 by means of ratchet teeth 54 disposed on the opposing faces of the lever and the gear. These teeth have one face that is parallel to the axis of the shafts 50, and another face that is disposed approxi- mately 45" relative thereto. Thus, when the levers are pivoted in one direction, the pinion gears will be forced to rotate therewith. The ratchet teeth are set up so that this occurs when the levers are moved for¬ ward, i.e., the lower lever in Figure 4 pivots in a counterclockwise direction and the upper lever moves in a clockwise direction. However, in the other direction of movement, relative rotation is allowed to take place between each lever and pinion gear by the slanted surfaces of the ratchet teeth. The levers 52 are biased in an axial direction into normal engage¬ ment with the pinion gears by means of springs 56, for example spring washers.
The ends of the levers 52 that are remote - from the shafts 50 include slots 58 that accomodate a- shaft 60. The shaft 60 is parallel to the gear shafts 50, and is translatable in a transverse direction within two recesses 62 in the carriage 12. Transla¬ tion of the shaft 60, and hence pivoting of the levers 52, is provided by the plunger 38, which is rigidly connected to the shaft. The moment arm, or operative length, of each lever 52, i.e., the distance between the axes of the shafts 50 and 60, is greater than that of the gear which it engages, i.e., greater than the distance between the axis of the shaft 50 and the point of engagement between the gear teeth and the rack teeth 46. Thus, the gear and lever arrangement provides a mechanical advantage with respect to force applied through the plunger 38. Preferably, the levers and gears are dimensioned so that the carriage moves along the frame with a force that is four times greater than that applied to the thumb ring 36 and plunger 38.
In operation, the thumb ring 36 is pulled to move the carriage to the right (as viewed in Figure 4), and a syringe is inserted in the device in the manner illustrated in Figure 1. The plunger flange 32 is engaged in the clips 30 of the carriage, and the retainer 26 snappped in place around the needle hub, to attach the syringe to the device as shown in Figures 2 and 3. Thereafter, as the thumb ring is pushed into the carriage, the levers 52 and , gears 48 will be pivoted about the shafts 50, causing the carriage to move forward along the frame and compress the plunger into the barrel 14 with a greater force than that applied by the thumb to the ring.
Conversely, the carriage will move a proportionately shorter distance than the thumb ring.
At the end of travel of the thumb ring, i.e., when the levers 52 contact the front wall 64 of the carriage, the carriage can continue to move for¬ ward under direct pressure from the thumb if no mechanical advantage is required. In this case, the ratchet teeth 54 will enable the pinion gears 48 to continue turning as the carriage moves along the frame, even though the levers are stationary. Alternatively, if force amplification is required to continue the movement of the plunger, the thumb ring is retracted to pull the plunger out of the carriage. In this case, the carriage will remain stationary due to the dampening effect provided by the syringe, i.e., the plunger will resist being pulled from the barrel. Again, the ratchet teeth will allow relative rotation between the levers and the gears, enabling the levers to be pivoted rearwardly while the gears remain motionless. The thumb ring can then be pressed towards the carriage again, providing contin¬ ued forward movement of the carriage with force amplification.
In order to enable the carriage to be retracted, a pair of cam surfaces 66 are provided on each lever 52. These cam surfaces are disposed at an appropriate angle, e.g., 45β, relative to the axis of the shafts 50. A pair of corresponding cams 68 are provided on the carriage adjacent each lever (only two of which are illustrated in Figure 4 adjacent the upper lever). As the levers 52 approach the limit of their travel when the thumb ring is pulled away from the carriage, the cam surfaces 66 will engage and ride up on the cams 68, causing the levers to move axially against the bias of the springs 56. Consequently, the ratchet mechanisms will be disengaged, enabling the pinion gears to rotate freely. Thus, the entire car¬ riage will be retracted if the thumb ring continues to be pulled outwardly. From the foregoing, it can be seen that the present invention provides a device that amplifies the manual force applied to a syringe while retaining the ability to operate the syringe in a conventinal fash¬ ion and without obstruction. Precise control over the amount and rate of compression of the syringe is afforded, along with tactile feedback as to the resistance offered by the syringe.
It will be appreciated by those of ordinary skill in the art that the present invention can be embodied in other specific forms without departing from the spirit or essential characteristics thereof. The presently disclosed embodiment is therefore considered in all respects to be illustra- tive and not restrictive. The scope of the invention is indicated by the appended claims rather than the foregoing description, and all changes that come within the meaning and range of equivalents thereof are intended to be embraced therein.

Claims

Claims
1. Apparatus for amplifying the manual force applied to compress the plunger of a syringe into its barrel, comprising: a frame having means for attachment to the barrel of a syringe? a carriage mounted on said frame so as to be moveable relative thereto along the longitudinal axis of a syringe attached to the frame, said carriage including means for engaging the plunger of a syringe; a gear rotatably mounted on said carriage and operatively engaging said frame suc that rotation of said gear induces movement of said carriage along said axis? and manually actuatable means for rotating said gear with a mechanical advantage such that the linear force applied to the plunger of a syringe connected to said carriage is greater than the force that is man¬ ually applied to rotate said gear.
2. The apparatus of claim 1 wherein said manually actuatable means includes a pivotable lever operatively engaged for rotation with said gear, and means for applying a linear force to the end of said lever that is remote from its pivot axis, said lever having a greater moment arm than said gear.
3. The apparatus of claim 2 wherein said lever is engaged with said gear by means of a ratchet arrangement that enables relative rotation between said lever and said gear in one direction.
4. The apparatus of claim 3 further including means for disengaging said lever from said gear near one end of the pivot stroke of said lever, to thereby permit relative rotation of said lever and said gear in the other direction.
5. The apparatus of claim 1 wherein said frame includes finger grips for grasping by at least two fingers of a person operating a syringe, and said manually actuatable means includes a thumb ring to accomodate the thumb of the person.
6. The apparatus of claim 5 wherein two pairs of finger grips are provided on said frame at different locations along its length to accomodate different hand sizes and holding styles.
7. The apparatus of claim 1 wherein said frame further includes a retainer for attachment to the needle of a syringe.
8. A device for increasing the compressive force that is manually applied to a syringe, comprisingt a frame having means for attachment to the barrel of a syringe and including a pair of opposed racks of teeth; a carriage mounted for movement between said racks of teeth along a path of travel parallel thereto, said carriage having means for engaging the plunger of a syringe attached to said frame; a pair of pinion gears rotatably disposed on said carriage and respectively engaging said racks of teeth; a pair of levers respectively engaged for rotation with said pinion gears, each of said levers having an operative length greater than the radius of its associated pinion gear to thereby provide a mechanical advantage; and a plunger connected to said levers and adapted to be manually translated to pivot said levers and thereby move said carriage relative to said frame due to the interaction between the rotating gears and the rack teeth.
9. The device of claim 8 wherein said levers are engaged with their respective pinion gears by means of ratchet arrangements that enable relative rotation to take place between said levers and their respective gears in one direction.
10. The device of claim 9 further including means for disengaging said levers from said gears near one end of the pivot stroke of said levers, to thereby permit relative rotation of said levers and said gears in the other direction.
11. The device of claim 8 wherein said plunger includes a ring disposed at the end thereof that is remote from its connection to said levers, said ring being adapted to accomodate the thumb of a user.
12. The device of claim 11 wherein two pairs of finger grips are provided on said frame at different locations along its length to accomodate different hand sizes and holding styles.
OMPI rm. V/IrO
13. The device of claim 8 wherein said frame further includes a retainer for attachment to the needle of a syringe.
14. Apparatus for amplifying the manual force applied to compress the plunger of a syringe into its cylinder, comprising: a frame having means for attachment to the barrel of a syringe; a carriage mounted on said frame so as to be moveable relative thereto and including means for engaging the plunger of a syringe attached to said frame; means adapted to be manually translated along a path of travel coaxial with that of the plunger to apply a linear force to said carriage; and means operatively disposed between said force applying means and said frame for moving said carriage along said frame with a mechanical advantage such that the force applied to the plunger of a syringe by said carriage is greater than the manual force applied to said force applying means.
OMPI
PCT/US1983/001619 1982-10-14 1983-10-14 Syringe force amplification device WO1984001509A1 (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
AU22023/83A AU2202383A (en) 1982-10-14 1983-10-14 Syringe force amplification device

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
US06/434,223 US4465478A (en) 1982-10-14 1982-10-14 Syringe force amplification device
CA000440036A CA1201347A (en) 1982-10-14 1983-10-31 Syringe force amplification device

Publications (1)

Publication Number Publication Date
WO1984001509A1 true WO1984001509A1 (en) 1984-04-26

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Family Applications (1)

Application Number Title Priority Date Filing Date
PCT/US1983/001619 WO1984001509A1 (en) 1982-10-14 1983-10-14 Syringe force amplification device

Country Status (5)

Country Link
US (1) US4465478A (en)
EP (1) EP0122285A1 (en)
AU (1) AU2202383A (en)
CA (1) CA1201347A (en)
WO (1) WO1984001509A1 (en)

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EP0122285A1 (en) 1984-10-24
US4465478A (en) 1984-08-14
AU2202383A (en) 1984-05-04

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