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US2648334A - Hypodermic injection assembly - Google Patents

Hypodermic injection assembly
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US2648334A
US2648334AUS124061AUS12406149AUS2648334AUS 2648334 AUS2648334 AUS 2648334AUS 124061 AUS124061 AUS 124061AUS 12406149 AUS12406149 AUS 12406149AUS 2648334 AUS2648334 AUS 2648334A
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barrel
ampule
cartridge
needle
actuator
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US124061A
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Frank E Brown
Frederick M Turnbull
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Aug. 11, 1953 F. E. BROWN ETAL HYPODERMIC INJECTION ASSEMBLY Filed Oct. 28, 1949 /NVENTO/?$ FRANK E. BROWN FREOiR/CK M. Tue/v5 ULL BY THE/l? ATTORNEYS. 5, KIEcH, F05 TE)? & HH/FR/S M wx Patented Aug. 11, 1953 HYPODERMIC INJECTION ASSEMBLY Frank E. Brown, Burbank, and Frederick M.
Turnbull, Los Angeles, Calif. said Brown assignor to said. Turnbull Application October 28, 1949, Serial No. 124,061
Claims.
Our invention relates to hypodermic structures and more particularly to a multiple-dose hypodermic syringe for hypcdermically injecting exactly metered dosages of a medicament through a hypodermic needle. Many features of the invention are, however, applicable to single-dose syringes.
lhe most commonly used hypodermic structure includes a graduated barrel, a plunger slidable therein and a separate or permanently attached needle. These elements must be hot-sterilized between uses on the same or different patients. The needle is inserted through a rubber cap of a bottle or vial containing a multiple-dose volume of a medicament. Each penetration tends to dull the needle and any puncture after the first is considered unsterile under strict standards.
In use, the plunger is pulled back to draw into the syringe an amount of air corresponding to the desired dosage. Ihe needle is then forced through the rubber cap of the vial and this volume of air displaced into the vial whereupon the plunger is withdrawn While submerged in the medicament to draw into the barrel an amount of the medicament greater than the dosage required. The syringe is then upturned and the plunger advanced to expel any excess solution and any air, the plunger being stopped at the graduation on the barrel corresponding to the desired dosage. These graduations are hard to read, particularly in inexperienced hands, and the dosage often varies with the angle of sight, making it extremely dimcult to inject hypodermically exactly metered doses of the medicament.
The problems become increasingly severe in instances where insulin, for example, must be self-injected, often by children or adults removed from parental or medical supervision. The danger of lack of sterility of the needle and the danger of overdosage is particularly severe in such instances. The problem is accentuated if a hypodermic must be given under subdued light or by a person with impaired vision.
Proposals to solve the problem by use of singledose ampules have not proved entirely successful as these proposals involve sterilization of the exterior of the ampule, filing and breaking thereof with the danger of glass contaminating the medicament. In addition, the cost of such single-dose ampules is excessive. Similarly, attempts to solve the problems by use of Carpules or single-dose cartridges insertable into a syringe barrel have not been entirely satisfactory, being unduly costly and failing to obviate the chance of nonsterile needle conditions. In fact, any single-dosage systemmust necessarily be costly as the container must be marketed in a large number of sizes, to accommodate the dosage requirements of different persons.
It is an object of the present invention to provide a novel, multiple-dose syringe capable of injectin exactly needed dosages by a simple presetting operation.
Another object of the invention is to provide a hypodermic structure which is foolproof and easy to use, yet which can be manufactured at relatively low cost.
A further object is to provide a hypodermic structure capable of receiving a multi-dose hypodermic cartridge containing the medicament and from which the doses can be accurately metered by a stepwise movable actuator. Another object is to provide a structure whereby any ore-selected dose of medicament can be expelled from a standard-sized, multi-dose cartridge by a simple substitution of actuating elements, whereby the physician can prescribe or the druggist can supply a suitably formed and calibrated actuating element that will insure accurate injection doses of the desired volume.
Preparatory to use or between uses of a hypodermic needle, it is very desirable that the interior of the needle be flushed or cleansed of any sterilizing solution or other liquid. It is, therefore, an additional object of the present invention to provide a cartridge-type hypodermic syringe in which the needle can be flushed or cleansed with ease and preparatory to the use thereof. This is preferably accomplished by providing for automatic cleansing or flushing of the needle upon insertion of the cartridge into the barrel. Incidental auxiliary means may be provided for efllecting such flushing or cleansing.
The invention also provides a novel relationship between the barrel of the syringe and the hypodermic cartridge insertable thereinto. In this connection, it is an object of the invention to provide a piston-like action between these two elements upon assembly; also to provide for positively locking the barrel in predetermined position. Afurther object is to provide a hypodermic cartridge of novel form.
It is another object of the invention to provide a hypodermic barrel detachably receiving a hypodermic needle and carrying an inwardly-extending perforating needle which perforates the hypodermic cartridge upon insertion.
Further objects and advantages of the invention will be evident to those skilled in the art from the herein contained description of exemplary embodiments of the invention.
Referring to the drawings:
Fig. 1 is an exploded view, partially in section, showing the operative elements of another embodiment of the invention in positions preparatory to assembly;
Fig. 2 is a longitudinal View, partially in section, of the elements of the Fig. 1 embodiment of the invention when in assembled position and after injection of the first dose;
Fig. 3 is a transverse sectional view taken along theline 33 of Fig. 1;
Fig. 4 is a transverse view taken along theline 44 of Fig. 1 and showing the cartridge and barrel in unlocked position; and
Fig. 5 is a transverse view taken along theline 55 of Fig. 2 and showing the cartridge and barrel in locked position.
Referring particularly to Figs. 1 and 2, the invention includes a hypodermic structure or hypodermic syringe including a barrel 2!] providing an open end 2| and a closed needle-holding end 22, the open end 2| giving access to achamber 23. The barrel may be formed of glass or metal but preferably is formed of a thermoplastic or thermosetting plastic material, usually a resintype material. For hot-sterilizing techniques, we may use a plastic known as Saran, a copolymer of vinylidene chloride, or a plastic known as Kel-F, the latter product being monochlorotrifluoroethylene. For cold-sterilizing techniques, we may use methyl methacrylate or polyethylene.
The closed needle-holding end 22 provides an 1.
attachment means for a detachable hypodermic needle structure indicated generally by thenumeral 25, this attachment means being illustrated as a taperedtubular portion 26 mating with an appropriate attachment portion of the Extending into the closedend 22 of thebarrel 20 is a cartridge-perforatingneedle 33 extending rearwardly into thechamber 23 and providing an angularly groundsharp tip 34. This needle as shown may be fixed against movement with respect to the barrel body. It may, however, be provided in any desired manner.
At the open end 2|, thebarrel 20 provides aflange 35. In the preferred embodiment, this flange extends only a short distance beyond the periphery of thebarrel 20 in a direction transverse to the paper in Fig. 2 but extends a further distance from such periphery in the plane of the paper to formwings 36 havingarcuate edges 31 for a purpose to be described.
The open end 2| of thebarrel 20 is adapted to receive a hypodermic cartridge or ampule shown as including a tubular member or portion 4| made of metal, glass or any suitable thermoplastic or thermosetting material, such as the materials exemplified above. The tubular member 4| is preferably a length of tubular-stock material somewhat longer than the interior of the barrel and provides front and rearopen ends 42 and 43.
Closing the frontopen end 42 is afront stopper 44 made of rubber or other suitable material to be penetrated by the perforatingneedle 33 when the cartridge is in inserted position. The front stopper is pressed into the frontopen end 42 of the tubular member 4|, its innermost position being determined by aflexible flange 45 which serves a number of other functions. Thus, this flange seats against the closedend 22 of thebarrel 20 when the cartridge is inserted, acting as a cushion for the tubular member 4| and acting to separate this tubular member from the closedend 22 of the barrel. In addition, theflange 45 is of a diameter to form a piston fit in thechamber 23. Accordingly, when thecartridge 40 is inserted into thechamber 23, inward movement of the cartridge builds up a superatmospheric pressure within the chamber ahead of theflange 45 to expel from theperforating needle 33 and theneedle structure 25, if attached, any residual fluid remaining therein from prior sterilization or prior use. This cleansing action is automatic. When thetip 34 of the perforatingneedle 33 penetrates thestopper 44 further advancement of the cartridge forces the entrapped air rearwardly past theflange 45 and from the open end 2| of the barrel through the small annular space between the exterior of the tubular member 4| and the interior of thebarrel 20.
The rearopen end 43 of the tubular member 4| is initially closed by a rear piston type stopper orplunger 41, preferably formed of rubber and advanceable within the tubular member 4| by manually-applied pressure to decrease the volume of thespace 48 between the stoppers and expel from this space through the needles 3| and 33 an incremental portion of a liquid medicament within this space.
Therear stopper 41 is preferably formed of a cylindrical rubber member with peripheral grooves. It provides suitable means for detachable connection to anactuator 50, this means being shown as a threadedmetal member 5| with an enlarged base embedded or molded in thestopper 41.
While the penetration of theneedle 33 into thefront stopper 44 provides some degree of restraint against removal of the cartridge 4!], it is distinctly preferable to provide an interengaging means on the barrel and the cartridge for holding the latter in its advanced position within the barrel. It is also preferable that the cartridge provide a manually-engageable flange on its outer or rear end and of a greater size than thechamber 23 to aid in limiting and establishing the innermost position of the cartridge. These and other functions are performed by aflange 53 of a collared member, preferably formed of a plastic material and forming a press fit with the periphery of the tubular member 4|. Theflange 53 is adapted to mate with theflange 35 and provideswings 54 extending in a direction perpendicular to the paper as viewed in Fig. 1. As shown in Fig. 4, thewings 54carry depending members 55 of arcuate form and providing inwardly-extendinglips 55 adapted to swing beneath thewings 36 of the barrel. As suggested in Fig. 4, thewings 54 advance in the inter-wing space of the barrel, between itswings 35, until thewings 54 engage the rear end of thebarrel 20; thelips 56 being then at a level just beyond thewings 35. Turning of thecartridge 40 through an angle of will then interlock thewings 36 and 54; thewings 54 swinging into the same plane and being of substantially identical shape as thewings 36, thus definitely indicating to the operator the proper locking of the cartridge 46 and thebarrel 20.
The, actuator 53 comprises abody portion 51 having a rear manually-engageable member 58 of larger diameter and typically of a diameter substantially the same as the diameter of the curved periphery 3? of theflanges 35. The rear face of the manually-engageable member 58 is preferably dished to receive the thumb of the operator.
The body portion 51' of theactuator 50 is of a size to be received by the tubular member 4|. Its forward end provides an attachment means, shown as a threadedcavity 59 permitting removable connection to the stopper orpiston 41.
The invention includes a multiple-position stop means on theactuator 50 and movable stepwise therealong to determine the incremental advances of the stopper orpiston 41 and thus determine with exactitude the volume of each .dose. As shown in Figs. 2 and 3, this stop means in cludes astop member 60 of ring shape. adapted to move along and engage with stepped guiding means 6| on thebody portion 51 of the actuator 501.
As shown in Figs. 2 and 3, the means 6| includes guiding and stop portions in the form of a successive series of longitudinally extendinggrooves 62 connected by transverse groove portions 63. These are formed on the outer face of the actuator. It is obvious that in lieu of grooves, other structures might be employed. The actuator is encircled bystop member 60 so that the latter may slide longitudinally of the actuator. A projection, 64, carried bymember 60 cooperates with thegroove portions 62 and 63. The stop member may be formed of any desired material and the projection may be secured thereto in any suitable manner as, for example, by adhesive.
Conveniently thestop member 60 is disposed upon the actuator and theprojection 64 is introduced into the first orlowermost groove portion 62 shown in Fig. 1. This groove portion is then obstructed by, for example, amember 65 which may be adhesively secured to the actuator. In this manner, removal of the stop member from thebody portion 51 is prevented. The length of each of thelongitudinally extending grooves 62 are preferably identical. In its initial position stopmember 66 may have itsprojection 64 riding within the first or lowermost transverse or stopgroove 53. With thecoupling 5! and 59 properly engaged, the spacing betweenstop member 60 and theampule 60 will be equal to the distance between a pair of adjacent transverse grooves .63.
When the cartridge fill has been inserted and locked in position and theactuator 50 has been attached, the hypodermic syringe is ready for injecting the first metered dose. After intermuscular insertion of the needle 3|, the manually-engageable member 53 is forced inwardly until thestop member 60 engages the open end of thecartridge 40, the stop member advancing a predetermined distance and definitely controlling the advance of the stopper orpiston 41 and thus metering the amount of medicament injected. The syringe elements will now be in the position shown in Fig. 2. To set the syringe for the metering of the second dose, the stop member so must be turned so that its guide memher at lies opposite the next longitudinal portion $2 whereupon the stop member may be advanced longitudinally until the guide member engages the succeeding shoulder.
There is no possibility of setting the stop member to meter more than one dose except as the stop member is deliberately advanced beyond the succeeding position. Additionally, the stop positions are sufiiciently widely spaced that close observation is not required when moving from one setting to the next, the proper advanced position being apparent from the feel of the stop member. Suitable numbered indicia may be applied to the actuator to identify the stop positions and in all instances indicia should be employed to indicate in units, cubic centimeters, etc., the dose calibration of the particular actuator.
The syringe can be sold with the particular actuator needed to secure the uniform doses prescribed by the physician. For office or hospital use, the physician or nurse need only select the proper-dose actuator from a supply of differentdose actuators at hand. In all instances, the cartridge may be of some standard or predetermined size and need carry no hard-to-read markings. If desired, the cartridge can even be made of opaque material although use of a transparent material is generally desirable.
vIt is desirable, also, that there be a releasable lock means for positively locking the stop member Bl] in a selected one of its stop positions. While various spring-loaded or frictional detent means can be employed, as will be later described, a very simple lock means is shown in Figs. 1 and 3 comprisingextensions 66 of the transverse portions 63 of the raceway and extending to positions to one side of the intersecting longitudinal portion (see Fig. 1). Theseextensions 66 may provide an outwardly spiraling bottom wall El (Fig. 3) against which theguide member 64 may press and Wedge as thestop member 60 is turned from its stopposition. The resulting action locks the stop member against accidental turning during carrying or handling of the syringe and also during use thereof. To advance the stop member 68 to its next position, it is turned in a reverse direction until the guide member enters the adjacentlongitudinal portion 62 of the raceway. The rearmost longitudinal portion and transverse portion may terminate adjacent the manually-engageable member 58 which may then act as the last stop or shoulder for thestop member 60, preparatory to injecting the last metered dose.
We have shown structures in which the stop member engages the wall of the cartridge 353 at its outer open end. This is distinctly preferable in insuring accurately metered doses. However, it is within the scope of the invention to engage the stop member with the open end of either the cartridge 45.? or thebarrel 28.
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.
We claim as our invention:
1. A hypodermic syringe assembly including in combination a barrel having an open end and an opposite end provided with a restricted discharge passage, a liquid medicament-containing ampule insertible into the open end of said barrel and presenting a rear portion to lie adjacent the open end of the latter, a piston type stopper Within said ampule adjacent the rear portion thereof, an actuator for projecting said stopper through said ampule to expel medicament through said discharge passage, said actuator being formed with a successive series of longitudinally extending a guide portions offset with respect to each other and interconnected by transverse guide portions, a stop member mounted by said actuator and engageable with part of said assembly to arrest movement of said actuator and piston stopper, means carried by said stop member and cooperable with said guide portions whereby said stop member and cooperable means may be shifted along said actuator throughout the length of one of said longitudinal guide portions and be held against further movement by one of said transverse guide portions and said actuator being formed with extensions of said transverse guide portions lying beyond the points of connection of the latter with said longitudinal portions to receive said eooperable means and lock the latter and the stop member against further movement through a successive longitudinal guide portion.
2. A hypodermic syringe assembly including in combination a barrel having an open end and an opposite end provided with a restricted discharge passage, a liquid medicament-containing ampule insertible into the open end of said barrel and presenting a rear portion to lie adjacent the open end of the latter, a piston type stopper within said ampule adjacent the rear portion thereof, an actuator for projecting said stopper through said ampule to expel medicament through said discharge passage, detachable coupling means forming parts of said actuator and stopper and providing the sole connection between said assembly and actuator to support the latter, said ampule having a length greater than said barrel whereby-with the former inserted into the latterits rear portion will project beyond the adjacent barrel end and coupling means carried by the rear portion of the ampule and also disposed in proximity to the adjacent barrel end for detachably engaging the latter and retaining said ampule against movements with respect to said barrel.
3. An injector assembly including in combination a hollow barrel presenting a rear open end and a closed forward end, an outwardly extending interrupted flange adjacent said open barrel end and fixed with respect to the barrel, an ampule of an exterior length greater than the bore length of said barrel and insertible into the same, said ampule presenting open rear and forward ends, an outwarchy extending wing portion fixed with respect to said ampule adjacent its rear end and to lie adjacent the barrel flange when the ampule is fully inserted into the barrel bore, said flange and wing portion presenting surfaces to interengage and prevent axial movement of said ampule with respect to said barrel when those parts are relatively rotated and said barrel presenting a needle mounting part at its forward end.
4. An injector assembly including in combination a hollow barrel presenting a rear open end and a closed forward end, an outwardly extending interrupted flange adjacent said open barrel end and fixed with respect to the barrel, an ampule of an exterior length greater than the bore length of said barrel and insertible into the same, said ampule presenting open rear and forward ends, an outwardly extending wing portion fixed with respect to said ampule adjacent its rear end and to lie adjacent the barrel flange when the ampule is fully inserted into the barrel bore, said flange and wing portion presenting surfaces to interengage and prevent axial movement of said ampule with respect to said barrel when those parts are relatively rotated, a pierceable stopper supported by the forward end of said ampule, a needle mounting part at the forward barrel end and a double ended needle supported by said part to extend into the interior of said barrel and pierce said stopper as said ampule is inserted into said barrel.
5. An injector' assembly including in combination a hollow barrel presenting a rear open end and a closed forward end, an outwardly extending interrupted flange adjacent said open barrel end and fixed with respect to the barrel, an ampule of an exterior length greater than the bore length of said barrel and insertible into the same, said ampule presenting open rear and forward ends, an outwardly extending wing portion fixed with respect to said ampule adjacent its rear end and to lie adjacent the barrel flange when the ampule is fully inserted into the barrel bore, said flange and wing portion presenting surfaces to interengage and prevent axial movement of said ampule with respect to said barrel when those parts are relatively rotated, said barrel presenting a needle mounting part at its forward end, a piston stopper mounted by said ampule adjacent its rear end, an actuator assembly bearing against the rear ampule end and means for connecting said assembly with said ampule stopper whereby the latter may be shifted axially of said ampule as parts of said assembly are shifted.
FRANK E. BROWN. FREDERICK M. TURNBULL.
References Cited in the file of this patent UNITED STATES PATENTS Number Name Date 1,174,673 Bye Mar. 7, 1916 1,393,720 Lomas et a1 Oct. 11, 1921 1,499,508 Deane July 1, 1924 1,712,070 Cressler May 7, 1929 1,770,633 Smith July 15, 1930 1,840,788 Nevin Jan. 12, 1932 1,929,247 Hein Oct. 3, 1933 1,967,439 Heinlman July 24, 1934 2,156,023 McKay Apr. 25, 1939 2,316,095 Mead, Jr. Apr. 6, 1943 2,373,520 Wallin Apr. 10, 1945 2,409,656 Austin Oct. 22, 1946 2,419,401 Hinds Apr. 22, 1947 2,453,589 Paux Nov. 9, 1948 2,457,859 Austin Jan. 4, 1949 FOREIGN PATENTS Number Country Date 5,503 Great Britain Nov. 14, 1912 267,729 Great Britain Mar. 24, 1927
US124061A1949-10-281949-10-28Hypodermic injection assemblyExpired - LifetimeUS2648334A (en)

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Cited By (52)

* Cited by examiner, † Cited by third party
Publication numberPriority datePublication dateAssigneeTitle
US2842127A (en)*1954-04-151958-07-08S & R J Everett & Co LtdHypodermic syringes
US2842126A (en)*1954-03-161958-07-08Frederick M TurnbullSyringe assembly
US2986141A (en)*1954-01-081961-05-30Sterling Drug IncPlastic cartridge ampoule
US3080866A (en)*1961-07-071963-03-12Friedman BenjaminHypodermic needle
US3128765A (en)*1962-07-171964-04-14American Home ProdHypodermic syringe and dose dispenser
US3978858A (en)*1971-11-111976-09-07Mpl, Inc.Glass tube and thermoplastic resin finger grip sleeve assembly
WO1988008724A1 (en)*1987-05-081988-11-17Wilhelm Haselmeier Gmbh + Co.Injection device with system for controlling its release in the rest position
US4832694A (en)*1988-02-081989-05-23Raphael Iii Julian JProgrammed action hypodermic syringe
US4962868A (en)*1988-03-251990-10-16Henning Berlin GmbhApparatus for dispensing a controlled dose of a liquid fluid
US5308341A (en)*1993-09-281994-05-03Becton, Dickinson And CompanyMethod of testing the dose accuracy of a medication delivery device
US5811061A (en)*1992-02-101998-09-22Baxter International Inc.Method and device for testing blood units for viral contamination
US20030088216A1 (en)*2001-10-032003-05-08Daniel PySyringe and reconstitution syringe
US20030089743A1 (en)*2001-10-162003-05-15Daniel PyDispenser with sealed chamber and one-way valve for providing metered amounts of substances
US6673035B1 (en)1999-10-222004-01-06Antares Pharma, Inc.Medical injector and medicament loading system for use therewith
US20040162528A1 (en)*2003-02-142004-08-19Xcel Pharmaceuticals, Inc.Drug delivery system for administering an adjustable preset dose
USD504713S1 (en)2002-10-162005-05-03Medical Instill Technologies, Inc.Dispenser with sealed chamber, one-way valve, and actuator for dispensing substances therefrom
US20060124778A1 (en)*2002-09-272006-06-15Lionel VendrineSpray device or injection device enabling delivery of at least two predetermined product doses
US7226231B2 (en)2003-07-172007-06-05Medical Instill Technologies, Inc.Piston-type dispenser with one-way valve for storing and dispensing metered amounts of substances
US7264142B2 (en)2004-01-272007-09-04Medical Instill Technologies, Inc.Dispenser having variable-volume storage chamber and depressible one-way valve assembly for dispensing creams and other substances
US20080114200A1 (en)*1998-12-112008-05-15Scimed Life Systems, Inc.Method for treating fecal incontinence
US20080228147A1 (en)*2007-03-152008-09-18Bristol-Myers Squibb CompanyInjector for use with pre-filled syringes and method of assembly
US7798185B2 (en)2005-08-012010-09-21Medical Instill Technologies, Inc.Dispenser and method for storing and dispensing sterile food product
US20100256555A1 (en)*2007-05-072010-10-07Rexam Pharma GmbhSyringe device with an elongate plunger space
US20100305515A1 (en)*2009-05-282010-12-02Subramanian Veerappan SLocking Mechanism for Drug Delivery System
US7861750B2 (en)2003-05-122011-01-04Medical Instill Technologies, Inc.Dispenser and apparatus and method of filling a dispenser
US20110264051A1 (en)*2008-02-282011-10-27Becton, Dickinson And CompanySyringe With Adjustable Two Piece Plunger Rod
WO2012158096A1 (en)*2011-05-192012-11-22Shl Group AbDevice for medicament delivery with syringe-like usability having a locking mechanism
WO2012158095A1 (en)*2011-05-192012-11-22Shl Group AbDevice for medicament delivery with syringe-like usability having a restraining mechanism
JP2014028081A (en)*2012-07-312014-02-13Yoshino Kogyosho Co LtdQuantitative syringe type ejection device
US20140124542A1 (en)*2011-04-262014-05-08Santen Pharmaceutical Co., Ltd.Fixed Amount Discharge Container
US20140303565A1 (en)*2011-05-132014-10-09Nipro CorporationNasal cavity administration container
US8915889B2 (en)2008-08-052014-12-23Antares Pharma, Inc.Multiple dosage injector
US8945063B2 (en)2009-03-202015-02-03Antares Pharma, Inc.Hazardous agent injection system
US9180259B2 (en)2005-01-242015-11-10Antares Pharma, Inc.Prefilled syringe jet injector
US9220660B2 (en)2011-07-152015-12-29Antares Pharma, Inc.Liquid-transfer adapter beveled spike
US9333309B2 (en)2002-02-112016-05-10Antares Pharma, Inc.Intradermal injector
US9364611B2 (en)2012-05-072016-06-14Antares Pharma, Inc.Needle assisted jet injection device having reduced trigger force
US9408455B2 (en)2002-08-132016-08-09MedInstill Development, LLCContainer and valve assembly for storing and dispensing substances, and related method
US9446195B2 (en)2011-07-152016-09-20Antares Pharma, Inc.Injection device with cammed ram assembly
CN106061529A (en)*2014-02-142016-10-26卡贝欧洲有限公司Automatic injection device
US9707354B2 (en)2013-03-112017-07-18Antares Pharma, Inc.Multiple dosage injector with rack and pinion dosage system
US9744302B2 (en)2013-02-112017-08-29Antares Pharma, Inc.Needle assisted jet injection device having reduced trigger force
US20170274147A1 (en)*2016-03-282017-09-28Glenmark Pharmaceuticals S.A.Drug delivery device
US9808582B2 (en)2006-05-032017-11-07Antares Pharma, Inc.Two-stage reconstituting injector
US9919306B2 (en)*2012-12-182018-03-20Stevanato Germany GmbhDosing pipette
US9950125B2 (en)2012-04-062018-04-24Antares Pharma, Inc.Needle assisted jet injection administration of testosterone compositions
EP3204092A4 (en)*2014-10-072018-05-02Silgan Dispensing Systems CorporationIndexing delivery device
US20200147323A1 (en)*2018-11-132020-05-14Credence Medsystems, Inc.System and method for multiple site injection
WO2020248030A1 (en)2019-06-142020-12-17Jmc Administração E Participações LtdaDevice for applying self-adhesive sanitary products
US11090445B2 (en)2017-06-162021-08-17Credence Medsystems, Inc.System and method for safety syringe
US11883635B2 (en)2020-06-172024-01-30Credence MedSystemsSystem and method for microdose injection
EP4400132A1 (en)*2023-01-122024-07-17Stephen Terence DunneMulti-dose syringe

Citations (17)

* Cited by examiner, † Cited by third party
Publication numberPriority datePublication dateAssigneeTitle
GB191205503A (en)*1912-03-051912-11-14Arthur Sherwood AndersonImprovements in Medical and Surgical Syringes.
US1174673A (en)*1915-09-101916-03-07Lilly Co EliSyringe.
US1393720A (en)*1917-08-221921-10-11Lomas HarryHypodermic syringe
US1499508A (en)*1923-04-071924-07-01Herbert C DeaneHypodermic syringe
GB267729A (en)*1926-04-171927-03-24John DenhamImprovements in hypodermic and like syringes
US1712070A (en)*1924-01-301929-05-07Cook Lab IncSyringe
US1770633A (en)*1928-09-261930-07-15Arthur E SmithHypodermic syringe
US1840788A (en)*1929-04-091932-01-12Nevin MendelHypodermic syringe and the like
US1929247A (en)*1931-01-201933-10-03George N HeinSyringe equipment and apparatus
US1967439A (en)*1927-09-261934-07-24Cook Lab IncMedicament package and process
US2156023A (en)*1936-12-071939-04-25Mckay Angus ConradHypodermic and other syringes
US2316095A (en)*1941-07-151943-04-06Jr John H MeadVaccinating syringe
US2373520A (en)*1944-12-021945-04-10Wallin LorenHypodermic syringe
US2409656A (en)*1945-04-201946-10-22Harold S AustinHypodermic syringe
US2419401A (en)*1946-02-251947-04-22William E HindsSyringe plunger seal
US2453589A (en)*1946-11-041948-11-09Noel J PouxHypodermic syringe and ampoule therefor
US2457859A (en)*1947-07-121949-01-04Harold S AustinHypodermic syringe

Patent Citations (17)

* Cited by examiner, † Cited by third party
Publication numberPriority datePublication dateAssigneeTitle
GB191205503A (en)*1912-03-051912-11-14Arthur Sherwood AndersonImprovements in Medical and Surgical Syringes.
US1174673A (en)*1915-09-101916-03-07Lilly Co EliSyringe.
US1393720A (en)*1917-08-221921-10-11Lomas HarryHypodermic syringe
US1499508A (en)*1923-04-071924-07-01Herbert C DeaneHypodermic syringe
US1712070A (en)*1924-01-301929-05-07Cook Lab IncSyringe
GB267729A (en)*1926-04-171927-03-24John DenhamImprovements in hypodermic and like syringes
US1967439A (en)*1927-09-261934-07-24Cook Lab IncMedicament package and process
US1770633A (en)*1928-09-261930-07-15Arthur E SmithHypodermic syringe
US1840788A (en)*1929-04-091932-01-12Nevin MendelHypodermic syringe and the like
US1929247A (en)*1931-01-201933-10-03George N HeinSyringe equipment and apparatus
US2156023A (en)*1936-12-071939-04-25Mckay Angus ConradHypodermic and other syringes
US2316095A (en)*1941-07-151943-04-06Jr John H MeadVaccinating syringe
US2373520A (en)*1944-12-021945-04-10Wallin LorenHypodermic syringe
US2409656A (en)*1945-04-201946-10-22Harold S AustinHypodermic syringe
US2419401A (en)*1946-02-251947-04-22William E HindsSyringe plunger seal
US2453589A (en)*1946-11-041948-11-09Noel J PouxHypodermic syringe and ampoule therefor
US2457859A (en)*1947-07-121949-01-04Harold S AustinHypodermic syringe

Cited By (122)

* Cited by examiner, † Cited by third party
Publication numberPriority datePublication dateAssigneeTitle
US2986141A (en)*1954-01-081961-05-30Sterling Drug IncPlastic cartridge ampoule
US2842126A (en)*1954-03-161958-07-08Frederick M TurnbullSyringe assembly
US2842127A (en)*1954-04-151958-07-08S & R J Everett & Co LtdHypodermic syringes
US3080866A (en)*1961-07-071963-03-12Friedman BenjaminHypodermic needle
US3128765A (en)*1962-07-171964-04-14American Home ProdHypodermic syringe and dose dispenser
US3978858A (en)*1971-11-111976-09-07Mpl, Inc.Glass tube and thermoplastic resin finger grip sleeve assembly
WO1988008724A1 (en)*1987-05-081988-11-17Wilhelm Haselmeier Gmbh + Co.Injection device with system for controlling its release in the rest position
US4832694A (en)*1988-02-081989-05-23Raphael Iii Julian JProgrammed action hypodermic syringe
US4962868A (en)*1988-03-251990-10-16Henning Berlin GmbhApparatus for dispensing a controlled dose of a liquid fluid
US5811061A (en)*1992-02-101998-09-22Baxter International Inc.Method and device for testing blood units for viral contamination
US5308341A (en)*1993-09-281994-05-03Becton, Dickinson And CompanyMethod of testing the dose accuracy of a medication delivery device
US8882654B2 (en)1998-12-112014-11-11Boston Scientific Scimed, Inc.Method for treating fecal incontinence
US20080114200A1 (en)*1998-12-112008-05-15Scimed Life Systems, Inc.Method for treating fecal incontinence
US7341575B2 (en)1999-10-222008-03-11Antares Pharma, Inc.Medical injector and medicament loading system for use therewith
US6673035B1 (en)1999-10-222004-01-06Antares Pharma, Inc.Medical injector and medicament loading system for use therewith
US20040134563A1 (en)*1999-10-222004-07-15Antares Pharma, Inc.Medical injector and medicament loading system for use therewith
US7186241B2 (en)2001-10-032007-03-06Medical Instill Technologies, Inc.Syringe with needle penetrable and laser resealable stopper
US7779609B2 (en)2001-10-032010-08-24Medical Instill Technologies, Inc.Method of filling a device
US20030088216A1 (en)*2001-10-032003-05-08Daniel PySyringe and reconstitution syringe
US8220507B2 (en)2001-10-162012-07-17Medical Instill Technologies, Inc.Dispenser and method for storing and dispensing sterile product
US9630755B2 (en)2001-10-162017-04-25Medinstill Development LlcDispenser and method for storing and dispensing sterile product
US7290573B2 (en)2001-10-162007-11-06Medical Instill Technologies, Inc.Dispenser with sealed chamber, one-way valve and needle penetrable and laser resealable stopper
US20030089743A1 (en)*2001-10-162003-05-15Daniel PyDispenser with sealed chamber and one-way valve for providing metered amounts of substances
US9737670B2 (en)2002-02-112017-08-22Antares Pharma, Inc.Intradermal injector
US9333309B2 (en)2002-02-112016-05-10Antares Pharma, Inc.Intradermal injector
US9408455B2 (en)2002-08-132016-08-09MedInstill Development, LLCContainer and valve assembly for storing and dispensing substances, and related method
US20060124778A1 (en)*2002-09-272006-06-15Lionel VendrineSpray device or injection device enabling delivery of at least two predetermined product doses
US7681570B2 (en)*2002-09-272010-03-23Becton Dickinson France S.A.S.Spray device or injection device enabling delivery of at least two predetermined product doses
US7967010B2 (en)2002-09-272011-06-28Becton, Dickinson And CompanySpray or injection device allowing at least two preset doses of product to be delivered
USD504713S1 (en)2002-10-162005-05-03Medical Instill Technologies, Inc.Dispenser with sealed chamber, one-way valve, and actuator for dispensing substances therefrom
US20040162528A1 (en)*2003-02-142004-08-19Xcel Pharmaceuticals, Inc.Drug delivery system for administering an adjustable preset dose
US20080108952A1 (en)*2003-02-142008-05-08Valeant Pharmaceuticals North AmericaDrug delivery system for administering an adjustable preset dose
US7329241B2 (en)*2003-02-142008-02-12Valeant Pharmaceuticals North AmericaDrug delivery system for administering an adjustable preset dose
US8627861B2 (en)2003-05-122014-01-14Medical Instill Technologies, Inc.Dispenser and apparatus and method for filling a dispenser
US9963288B2 (en)2003-05-122018-05-08Maej LlcDispenser and apparatus and method for filling a dispenser
US7861750B2 (en)2003-05-122011-01-04Medical Instill Technologies, Inc.Dispenser and apparatus and method of filling a dispenser
US8240934B2 (en)2003-07-172012-08-14Medical Instill Technologies, Inc.Dispenser with one-way valve for storing and dispensing substances
US7226231B2 (en)2003-07-172007-06-05Medical Instill Technologies, Inc.Piston-type dispenser with one-way valve for storing and dispensing metered amounts of substances
US9440773B2 (en)2003-07-172016-09-13Medinstill Development LlcDevice with one-way valve
US7651291B2 (en)2003-07-172010-01-26Medical Instill Technologies, Inc.Dispenser with one-way valve for storing and dispensing metered amounts of substances
US7644842B2 (en)2004-01-272010-01-12Medical Instill Technologies, Inc.Dispenser having variable-volume storage chamber and depressible one-way valve assembly for dispensing creams and other substances
US7886937B2 (en)2004-01-272011-02-15Medical Instill Technologies, Inc.Dispenser with variable-volume storage chamber, one-way valve, and manually-depressible actuator
US9377338B2 (en)2004-01-272016-06-28Medinstill Development LlcDispenser with variable-volume storage chamber, one-way valve, and manually-depressible actuator
US8919614B2 (en)2004-01-272014-12-30Medinstill Development LlcDispenser with variable-volume storage chamber, one-way valve, and manually-depressible actuator
US8413854B2 (en)2004-01-272013-04-09Medical Instill Technologies, Inc.Dispenser with variable-volume storage chamber, one-way valve, and manually-depressible actuator
US7264142B2 (en)2004-01-272007-09-04Medical Instill Technologies, Inc.Dispenser having variable-volume storage chamber and depressible one-way valve assembly for dispensing creams and other substances
US11446441B2 (en)2005-01-242022-09-20Antares Pharma, Inc.Prefilled syringe injector
US9180259B2 (en)2005-01-242015-11-10Antares Pharma, Inc.Prefilled syringe jet injector
US9629959B2 (en)2005-01-242017-04-25Antares Pharma, Inc.Prefilled syringe jet injector
US10478560B2 (en)2005-01-242019-11-19Antares Pharma, Inc.Prefilled syringe injector
US7798185B2 (en)2005-08-012010-09-21Medical Instill Technologies, Inc.Dispenser and method for storing and dispensing sterile food product
US10688250B2 (en)2006-05-032020-06-23Antares Pharma, Inc.Two-stage reconstituting injector
US9808582B2 (en)2006-05-032017-11-07Antares Pharma, Inc.Two-stage reconstituting injector
US11547808B2 (en)2006-05-032023-01-10Antares Pharma, Inc.Two-stage reconstituting injector
EP1970086A3 (en)*2007-03-152010-02-24Bristol-Myers Squibb CompanyInjector for use with pre-filled syringes and method of assembly
US20080228147A1 (en)*2007-03-152008-09-18Bristol-Myers Squibb CompanyInjector for use with pre-filled syringes and method of assembly
US20100256555A1 (en)*2007-05-072010-10-07Rexam Pharma GmbhSyringe device with an elongate plunger space
US8142390B2 (en)*2007-05-072012-03-27Rexam Pharma GmbhSyringe device with an elongate plunger space
US8801675B2 (en)*2008-02-282014-08-12Becton Dickinson France, S.A.S.Syringe with adjustable two piece plunger rod
US20110264051A1 (en)*2008-02-282011-10-27Becton, Dickinson And CompanySyringe With Adjustable Two Piece Plunger Rod
US8915889B2 (en)2008-08-052014-12-23Antares Pharma, Inc.Multiple dosage injector
US8945063B2 (en)2009-03-202015-02-03Antares Pharma, Inc.Hazardous agent injection system
US10555954B2 (en)2009-03-202020-02-11Antares Pharma, Inc.Hazardous agent injection system
US9750881B2 (en)2009-03-202017-09-05Antares Pharma, Inc.Hazardous agent injection system
US11497753B2 (en)2009-03-202022-11-15Antares Pharma, Inc.Hazardous agent injection system
US12357642B2 (en)2009-03-202025-07-15Antares Pharma, Inc.Hazardous agent injection system
US20100305515A1 (en)*2009-05-282010-12-02Subramanian Veerappan SLocking Mechanism for Drug Delivery System
US20140124542A1 (en)*2011-04-262014-05-08Santen Pharmaceutical Co., Ltd.Fixed Amount Discharge Container
US9669988B2 (en)*2011-04-262017-06-06Santen Pharmaceutical Co., Ltd.Fixed amount discharge container
US9345866B2 (en)*2011-05-132016-05-24Nipro CorporationNasal cavity administration container
US20140303565A1 (en)*2011-05-132014-10-09Nipro CorporationNasal cavity administration container
CN103687637B (en)*2011-05-192015-11-25Shl集团有限责任公司There is availability as syringe and there is the delivery device of locking mechanism
CN103702700B (en)*2011-05-192016-06-01Shl集团有限责任公司There is operability as syringe and there is the delivery device of restriction mechanism
CN103702700A (en)*2011-05-192014-04-02Shl集团有限责任公司Device for medicament delivery with syringe-like usability having a restraining mechanism
WO2012158096A1 (en)*2011-05-192012-11-22Shl Group AbDevice for medicament delivery with syringe-like usability having a locking mechanism
TWI490006B (en)*2011-05-192015-07-01瑞健集團股份有限公司Device for medicament delivery with syringe-like usability having a locking mechanism
TWI507225B (en)*2011-05-192015-11-11Shl Group AbDevice for medicament delivery with syringe-like usability having a restraining mechanism
US9737667B2 (en)2011-05-192017-08-22Shl Group AbDevice for medicament delivery with syringe-like usability having a locking mechanism
CN103687637A (en)*2011-05-192014-03-26Shl集团有限责任公司Device for medicament delivery with syringe-like usability having a locking mechanism
US9750889B2 (en)2011-05-192017-09-05Shl Group AbDevice for medicament delivery with syringe-like usability having a restraining mechanism
WO2012158095A1 (en)*2011-05-192012-11-22Shl Group AbDevice for medicament delivery with syringe-like usability having a restraining mechanism
US12179007B2 (en)2011-07-152024-12-31Antares Pharma, Inc.Injection device with cammed ram assembly
US10568809B2 (en)2011-07-152020-02-25Ferring B.V.Liquid-transfer adapter beveled spike
US9220660B2 (en)2011-07-152015-12-29Antares Pharma, Inc.Liquid-transfer adapter beveled spike
US9446195B2 (en)2011-07-152016-09-20Antares Pharma, Inc.Injection device with cammed ram assembly
US10279131B2 (en)2011-07-152019-05-07Antares Pharma, Inc.Injection device with cammed RAM assembly
US11185642B2 (en)2011-07-152021-11-30Antares Pharma, Inc.Injection device with cammed ram assembly
US11771646B2 (en)2012-04-062023-10-03Antares Pharma, Inc.Needle assisted jet injection administration of testosterone compositions
US9950125B2 (en)2012-04-062018-04-24Antares Pharma, Inc.Needle assisted jet injection administration of testosterone compositions
US10821072B2 (en)2012-04-062020-11-03Antares Pharma, Inc.Needle assisted jet injection administration of testosterone compositions
US10905827B2 (en)2012-05-072021-02-02Antares Pharma, Inc.Injection device with cammed ram assembly
US9364610B2 (en)2012-05-072016-06-14Antares Pharma, Inc.Injection device with cammed ram assembly
US12220560B2 (en)2012-05-072025-02-11Antares Pharma, Inc.Needle assisted injection device having reduced trigger force
US12171986B2 (en)2012-05-072024-12-24Antares Pharma, Inc.Injection device with cammed ram assembly
US11446440B2 (en)2012-05-072022-09-20Antares Pharma, Inc.Needle assisted injection device having reduced trigger force
US10357609B2 (en)2012-05-072019-07-23Antares Pharma, Inc.Needle assisted jet injection device having reduced trigger force
US9364611B2 (en)2012-05-072016-06-14Antares Pharma, Inc.Needle assisted jet injection device having reduced trigger force
JP2014028081A (en)*2012-07-312014-02-13Yoshino Kogyosho Co LtdQuantitative syringe type ejection device
US9919306B2 (en)*2012-12-182018-03-20Stevanato Germany GmbhDosing pipette
US10881798B2 (en)2013-02-112021-01-05Antares Pharma, Inc.Needle assisted injection device having reduced trigger force
US9744302B2 (en)2013-02-112017-08-29Antares Pharma, Inc.Needle assisted jet injection device having reduced trigger force
US11813435B2 (en)2013-02-112023-11-14Antares Pharma, Inc.Needle assisted injection device having reduced trigger force
US12318581B2 (en)2013-02-112025-06-03Antares Pharma, Inc.Needle assisted injection device having reduced trigger force
US11628260B2 (en)2013-03-112023-04-18Antares Pharma, Inc.Multiple dosage injector with rack and pinion dosage system
US10610649B2 (en)2013-03-112020-04-07Antares Pharma, Inc.Multiple dosage injector with rack and pinion dosage system
US9707354B2 (en)2013-03-112017-07-18Antares Pharma, Inc.Multiple dosage injector with rack and pinion dosage system
US10398839B2 (en)*2014-02-142019-09-03Shl Medical AgAutomatic injection device
CN106061529A (en)*2014-02-142016-10-26卡贝欧洲有限公司Automatic injection device
US20170173264A1 (en)*2014-02-142017-06-22Carebay Europe Ltd.Automatic injection device
EP3204092A4 (en)*2014-10-072018-05-02Silgan Dispensing Systems CorporationIndexing delivery device
US10213558B2 (en)*2016-03-282019-02-26Glenmark Pharmaceuticals S.A.Drug delivery device
US20170274147A1 (en)*2016-03-282017-09-28Glenmark Pharmaceuticals S.A.Drug delivery device
US11090445B2 (en)2017-06-162021-08-17Credence Medsystems, Inc.System and method for safety syringe
US11964141B2 (en)2017-06-162024-04-23Credence Medsystems, Inc.System and method for safety syringe
US11759577B2 (en)*2018-11-132023-09-19Credence Medsystems, Inc.System and method for multiple site injection
US11419991B2 (en)2018-11-132022-08-23Credence Medsystems, Inc.System and method for microdose injection
US20200147323A1 (en)*2018-11-132020-05-14Credence Medsystems, Inc.System and method for multiple site injection
US12329953B2 (en)2018-11-132025-06-17Credence Medsystems, Inc.System and method for multiple site injection
WO2020248030A1 (en)2019-06-142020-12-17Jmc Administração E Participações LtdaDevice for applying self-adhesive sanitary products
US11883635B2 (en)2020-06-172024-01-30Credence MedSystemsSystem and method for microdose injection
WO2024149680A1 (en)*2023-01-122024-07-18Stephen Terence DunneMulti-dose syringe
EP4400132A1 (en)*2023-01-122024-07-17Stephen Terence DunneMulti-dose syringe

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