Claims
- 1. A needle-free injection device, comprising:
a syringe assembly configured to draw in and expel injectable fluid; and a locking mechanism configured to prevent actuation of the device; a disposable nozzle configured to temporarily engage the housing and including a deactivatable mechanism for temporarily unlocking the locking mechanism, the disposable nozzle being in fluid communication with the syringe assembly when the disposable nozzle is engaged with the housing; wherein upon firing of the device, the mechanism for temporarily unlocking the locking mechanism is permanently deactivated.
- 2. The needle-free injection device of claim 1, further comprising:
a power delivery assembly configured to deliver an operative force to the syringe assembly, thereby causing the syringe assembly to expel injectable fluid; and a power delivery lock adapted to prevent delivery of the operative force from the power delivery assembly to the syringe assembly.
- 3. The needle-free injection device of claim 2, wherein pushing the nozzle assembly against an injection site causes the syringe assembly and power delivery assembly to move relative to each other and such movement causes the power delivery assembly to deliver the operative force to the syringe assembly.
- 4. The needle-free injection device of claim 3, wherein the power delivery lock is configured to prevent movement of the power delivery assembly and syringe assembly relative to each other.
- 5. The needle-free injection device of claim 4, wherein the power lock includes a rotatable member pivotably fixed to the housing, the rotatable member being configured, in a first position, to position a blocking member so as to prevent movement the power delivery assembly and the syringe assembly relative to each other.
- 6. The needle-free injection device of claim 5, further comprising:
a trigger configured to, upon actuation, deactivate the power lock; and a trigger lock configured to prevent actuation of the trigger, the trigger lock comprising: a slidable piercing member; and a locking pin configured to move from a first position to a position upon engagement with the slidable piercing member; wherein,
when the locking pin is in the first position, the locking mechanism is locked and the trigger is blocked from actuation, and when the locking pin is in the second position, the locking mechanism is unlocked and the trigger can be actuated.
- 7. The needle-free injection device of claim 6, wherein the trigger is blocked from actuation by the rotatable member and movement of the locking pin from the first lock position to the second position rotates the rotatable member, freeing the trigger.
- 8. The needle-free injection device of claim 2, further comprising a trigger configured, upon actuation, to deactivate the power delivery lock.
- 9. The needle-free injection device of claim 8, wherein the locking mechanism further includes a trigger lock, the trigger lock being configured to prevent actuation of the trigger.
- 10. The needle-free injection device of claim 9, wherein: the trigger lock includes:
a slidable piercing member; and a locking pin configured to move from a first position to a second position upon engagement with the slidable piercing member; wherein,
when the locking pin is in the first position, the locking mechanism is locked and the trigger is blocked from actuation, and when the locking pin is in the second position, the locking mechanism is unlocked and the trigger can be actuated.
- 11. The needle-free injection device of claim 10, wherein the trigger is blocked from actuation by a rotatable member and movement of the locking pin from the first position to the second position rotates the rotatable member, freeing the trigger.
- 12. The needle-free injection device of claim 1, wherein the disposable nozzle includes a frangible tab adapted to engage the slidable piercing member when the disposable nozzle is engaged with the housing.
- 13. The needle-free injection device of claim 12, wherein when the frangible tab engages the slidable piercing member, the locking pin is moved from the first position to the second position.
- 14. The needle-free injection device of claim 13, wherein upon firing of the device, the slidable piercing member pierces and breaks the frangible tab.
- 15. The needle-free injection device of claim 1, wherein the syringe assembly is configured to expel injectable fluid upon application of pressurized gas to the syringe assembly from a gas reservoir.
- 16. The needle-free injection device of claim 15, further comprising a reservoir lock configured to prevent delivery of pressurized gas to the syringe assembly.
- 17. The needle-free injection device of claim 16, wherein
pushing the nozzle assembly against an injection site causes the gas reservoir to move relative to the syringe assembly; movement of the gas reservoir relative to the syringe assembly delivers pressurized gas from the gas reservoir to the syringe assembly; and the reservoir lock is configured to prevent movement of the gas reservoir relative to the syringe assembly.
- 18. The needle-free injection device of claim 17, wherein the reservoir lock includes a rotatable member pivotably fixed to the housing, the rotatable member being configured, in a first position, to position a blocking member so as to prevent movement of the gas reservoir relative to the syringe assembly.
- 19. The needle-free injection device of claim 18, further comprising:
a trigger configured to, upon actuation, deactivate the reservoir lock; and trigger lock configured to prevent actuation of the trigger, the trigger lock comprising: a slidable piercing member; and a locking pin configured to move from a first position to a position upon engagement with the slidable piercing member; wherein,
when the locking pin is in the first position, the locking mechanism is locked and the trigger is blocked from actuation, and when the locking pin is in the second position, the locking mechanism is unlocked and the trigger can be actuated.
- 20. The needle-free injection device of claim 19, wherein the trigger is blocked from actuation by the rotatable member and movement of the locking pin from the first lock position to the second position rotates the rotatable member, freeing the trigger.
- 21. The needle-free injection device of claim 20, wherein:
pressurized gas is delivered to the gas delivery assembly from a gas supply via a supply valve; and rotation of the rotatable member opens the supply valve.
- 22. A needle-free injection device comprising:
a syringe assembly configured to expel injectable fluid upon application of an operative force to the syringe assembly; a first delivery mechanism adapted to delivery energy from an external energy supply to an energy reserve; a second delivery mechanism adapted to deliver the operative force from the energy reserve to the syringe assembly; a locking mechanism configured to prevent operation of the second delivery mechanism; a disposable nozzle configured to temporarily fluidly communicate with the syringe assembly, wherein engagement of the disposable nozzle with the syringe assembly initiates operation of the first delivery mechanism and releases the locking mechanism.
- 23. The needle-free injection device of claim 22 wherein the disposable nozzle includes a deactivatable mechanism for initiating operation of the first delivery mechanism and releasing the locking mechanism.
- 24. The needle-free injection device of claim 23, wherein the deactivatable mechanism is permanently deactivated during or after an injection.
- 25. A method of performing an injection with a needle-free injection device including a trigger and a syringe assembly configured to expel injectable fluid upon delivery of an operative force to the syringe assembly, the method comprising:
engaging a disposable nozzle assembly with the syringe assembly to deactivate a first locking mechanism configured to prevent actuation of the trigger; actuating the trigger to deactivate a second locking mechanism configured to prevent delivery of the operative force to the syringe assembly; and pushing the needle-free injection device against an injection site to deliver the operative force to the syringe assembly such that injectable liquid is expelled from the device.
- 26. A needle-free injection device, comprising:
a system for providing directed and pre-selected pressure; a nozzle with an orifice for defining a stream of fluid that is directed toward the skin of a patient against which a front end of the nozzle is positioned; and an engagement system that can selectively engage the nozzle with the pressurizing system so that the nozzle can be mounted to the pressurizing system to receive pressure for injection and so that after injection the nozzle can be removed and replaced for each new use of the device.
- 27. The device of claim 26, further comprising a locking mechanism configured to prevent actuation of the device, and wherein the engagement system includes a plunger that can be selectively driven toward the nozzle and thereby provide pressure to a deactivatable mechanism for temporarily unlocking the locking mechanism when the nozzle is engaged and ready for firing.
- 28. The device of claim 27, further comprising apparatus that permanently deactivates the mechanism for temporarily unlocking the locking mechanism when the device is fired.
- 29. The device of claim 26, wherein the nozzle includes a cover that can be removably mounted to the nozzle, and can then be removed prior to injection.
- 30. The device of claim 26 wherein the nozzle orifice is rearwardly spaced from the front end of the nozzle, and a check valve is disposed between the orifice and the front end of the nozzle.
- 31. The device of claim 30 wherein the check valve is in the form of a frangible web.
- 32. The device of claim 31 wherein the frangible web is formed of a material and thickness such that the web is pierced when the stream of fluid is directed against it under pressure.
- 33. A method of performing an injection with a needle-free injection device for a patient, comprising:
mounting a removable nozzle assembly to a device for providing a pre-selected pressure, the nozzle assembly including an injection orifice for defining a flow of injectable fluid therethrough, the nozzle assembly further including a frangible web that conceals and protects the injection orifice but is axially spaced from the orifice and from a forward end of the nozzle; providing a supply of injection fluid to the nozzle; positioning the forward end of the nozzle against the patients skin; and firing the device to provide injection fluid under the pre-selected pressure to the injection orifice, causing the injection orifice to define the flow of injectable fluid, the defined flow of injectable fluid passing through an axial space and then through the frangible web to pierce the web, and then through another axial space before passing through the forward end of the nozzle and entering the skin of the patient.
- 34. The process of claim 33, further comprising:
removing the nozzle assembly from the device after the device is fired; mounting another nozzle assembly to the device; and repeating the positioning and firing steps.
CROSS REFERENCE TO RELATED APPLICATIONS
[0001] This application is a continuation-in-part of U.S. patent application Ser. No. 10/164,920, filed Jun. 4, 2002, the disclosure of which is incorporated in its entirety for all purposes.
Continuation in Parts (1)
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Number |
Date |
Country |
Parent |
10164920 |
Jun 2002 |
US |
Child |
10458345 |
Jun 2003 |
US |