IPC분류정보
국가/구분 |
United States(US) Patent
등록
|
국제특허분류(IPC7판) |
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출원번호 |
UP-0602113
(2006-11-20)
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등록번호 |
US-7828764
(2010-11-25)
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발명자
/ 주소 |
- Moberg, Sheldon B.
- Hanson, Ian B.
- Mounce, R. Paul
- Bente, IV, Paul F.
- Kavazov, Julian D.
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출원인 / 주소 |
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대리인 / 주소 |
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인용정보 |
피인용 횟수 :
163 인용 특허 :
126 |
초록
▼
A system includes a durable portion with a durable housing and a separable disposable portion with a disposable housing that selectively engage with and disengage from each other. The disposable housing secures to a patient and may be disposed of after it has been in use for a prescribed period. Com
A system includes a durable portion with a durable housing and a separable disposable portion with a disposable housing that selectively engage with and disengage from each other. The disposable housing secures to a patient and may be disposed of after it has been in use for a prescribed period. Components that normally come into contact with a patient or with an infusion medium may be part of the disposable portion to allow for disposal after a prescribed use. A reservoir for holding the infusion medium may be part of the disposable portion, and may be supported by the disposable housing. The durable portion may include other components such as electronics for controlling delivery of the infusion medium from the reservoir, and a drive device including a motor and drive linkage.
대표청구항
▼
What is claimed is: 1. A system, the system comprising: a reservoir having an interior volume for holding an infusion medium, the reservoir having an inlet port for allowing the infusion medium to flow into the interior volume of the reservoir, and an outlet port for allowing the infusion medium to
What is claimed is: 1. A system, the system comprising: a reservoir having an interior volume for holding an infusion medium, the reservoir having an inlet port for allowing the infusion medium to flow into the interior volume of the reservoir, and an outlet port for allowing the infusion medium to flow out of the interior of the reservoir; and a piston disposed at least partially within the reservoir, the piston being moveable within the reservoir, the piston comprising: a piston body for forcing the infusion medium out the outlet port of the reservoir, the piston body for receiving a plunger shaft, the piston body including an engagement portion for connecting to and disconnecting from the plunger shaft; and a piston septum pierceable by a transfer element to allow an infusion medium to be filled into the interior volume of the reservoir through the inlet port of the reservoir and through the piston body in a case where the engagement portion of the piston body is disconnected from the plunger shaft and the piston septum is pierced by the transfer element; wherein the inlet port through which the interior volume of the reservoir is filled with the infusion medium is different from the outlet port of the reservoir through which the infusion medium is forced out of the interior volume of the reservoir by the piston body. 2. The system of claim 1, wherein the piston is moveable to allow the infusion medium to be filled into the interior volume of the reservoir. 3. The system of claim 1, wherein the outlet port is connectable to an infusion path to allow for delivering the infusion medium from the interior volume of the reservoir to a body of a user. 4. The system of claim 1, wherein the piston septum is located within a portion of the opening in the piston body. 5. The system of claim 1, wherein the piston septum is a self sealing septum for keeping the infusion medium within the interior of the reservoir when the piston septum is not being pierced. 6. The system of claim 1 the system, further comprising: a fill apparatus, the fill apparatus comprising: an engagement portion for engaging with the engagement portion of the piston body; a compressible portion that is able to be compressed; and the transfer element, the transfer element for piercing the piston septum in a case where (i) the engagement portion of the fill apparatus is engaged with the engagement portion of the piston body and (ii) the compressible portion of the fill apparatus is compressed; wherein the transfer element provides a path for transferring the infusion medium from an infusion medium container to the interior volume of the reservoir in a case where the transfer element has pierced the piston septum and the transfer element is connected to the infusion medium container. 7. The system of claim 6, wherein the fill apparatus further comprises a covering portion for at least partially surrounding a particular end of the transfer element; wherein the covering portion of the fill apparatus is configured to mate with the infusion medium container; and wherein the fill apparatus is configured such that, when the covering portion of the fill apparatus is mated with the infusion medium container, the particular end of the needle pierces a particular septum of the infusion medium container. 8. The system of claim 6, wherein the piston is configured such that in a case where (i) the engagement portion of the fill apparatus is engaged with the engagement portion of the piston body and (ii) a user moves the fill apparatus relative to the reservoir, the piston moves within the reservoir to allow the infusion medium to be filled into the interior volume of the reservoir from the infusion medium container. 9. The system of claim 6, wherein the engagement portion of the fill apparatus is threaded; and wherein the engagement portion of the piston body is threaded. 10. The system of claim 6, wherein the compressible portion of the fill apparatus comprises a bellows. 11. The system of claim 5, the system further comprising: the plunger shaft, the plunger shaft having an engagement portion for engaging with the engagement portion of the piston body and having a mating portion for mating with a linkage portion of a drive device, the drive device for driving the plunger shaft to move the piston body to force the infusion medium out of the interior volume of the reservoir in a case where the engagement portion of the plunger shaft is engaged with the engagement portion of the piston body and the linkage portion of the drive device is mated with the mating portion of the plunger shaft. 12. The system of claim 1, the system further comprising: the plunger shaft, the plunger shaft having an engagement portion for engaging with the engagement portion of the piston body, the plunger shaft further having a mating portion for mating with a linkage portion of a drive device, the drive device for driving the plunger shaft to move the piston body to force the infusion medium out of the interior volume of the reservoir in a case where (i) the engagement portion of the plunger shaft is engaged with the engagement portion of the piston body and (ii) the linkage portion of the drive device is mated with the mating portion of the plunger shaft. 13. The system of claim 12, the system further comprising: the drive device having the linkage portion; wherein the drive device comprises a motor for moving the linkage portion. 14. The system of claim 13, the system further comprising: a disposable housing for housing the reservoir, the disposable housing configured to be securable to a user; and a durable housing for housing the motor of the drive device, the durable housing configured to be selectively engaged with and disengaged from the disposable housing. 15. The system of claim 1, wherein the reservoir has a degassing portion that comprises a hydrophobic material for allowing gases to escape from the reservoir while keeping the infusion medium within the reservoir, said degassing portion of the reservoir separate from the piston. 16. The system of claim 1, wherein the piston has a degassing portion that comprises a hydrophobic material for allowing gases to escape from the reservoir while keeping the infusion medium within the reservoir. 17. A method for using a system, the system comprising a reservoir and a piston, the reservoir having an interior volume, an inlet port for allowing the infusion medium to flow into the interior volume of the reservoir, and an outlet port for allowing the infusion medium to flow out of the interior volume of the reservoir for holding an infusion medium, the piston comprising a piston body and a piston septum, the piston body for forcing the infusion medium out the outlet port of the reservoir, the piston septum capable of being pierced to allow the infusion medium to be filled into the interior volume of the reservoir through the inlet port of the reservoir and through the piston body, the method comprising: piercing the piston septum with a transfer element; transferring the infusion medium from an infusion medium container to the reservoir through the opening in the piston body; removing the transfer element from the piston body after said transferring the infusion medium from the infusion medium container to the reservoir; connecting a portion of a plunger shaft to the piston body after said removing the transfer element from the piston body; and forcing the infusion medium out of the interior volume of the reservoir with the piston body through the outlet port of the reservoir, the outlet port being different from the inlet port through which the interior volume of the reservoir is filled with the infusion medium. 18. The method of claim 17, wherein the system further comprises a fill apparatus including an engagement portion, a compressible portion, and the transfer element; and wherein piercing the piston septum comprises: engaging the engagement portion of the fill apparatus with an engagement portion of the piston body; and compressing the compressible portion of the fill apparatus to cause the transfer element to pierce the piston septum. 19. The method of claim 17, wherein the system further comprises a fill apparatus including an engagement portion and the transfer element; and wherein piercing the piston septum comprises: engaging the engagement portion of the fill apparatus with an engagement portion of the piston body; and piercing the piston septum with the transfer element after the engagement portion of the fill apparatus has been engaged with the engagement portion of the piston body. 20. The method of claim 19, wherein the system further comprises the plunger shaft and a drive device, the plunger shaft having an engagement portion and a mating portion, the drive device having a linkage portion and a motor; and wherein the method further comprises: disengaging the engagement portion of the fill apparatus from the engagement portion of the piston body; engaging the engagement portion of the plunger shaft with the engagement portion of the piston body; mating the linkage portion of the drive device with the mating portion of the plunger shaft; and controlling the motor to move the linkage portion of the drive device to move the plunger shaft to move the piston to force the infusion medium out of the interior volume of the reservoir. 21. The method of claim 19, wherein transferring comprises: moving the fill apparatus relative to the reservoir to move the piston within the reservoir to allow the infusion medium to fill into the interior volume of the reservoir from the infusion medium container through the inlet port of the reservoir and through the opening in the piston body. 22. The method of claim 17, wherein the inlet port of the reservoir is separate from the outlet port of the reservoir; and wherein the method further comprises: connecting the outlet port of the reservoir to an infusion path that allows for a transfer of the infusion medium from the interior volume of the reservoir to a body of a user. 23. The method of claim 17, further comprising: moving the plunger shaft to move the piston to force the infusion medium out of the interior volume of the reservoir. 24. The system of claim 1, the piston body having an opening for receiving the plunger shaft; the piston septum pierceable by the transfer element to allow the infusion medium to be filled into the interior volume of the reservoir through the inlet part of the reservoir and through the opening in the piston body in a case where the engagement portion is disconnected from the plunger shaft and the piston septum is pierced by the transfer element. 25. The system of claim 24, wherein the piston septum covers the opening in the piston body. 26. The system of claim 24, wherein the opening in the piston body is free of the plunger shaft in a case where the engagement portion of the piston body is disconnected from the plunger shaft and the piston septum is pierced by the transfer element. 27. The system of claim 6, wherein the transfer element comprises a needle. 28. The system of claim 1, wherein the inlet port is located on a portion of the reservoir opposite a portion on which the outlet port is located. 29. A method of manufacturing a system, the method comprising: providing a reservoir having an interior volume for holding an infusion medium, the reservoir having an inlet port for allowing the infusion medium to flow into the interior volume of the reservoir, and an outlet port for allowing the infusion medium to flow out of the interior of the reservoir; and disposing a piston at least partially within the reservoir, the piston being moveable within the reservoir, the piston comprising: a piston body for forcing the infusion medium out the outlet port of the reservoir, the piston body for receiving a plunger shaft, the piston body including an engagement portion for connecting to and disconnecting from the plunger shaft; and a piston septum pierceable by a transfer element to allow an infusion medium to be filled into the interior volume of the reservoir through the inlet port of the reservoir and through the piston body in a case where the engagement portion of the piston body is disconnected from the plunger shaft and the piston septum is pierced by the transfer element; wherein the inlet port through which the interior volume of the reservoir is filled with the infusion medium is different from the outlet port of the reservoir through which the infusion medium is forced out of the interior volume of the reservoir by the piston body.
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