US2642062A - Injection apparatus - Google Patents

Injection apparatus Download PDF

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US2642062A
US2642062A US93771A US9377149A US2642062A US 2642062 A US2642062 A US 2642062A US 93771 A US93771 A US 93771A US 9377149 A US9377149 A US 9377149A US 2642062 A US2642062 A US 2642062A
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piston
medicament
cylinder
accumulator
bores
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US93771A
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Edwin A May
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Becton Dickinson and Co
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Becton Dickinson and Co
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Priority claimed from GB2435650A external-priority patent/GB691696A/en
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    • 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
    • A61M5/30Syringes for injection by jet action, without needle, e.g. for use with replaceable ampoules or carpules

Definitions

  • This invention relates to a structurally and functionally improved injection apparatus by means of which medicament may be hypodermically injected into tissue without the use or a penetrating needle.
  • the volume of injected medicament may be controlled so that a precise dosage may be injected according to the judgment of the physician.
  • Still another object is that of furnishing an injection apparatus which may be used or handled with saie'ety even though the operator possesses no technical skill; the present invention additionally contemplating an apparatus of the type which will include relatively few parts each individually simple and rugged in construction and which parts may be readily assembled to furnish a unitary apparatus operating with freedom from all difficulties over long periods of time.
  • Fig. i is a top plan view
  • Fig. 2 is a rear view of the assembly
  • Fig. 3 is a sectional side view taken along the lines 8-3 and in the direction of the arrows as indicated in Fig. 1;
  • Fig. 4 is a fragmentary side elevation of the apparatus as shown in Figs. 1 and 2.
  • the numeral 5 indicates a downwardly extending or handle portion and the numeral 6 indicates an operating lever or trigger.
  • the latter is mounted by a head portion 1 which is conveniently formed with opposed bores 8 and 9 separated by a central partition In.
  • a passage H may extend between the chamber or bore 9 and a valve chamber [2.
  • Mounted within the latter is a valve l3 and apertured retaining memher It.
  • a spring l5 urges valve I3 against its seat It.
  • a separation of the handle 5 from the head 1 may be prevented in any desired manner such as by means of a set screw H.
  • a stem i8 mounts or bears against valve 13 and this stem is formed with channels [9 through which liquids may pass from chamber 12 to bore 8.
  • a medicament injecting assembly is provided within that bore or chamber 8 . This may take one of several different forms. Conveniently.
  • a collapsible container or sack preferably formed of rubber and which may in turn contain an ampule or capsule 2i of suitable material within which the medicament is packaged.
  • the several parts may be retained against displacement by a cap 22 beyond which a nozzle 23 extends. That nozzle may have its outer end pierced to provide a relatively fine aperture 24 through which a column or jet of medicamerit may escape.
  • an accumulator structure is disposed within the handle 5 .
  • such structure will, in its preferred concept include a spring 25 of relatively heavy type.
  • the opposite ends of the spring will bear against a cap and piston respectively.
  • the cap has been shown at 26 and is formed with threads which cooperate with threads 2'! formed on the exterior of the handle 5.
  • This cap is also conveniently formed with an opening 28 which may have a configuration such that it will cooperate with a wrench and will also serve to vent air from within the interior of the handle 5.
  • the piston has been indicated at 29.
  • a packing 30 is associated with the piston and the body of the latter slides within the accumulator cylinder defined adjacent the upper end of handle 5.
  • may be disposed between handle 5 and the stud extending from head I.
  • a washer 32 may be interposed between the end of the main bore of handle 5 and a flange 33 forming a part of the piston.
  • a washer 34 may also be interposed between the lower or outer end of spring 25 and the inner face of cap 26. Such elements will cushion the several parts of the assembly.
  • a further piston 35 is slidably mounted within the cylinder provided by the bore 9.
  • a packing; 36 may be carried by this piston.
  • An enlarged portion of the body of the latter may be threaded. as at 31 and cooperate with threads 38 formed in the rear end of bore 9.
  • the piston body is enlarged to furnish an operating head 39 conveniently formed with a socket 40 which may receive the end of a wrench.
  • may be applied to the rear end of head 1.
  • the stem portion of piston 35 extending beyond the element M may be formed with graduations and indicia interpretative of those graduations as indicated at 2. These indicia may be read and registered with the outer edge or surface of the element ll. Columns of graduations and indicia such as have been indicated at 43 may be applied to the outer face of handle portion 5. These latter indicia may be read by registering with the same the leading edge of cap 26. In this connection it will be obvious both with respect to piston 35, as well as cap 26, that these units may be axially shifted or adjusted and that such adjustments will serve to bring into individual registry the calibrations as embraced in groups 42 and 43.
  • a rotatable member in the form of a. cam t4 may be mounted on the side face of head 7. That trigger or handle is pivotally supported as, for example, at 45 and overlies the stem it of the valve. It is apparent that when the cam is adjusted to the Safe position, it will underlie the edge of trigger 6 and prevent the same from operating or shifting stem IS. However, when cam 411 is rotated to the The position, then this handle or trigger may be swung around its pivot .to shift or project stem is and the adjacent valve 13.
  • the bores, cylinder and passages may contain a body of aircap 22 or its functional equivalent is mounted upon the head 1.
  • the dosage to be injected is A; or cc. then the head 39 will be rotated either by engaging its knurled surface or by means of a suitable wrench so that the selected graduation aligns with the surface of element 4!.
  • nozzle into direct contact area of tissue to be may conveniently be skin surface. If now depressed it will rock 23 will normally be brought with the skin overlying the injected.
  • the aperture 24 in direct contact with such the trigger or handle 6 is around pivot thereby depressing stem H3 and unseating valve l3.
  • liquid will be free to flow from the accumulator cylinder within which piston 29 is enclosed through the aperture of retainer it, past the valve and its seat 16, through the grooves 19 and so into chamber 8. Incident ill to the pressures under which the liquid is placed, such flow will result in a collapse of the sack 2i ⁇ and form of a fine stream and at velocities such that it will penetrate the tissues.
  • the handie 5 may again be released and the safety shifted to assure against a subsequent accidental discharge. If a structure other than the sack 20 is employed, then the liquid will nevertheless act against the surfaces provided to assure the desired results. The ejection will be almost instantaneous, but will vary with the adjustment of the accumulator.
  • cap 22 With the medicament exhausted, cap 22 may be dismounted and the fragments of, or collapsed body of the medicament-containing unit may be removed and discarded. Piston 35 will be retracted. A new unit may be positioned within bore 8 or a suitable portion of the latter may be filled with liquid medicament. Thereupon the incident to the check valve action on the part of valve body (3. Such displaced liquid will be achieved. Obviously numerous changes in construction and rearrangement of the parts might be resorted to without departing from the spirit of the invention as defined by the claims.
  • An injection apparatus including in combination a casing portion to mount a unit containing a body of medicament to bedischarged through an orifice at high velocity, said apparatus providin in communication with'said casand a valve for controlling the flow of liquid from such latter space to said casing portion.
  • An injection apparatus including in combination a casing portion to mount a unit containing a body of medicament to be discharged through an orifice at high velocity, said apparatus providing in communication with said casexpel the same through the orifice, an accumulator comprising a spring and an enclosure therefor to always maintain said spring in partially compressed condition, a piston connected to said spring and extending into one of said spaces to be shifted by the liquid therein, a valve for con trolling the how of liquid from such latter space to said casing portion and means for adjusting the tension of said spring.
  • An injection apparatus including in combination a casing portion to mount a unit containing a body of medicament to be discharged through an orifice at high velocity, said apparatus providing in communication with said casing portion spaces and passages to receive liquid to operatively act against the medicament to expel the same through the orifice, an accumulator comprising a spring, a piston connected to said spring and extending into one of said spaces, a valve for controlling the flow of fluid from such latter space to said casing portion, means for adjusting the tension of said spring and means for indicating the degree of such adjustment.
  • An injection apparatus including in combination a casing portion to mount a unit containing a body of medicament to be discharged through an orifice at high velocity, said apparatus providing in communication with said casing portion spaces and passages to receive liquid to operatively act against the medicament to expel the same through the orifice, an accumulator comprising a spring, a piston connected to said spring and extending into one of said spaces, a valve for controlling the flow of liquid from such latter space to said casing portion and shiftable means for displacing liquid from one of said spaces and through one of said passages to cause a shifting of said piston and compresison of said spring.
  • An injection apparatus including in combination a casing portion to mount a unit containing a body of medicament to be discharged through an orifice at high velocity, said apparatus providing in communication with said casing portion spaces and passages to receive liquid to operatively act against the medicament to expel the same through the orifice, an accumulator comprising a spring, a piston connected to said spring and extending into one of said spaces, a valve for controlling the flow of liquid from such latter space to said casing portion, shiftable means for displacing liquid from one of said spaces and through one of said passages to cause a shifting of said piston and compression of said spring and means for registering the amount to which said latter means have been shifted.
  • An injection apparatus including a head portion formed with opposed bores and passages connecting said bores, one of said bores receiving medicament to be expelled at high velocity, said bores and passages being adapted to contain operating fluid, shiftable fluid displacing means disposed in the other bore, an accumulator comprising a cylinder connected to said passages, a piston within said cylinder, compressible means acting against said piston to urge the same to resist displacement of fluid into said cylinder and a valve interposed in the passage between said cylinder and said medicament receiving bore.
  • An injection apparatus including a head portion formed with opposed bores and passages connecting said bores, one of said bores receiving medicament to be expelled at high velocity, said bores and passages being adapted to contain operating fluid, shiftable fluid displacing means disposed in the other bore, an accumulator com prising a cylinder connected to said pasasges, a piston within said cylinder, compressible means acting against said piston to urge the same to resist displacement of fluid into said cylinder, a valve interposed in the passage between said cylinder and said medicament-receiving bore, manual means for shifting said valve and safety means for normally preventing such shifting.
  • An injection apparatus including a head portion formed with opposed bores and passages connecting said bores, one of said bores receiving medicament to be expelled at high velocity, said bores and passages being adapted to contain operating fluid, shiftable fluid displacing means disposed in the other bore, the other bore being formed with a thread throughout its outer portion and providing a cylinder adjacent its inner portion, a piston slidable within said cylinder, the body of said piston extending outwardly and being formed with threads to engage the thread bores, an operating portion extending beyond said threaded body and an accumulator connected to said passages and storing under pressure the fluid displaced by said piston.
  • An injection apparatus including a head portion formed with opposed bores and passages connecting said bores, one of said bores receiving medicament to be expelled at high velocity, said bores and passages being adapted to contain operating fluid, shiitable fluid displacing means disposed in the other bore, the other bore being formed with a thread throughout its outer portion and providing a cylinder adjacent its inner portion, a piston slidable within said cylinder, the body of said piston extending outwardly and being formed with threads to engage the thread bores, an operating portion extending beyond said threaded body, registering means for indicating the degree of projection of said piston within said cylinder portion and an accumulator connected to said passages and storing under pressure the fluid displaced by said piston.
  • An injection apparatus including in combination a casing portion to receive a body of medicament to be discharged through an orifice at high velocity, an accumulator forming a part of said apparatus and comprising a cylinder, a piston within said cylinder and compressible means acting against said piston to urge the same to resist displacement within said cylinder, said apparatus being formed with a further cylinder and passages connecting said cylinders and said casing portion and means for displacing fluid within said last named cylinder, through one of said passages and into said first named cylinder to shift the piston within the latter.
  • a hypodermic injection apparatus including in combination a hollow body providing adjacent one of its ends a space to receive a medicament-containing ampule from which liquid is to be discharged at high velocity, 9. loading cap movably mounted by said body to close said space. a compressible pressure accumulator disposed within said body and operatively connected to said space to act on an ampule contained therein, manually operated force-compounding means carried by said body for compressing said accumulator, means for retaining said accumulator in compressed condition and manually shiftable meanes accessible on the exterior of said body to release said retaining means.
  • a hypodermic injection apparatus including in combination a hollow body providing adjacent one of its ends a space to receive a medic ament-containing ampule from which liquid is to be discharged at high velocity, a loading cap movably mounted by said body to close said space, a compressible pressure accumulator disposed within said body and operatively connected to said space to act on an ampule contained therein, said apparatus being formed with a fluid passage extending to said accumulator, manually operated force-compounding means carried by said body to force fluid under pressure towards said 7 accumulator for compressin the latter, means for retaining said accumulator in compressed condition and manually shiftable means accessible on the exterior of said body to release said retainingmeans.
  • a hypodermic injection apparatus including in combination a hollow body providing adjacent one of its ends a space to receive a medic ament-containing ampule from which liquid is to be discharged at high velocity, a loading cap movably mounted by said body to close said space, a compressible pressure accumulator disposed within said body and operatively connected to said space to act on an ampule contained therein, said apparatus being formed with a fluid passage extending to said accumulator.
  • said apparatus being also formed with a cylinder communicating with said passage, a piston movable in said cylinder to displace fluid therefrom through said passage and to act against said accumulator for compressing the latter, a manually rotatable plunger operatively connected to said piston and having screw threaded engagement with said body whereby upon said plunger being turned. said piston Will be projected, means for retaining said accumulator in compressed condition and manually shiftable means to release said retaining means.

Description

June 16, 1953 a. A. MAY
INJECTION APPARATUS Filed May 1'7, 194g I If? IW LL INVENTOR.
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[11mm 19 fla QMLZQM WW 4 TTORNE r Patented June 15, 1953 2,642,062 INJECTION APPARATUS Edwin A. May, Bidgewood, N.
Dickinson and Company,
J., assignor to Rutherford,
N. J a corporation of New Jersey 1949, Serial No. 93,771
13 Claims. (Cl. 128-173) Application May 17,
This invention relates to a structurally and functionally improved injection apparatus by means of which medicament may be hypodermically injected into tissue without the use or a penetrating needle.
It is an object of the invention to furnish a unit of this character which may be readily loaded and operated and by means of which, moreover, the depth or velocity of injection may be regulated with nicety.
Additionally, by means of the present invention, the volume of injected medicament may be controlled so that a precise dosage may be injected according to the judgment of the physician.
Still another object is that of furnishing an injection apparatus which may be used or handled with saie'ety even though the operator possesses no technical skill; the present invention additionally contemplating an apparatus of the type which will include relatively few parts each individually simple and rugged in construction and which parts may be readily assembled to furnish a unitary apparatus operating with freedom from all difficulties over long periods of time.
With these and other objects in mind, reference is had to the attached sheet of drawings illustrating one practical embodiment of the invention and in which:
Fig. i is a top plan view;
Fig. 2 is a rear view of the assembly;
Fig. 3 is a sectional side view taken along the lines 8-3 and in the direction of the arrows as indicated in Fig. 1; and
Fig. 4 is a fragmentary side elevation of the apparatus as shown in Figs. 1 and 2.
In these views the numeral 5 indicates a downwardly extending or handle portion and the numeral 6 indicates an operating lever or trigger. The latter is mounted by a head portion 1 which is conveniently formed with opposed bores 8 and 9 separated by a central partition In. A passage H may extend between the chamber or bore 9 and a valve chamber [2. Mounted within the latter is a valve l3 and apertured retaining memher It. A spring l5 urges valve I3 against its seat It. A separation of the handle 5 from the head 1 may be prevented in any desired manner such as by means of a set screw H. A stem i8 mounts or bears against valve 13 and this stem is formed with channels [9 through which liquids may pass from chamber 12 to bore 8.
Within that bore or chamber 8 a medicament injecting assembly is provided. This may take one of several different forms. Conveniently.
however, it includes a collapsible container or sack preferably formed of rubber and which may in turn contain an ampule or capsule 2i of suitable material within which the medicament is packaged. The several parts may be retained against displacement by a cap 22 beyond which a nozzle 23 extends. That nozzle may have its outer end pierced to provide a relatively fine aperture 24 through which a column or jet of medicamerit may escape.
Within the handle 5 an accumulator structure is disposed. According to the teachings of the present invention such structure will, in its preferred concept include a spring 25 of relatively heavy type. The opposite ends of the spring will bear against a cap and piston respectively. The cap has been shown at 26 and is formed with threads which cooperate with threads 2'! formed on the exterior of the handle 5. This cap is also conveniently formed with an opening 28 which may have a configuration such that it will cooperate with a wrench and will also serve to vent air from within the interior of the handle 5. The piston has been indicated at 29. A packing 30 is associated with the piston and the body of the latter slides within the accumulator cylinder defined adjacent the upper end of handle 5. A suit" able seal 3| may be disposed between handle 5 and the stud extending from head I. A washer 32 may be interposed between the end of the main bore of handle 5 and a flange 33 forming a part of the piston. A washer 34 may also be interposed between the lower or outer end of spring 25 and the inner face of cap 26. Such elements will cushion the several parts of the assembly.
A further piston 35 is slidably mounted within the cylinder provided by the bore 9. A packing; 36 may be carried by this piston. An enlarged portion of the body of the latter may be threaded. as at 31 and cooperate with threads 38 formed in the rear end of bore 9. Beyond this portion the piston body is enlarged to furnish an operating head 39 conveniently formed with a socket 40 which may receive the end of a wrench. A retaining and closure element 4| may be applied to the rear end of head 1.
As shown especially in Fig. 4. the stem portion of piston 35 extending beyond the element M may be formed with graduations and indicia interpretative of those graduations as indicated at 2. These indicia may be read and registered with the outer edge or surface of the element ll. Columns of graduations and indicia such as have been indicated at 43 may be applied to the outer face of handle portion 5. These latter indicia may be read by registering with the same the leading edge of cap 26. In this connection it will be obvious both with respect to piston 35, as well as cap 26, that these units may be axially shifted or adjusted and that such adjustments will serve to bring into individual registry the calibrations as embraced in groups 42 and 43.
With a view to providing a structure which will prevent the trigger or handle 6 from beoperated, a rotatable member in the form of a. cam t4 may be mounted on the side face of head 7. That trigger or handle is pivotally supported as, for example, at 45 and overlies the stem it of the valve. It is apparent that when the cam is adjusted to the Safe position, it will underlie the edge of trigger 6 and prevent the same from operating or shifting stem IS. However, when cam 411 is rotated to the The position, then this handle or trigger may be swung around its pivot .to shift or project stem is and the adjacent valve 13.
In use it will be understood that the bores, cylinder and passages may contain a body of aircap 22 or its functional equivalent is mounted upon the head 1. Assuming that the dosage to be injected is A; or cc. then the head 39 will be rotated either by engaging its knurled surface or by means of a suitable wrench so that the selected graduation aligns with the surface of element 4!.
As previously brought out, cap of adjustment the dosage as ton 35. In other words, the operator will read that column of graduations 43 which is identi fied by a designation corresponding to the value of the graduation 42 which corresponds to the volume to be injected. In adjustment it is apparent that piston will be projected inwardly. It is also apparent that the inward movement of piston 35 will displace a portion of the liquid filling the cylinder or bore 9. The quantity so displaced will correspond to the dosage which is to be injected. The displaced liquid will flow through passage H, the aperture or apertures in the retainer l4 and act against the head of piston 25 to shift the latter against the thrust of spring 25. The apparatus is now ready for use subject only to shifting the cam or other safety structure to a position at which the parts may be released.
In such use nozzle into direct contact area of tissue to be may conveniently be skin surface. If now depressed it will rock 23 will normally be brought with the skin overlying the injected. The aperture 24 in direct contact with such the trigger or handle 6 is around pivot thereby depressing stem H3 and unseating valve l3. Under those circumstances, liquid will be free to flow from the accumulator cylinder within which piston 29 is enclosed through the aperture of retainer it, past the valve and its seat 16, through the grooves 19 and so into chamber 8. Incident ill to the pressures under which the liquid is placed, such flow will result in a collapse of the sack 2i} and form of a fine stream and at velocities such that it will penetrate the tissues. Thereafter the handie 5 may again be released and the safety shifted to assure against a subsequent accidental discharge. If a structure other than the sack 20 is employed, then the liquid will nevertheless act against the surfaces provided to assure the desired results. The ejection will be almost instantaneous, but will vary with the adjustment of the accumulator.
If a dosage has been used which resulted in only partof the medicament within chamber 20 being expelled, then the balance of such medicament, or any desired fraction thereof could be subsequently injected in the same or another This would be accomplished by further adjusting piston 35 to displace the desired amount of liquid into the accumulator. Thereupon the latter, if necessary, could be adjusted and the injection step proceeded with.
With the medicament exhausted, cap 22 may be dismounted and the fragments of, or collapsed body of the medicament-containing unit may be removed and discarded. Piston 35 will be retracted. A new unit may be positioned within bore 8 or a suitable portion of the latter may be filled with liquid medicament. Thereupon the incident to the check valve action on the part of valve body (3. Such displaced liquid will Thus, among others, the several objects of the invention as specifically aforenoted are achieved. Obviously numerous changes in construction and rearrangement of the parts might be resorted to without departing from the spirit of the invention as defined by the claims.
I claim:
1. An injection apparatus including in combination a casing portion to mount a unit containing a body of medicament to bedischarged through an orifice at high velocity, said apparatus providin in communication with'said casand a valve for controlling the flow of liquid from such latter space to said casing portion.
2. An injection apparatus including in combination a casing portion to mount a unit containing a body of medicament to be discharged through an orifice at high velocity, said apparatus providing in communication with said casexpel the same through the orifice, an accumulator comprising a spring and an enclosure therefor to always maintain said spring in partially compressed condition, a piston connected to said spring and extending into one of said spaces to be shifted by the liquid therein, a valve for con trolling the how of liquid from such latter space to said casing portion and means for adjusting the tension of said spring.
3. An injection apparatus including in combination a casing portion to mount a unit containing a body of medicament to be discharged through an orifice at high velocity, said apparatus providing in communication with said casing portion spaces and passages to receive liquid to operatively act against the medicament to expel the same through the orifice, an accumulator comprising a spring, a piston connected to said spring and extending into one of said spaces, a valve for controlling the flow of fluid from such latter space to said casing portion, means for adjusting the tension of said spring and means for indicating the degree of such adjustment.
4. An injection apparatus including in combination a casing portion to mount a unit containing a body of medicament to be discharged through an orifice at high velocity, said apparatus providing in communication with said casing portion spaces and passages to receive liquid to operatively act against the medicament to expel the same through the orifice, an accumulator comprising a spring, a piston connected to said spring and extending into one of said spaces, a valve for controlling the flow of liquid from such latter space to said casing portion and shiftable means for displacing liquid from one of said spaces and through one of said passages to cause a shifting of said piston and compresison of said spring.
5. An injection apparatus including in combination a casing portion to mount a unit containing a body of medicament to be discharged through an orifice at high velocity, said apparatus providing in communication with said casing portion spaces and passages to receive liquid to operatively act against the medicament to expel the same through the orifice, an accumulator comprising a spring, a piston connected to said spring and extending into one of said spaces, a valve for controlling the flow of liquid from such latter space to said casing portion, shiftable means for displacing liquid from one of said spaces and through one of said passages to cause a shifting of said piston and compression of said spring and means for registering the amount to which said latter means have been shifted.
6. An injection apparatus including a head portion formed with opposed bores and passages connecting said bores, one of said bores receiving medicament to be expelled at high velocity, said bores and passages being adapted to contain operating fluid, shiftable fluid displacing means disposed in the other bore, an accumulator comprising a cylinder connected to said passages, a piston within said cylinder, compressible means acting against said piston to urge the same to resist displacement of fluid into said cylinder and a valve interposed in the passage between said cylinder and said medicament receiving bore.
7. An injection apparatus including a head portion formed with opposed bores and passages connecting said bores, one of said bores receiving medicament to be expelled at high velocity, said bores and passages being adapted to contain operating fluid, shiftable fluid displacing means disposed in the other bore, an accumulator com prising a cylinder connected to said pasasges, a piston within said cylinder, compressible means acting against said piston to urge the same to resist displacement of fluid into said cylinder, a valve interposed in the passage between said cylinder and said medicament-receiving bore, manual means for shifting said valve and safety means for normally preventing such shifting.
8. An injection apparatus including a head portion formed with opposed bores and passages connecting said bores, one of said bores receiving medicament to be expelled at high velocity, said bores and passages being adapted to contain operating fluid, shiftable fluid displacing means disposed in the other bore, the other bore being formed with a thread throughout its outer portion and providing a cylinder adjacent its inner portion, a piston slidable within said cylinder, the body of said piston extending outwardly and being formed with threads to engage the thread bores, an operating portion extending beyond said threaded body and an accumulator connected to said passages and storing under pressure the fluid displaced by said piston.
9. An injection apparatus including a head portion formed with opposed bores and passages connecting said bores, one of said bores receiving medicament to be expelled at high velocity, said bores and passages being adapted to contain operating fluid, shiitable fluid displacing means disposed in the other bore, the other bore being formed with a thread throughout its outer portion and providing a cylinder adjacent its inner portion, a piston slidable within said cylinder, the body of said piston extending outwardly and being formed with threads to engage the thread bores, an operating portion extending beyond said threaded body, registering means for indicating the degree of projection of said piston within said cylinder portion and an accumulator connected to said passages and storing under pressure the fluid displaced by said piston.
10. An injection apparatus including in combination a casing portion to receive a body of medicament to be discharged through an orifice at high velocity, an accumulator forming a part of said apparatus and comprising a cylinder, a piston within said cylinder and compressible means acting against said piston to urge the same to resist displacement within said cylinder, said apparatus being formed with a further cylinder and passages connecting said cylinders and said casing portion and means for displacing fluid within said last named cylinder, through one of said passages and into said first named cylinder to shift the piston within the latter.
11. A hypodermic injection apparatus including in combination a hollow body providing adjacent one of its ends a space to receive a medicament-containing ampule from which liquid is to be discharged at high velocity, 9. loading cap movably mounted by said body to close said space. a compressible pressure accumulator disposed within said body and operatively connected to said space to act on an ampule contained therein, manually operated force-compounding means carried by said body for compressing said accumulator, means for retaining said accumulator in compressed condition and manually shiftable meanes accessible on the exterior of said body to release said retaining means.
12. A hypodermic injection apparatus including in combination a hollow body providing adjacent one of its ends a space to receive a medic ament-containing ampule from which liquid is to be discharged at high velocity, a loading cap movably mounted by said body to close said space, a compressible pressure accumulator disposed within said body and operatively connected to said space to act on an ampule contained therein, said apparatus being formed with a fluid passage extending to said accumulator, manually operated force-compounding means carried by said body to force fluid under pressure towards said 7 accumulator for compressin the latter, means for retaining said accumulator in compressed condition and manually shiftable means accessible on the exterior of said body to release said retainingmeans.
13. A hypodermic injection apparatus including in combination a hollow body providing adjacent one of its ends a space to receive a medic ament-containing ampule from which liquid is to be discharged at high velocity, a loading cap movably mounted by said body to close said space, a compressible pressure accumulator disposed within said body and operatively connected to said space to act on an ampule contained therein, said apparatus being formed with a fluid passage extending to said accumulator. said apparatus being also formed with a cylinder communicating with said passage, a piston movable in said cylinder to displace fluid therefrom through said passage and to act against said accumulator for compressing the latter, a manually rotatable plunger operatively connected to said piston and having screw threaded engagement with said body whereby upon said plunger being turned. said piston Will be projected, means for retaining said accumulator in compressed condition and manually shiftable means to release said retaining means.
EDWIN A. MAY.
References Cited in the flle of this patent UNITED STATES PATENTS Number Name Date 2,322,244 Lockhart June 22, 1943 2,323,245 Lockhart June 22, 1943 2,380,534 Lockhart July 3, 1945 2,390,246 Folkman Dec. 4, 1945 2,398,544 Lockhart Apr. 16, 1946 FOREIGN PATENTS Number Country Date 11 272 Great Britain Aug. 14. 1884
US93771A 1949-05-17 1949-05-17 Injection apparatus Expired - Lifetime US2642062A (en)

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US93771A US2642062A (en) 1949-05-17 1949-05-17 Injection apparatus
GB2435650A GB691696A (en) 1950-10-05 1950-10-05 Improvements relating to hypodermic injection apparatus

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Cited By (18)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US2722931A (en) * 1951-01-17 1955-11-08 Becton Dickinson Co Injection device
US2785678A (en) * 1952-05-10 1957-03-19 Jr George N Hein Injection apparatus
US2798486A (en) * 1953-12-21 1957-07-09 Jr George N Hein Injection assembly
US2821981A (en) * 1954-07-21 1958-02-04 Geoffrey W Walker Multi-shot inoculant injector instrument with adjustable ejection pressure control
US4396384A (en) * 1981-04-16 1983-08-02 Hoechst Aktiengesellschaft Needle-less injection instrument
US5730723A (en) * 1995-10-10 1998-03-24 Visionary Medical Products Corporation, Inc. Gas pressured needle-less injection device and method
US6080130A (en) * 1998-11-14 2000-06-27 Castellano; Thomas P. Gas power source for a needle-less injector
US6210359B1 (en) 2000-01-21 2001-04-03 Jet Medica, L.L.C. Needleless syringe
US6223786B1 (en) 1998-11-14 2001-05-01 Pen Jet Corporation Apparatus and method for mixing medication and filling an ampule of a needle-less injector
US6474369B2 (en) 1995-05-26 2002-11-05 Penjet Corporation Apparatus and method for delivering a lyophilized active with a needle-less injector
US6500239B2 (en) 2001-03-14 2002-12-31 Penjet Corporation System and method for removing dissolved gas from a solution
US6613011B2 (en) 2001-04-13 2003-09-02 Penjet Corporation Gas-pressured engine with valve
US6730066B1 (en) * 1999-08-03 2004-05-04 Pharmacia Ab Liquid delivery container
US6755220B2 (en) 2001-04-27 2004-06-29 Penjet Corporation Method and apparatus for filling or refilling a needle-less injector
US6758837B2 (en) 2001-02-08 2004-07-06 Pharmacia Ab Liquid delivery device and method of use thereof
US6824526B2 (en) 2001-10-22 2004-11-30 Penjet Corporation Engine and diffuser for use with a needle-less injector
US20050192530A1 (en) * 2001-04-13 2005-09-01 Penjet Corporation Method and apparatus for needle-less injection with a degassed fluid
US7018356B2 (en) 2002-10-31 2006-03-28 Wise Roger R Method and apparatus for adjusting the contents of a needle-less injector

Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US2322244A (en) * 1940-03-18 1943-06-22 Marshall L Lockhart Hypodermic injector
US2323245A (en) * 1942-01-16 1943-06-29 Jack E Schenker Record holder file
US2380534A (en) * 1941-04-26 1945-07-31 Marshall L Lockhart Hypodermic injector
US2390246A (en) * 1940-10-18 1945-12-04 Marvin L Folkman Syringe
US2398544A (en) * 1945-01-06 1946-04-16 Marshall L Lockhart Hypodermic injector

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US2322244A (en) * 1940-03-18 1943-06-22 Marshall L Lockhart Hypodermic injector
US2390246A (en) * 1940-10-18 1945-12-04 Marvin L Folkman Syringe
US2380534A (en) * 1941-04-26 1945-07-31 Marshall L Lockhart Hypodermic injector
US2323245A (en) * 1942-01-16 1943-06-29 Jack E Schenker Record holder file
US2398544A (en) * 1945-01-06 1946-04-16 Marshall L Lockhart Hypodermic injector

Cited By (23)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US2722931A (en) * 1951-01-17 1955-11-08 Becton Dickinson Co Injection device
US2785678A (en) * 1952-05-10 1957-03-19 Jr George N Hein Injection apparatus
US2798486A (en) * 1953-12-21 1957-07-09 Jr George N Hein Injection assembly
US2821981A (en) * 1954-07-21 1958-02-04 Geoffrey W Walker Multi-shot inoculant injector instrument with adjustable ejection pressure control
US4396384A (en) * 1981-04-16 1983-08-02 Hoechst Aktiengesellschaft Needle-less injection instrument
US6474369B2 (en) 1995-05-26 2002-11-05 Penjet Corporation Apparatus and method for delivering a lyophilized active with a needle-less injector
US5730723A (en) * 1995-10-10 1998-03-24 Visionary Medical Products Corporation, Inc. Gas pressured needle-less injection device and method
US5851198A (en) * 1995-10-10 1998-12-22 Visionary Medical Products Corporation Gas pressured needle-less injection device and method
US6063053A (en) * 1995-10-10 2000-05-16 Visionary Medical Products Corp. Inc. Gas pressured needle-less injection device and method
US6223786B1 (en) 1998-11-14 2001-05-01 Pen Jet Corporation Apparatus and method for mixing medication and filling an ampule of a needle-less injector
US6080130A (en) * 1998-11-14 2000-06-27 Castellano; Thomas P. Gas power source for a needle-less injector
US6730066B1 (en) * 1999-08-03 2004-05-04 Pharmacia Ab Liquid delivery container
US20040181195A1 (en) * 1999-08-03 2004-09-16 Percy Bennwik Liquid delivery container
US6210359B1 (en) 2000-01-21 2001-04-03 Jet Medica, L.L.C. Needleless syringe
US6758837B2 (en) 2001-02-08 2004-07-06 Pharmacia Ab Liquid delivery device and method of use thereof
US20040215157A1 (en) * 2001-02-08 2004-10-28 Christian Peclat Liquid delivery device and method of use thereof
US6500239B2 (en) 2001-03-14 2002-12-31 Penjet Corporation System and method for removing dissolved gas from a solution
US6613011B2 (en) 2001-04-13 2003-09-02 Penjet Corporation Gas-pressured engine with valve
US6613010B2 (en) 2001-04-13 2003-09-02 Penjet Corporation Modular gas-pressured needle-less injector
US20050192530A1 (en) * 2001-04-13 2005-09-01 Penjet Corporation Method and apparatus for needle-less injection with a degassed fluid
US6755220B2 (en) 2001-04-27 2004-06-29 Penjet Corporation Method and apparatus for filling or refilling a needle-less injector
US6824526B2 (en) 2001-10-22 2004-11-30 Penjet Corporation Engine and diffuser for use with a needle-less injector
US7018356B2 (en) 2002-10-31 2006-03-28 Wise Roger R Method and apparatus for adjusting the contents of a needle-less injector

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