Claims
- 1. A prosthetic socket comprising:
a rigid, structural, load-bearing, air impervious inner wall in the form of a close ended cup having an open inner wall proximal end and a closed inner wall distal end area, said inner wall defining an inner volume adapted to contain a distal portion of a residual limb, and said inner wall proximal end adapted to receive a distal portion of a residual limb to be located within said inner volume; a generally cup-shaped, rigid, air impervious structural, load-bearing outer wall section having an outer wall section proximal end and a closed outer wall section distal end area; a hermetic sealing connection between an outer side of said inner wall and an inner side of said outer wall section located proximally relative to said closed outer wall section distal end area; a chamber defined between an outer side of said inner wall and an inner side of said outer wall section, said chamber hermetically sealed along said hermetic sealing connection; at least one aperture in said inner wall communicating the inner volume of said inner wall with said chamber; a port communicating said chamber with an area external of said outer wall section; whereby a partial vacuum may be established within said chamber via said port when a residual limb is contained in said inner volume of said inner wall and said partial vacuum may be communicated to said inner volume of said inner wall to effect a vacuum suspension of the prosthetic socket on the residual limb via said at least one aperture in said inner wall.
- 2. The prosthetic socket as claimed in claim 1, wherein said chamber is disposed adjacent said closed outer wall section distal end area.
- 3. The prosthetic socket as claimed in claim 1, wherein said closed outer wall section distal end area comprises a prosthetic adapter.
- 4. The prosthetic socket as claimed in claim 1, wherein said inner wall comprises a reinforced resin material.
- 5. The prosthetic socket as claimed in claim 4, wherein said inner wall comprises carbon fiber reinforcement.
- 6. The prosthetic socket as claimed in claim 1, wherein said inner wall and said outer wall section comprise reinforced resin material.
- 7. The prosthetic socket as claimed in claim 6, wherein said inner wall and outer wall section comprise carbon fiber reinforcement.
- 8. The prosthetic socket as claimed in claim 1, wherein said outer wall section includes an inner surface enclosing and extending over a majority of an outer surface of said inner wall in contiguous relationship therewith between said hermetic sealing connection and an outer area of said inner wall located proximally relative to said hermetic sealing connection.
- 9. The prosthetic socket as claimed in claim 1, wherein said chamber is hermetically sealed other than said aperture in said inner wall and said port.
- 10. The prosthetic socket as claimed in claim 1, wherein said outer wall section comprises a laminated structure comprising an outer rigid, structural layer defining one part of said outer wall closed distal end area, and an inner air impervious layer coextending at least in part with said outer layer along the outer wall closed distal end area of said outer wall section, said chamber disposed between an inner side of said inner layer and an outer side of said inner wall; and said hermetic sealing connection disposed at least in part between an inner side of said inner layer and an outer side of said inner wall.
- 11. The prosthetic socket as claimed in claim 10, said outer wall section including a prosthetic adapter disposed at the outer wall section distal end area.
- 12. The prosthetic socket as claimed in claim 1, said port extending through the outer wall section.
- 13. The prosthetic socket as claimed in claim 10, said port extending through said inner layer and said outer, rigid structural layer.
- 14. The prosthetic socket as claimed in claim 11, including a rigid structural bonding material between said prosthetic adapter and said inner layer.
- 15. The prosthetic socket as claimed in claim 10, said outer rigid structural layer of said outer wall section and said inner wall comprising a reinforced resin material.
- 16. The prosthetic socket as claimed in claim 15, said outer rigid structural layer of said outer wall section and said inner wall comprising carbon fiber reinforcement.
- 17. The prosthetic socket as claimed in claim 10, said outer rigid structural layer of said outer wall section including a proximal area extending over and enclosing a portion of said inner wall and being bonded to an external surface of said inner wall along an area proximally located relative to said hermetic sealing connection.
- 18. The prosthetic socket as claimed in claim 17, said outer rigid structural layer of said outer wall section and said inner wall comprising carbon fiber reinforced resin material.
- 19. The prosthetic socket as claimed in claim 18, said inner air impervious layer comprising a molded thermoplastic continuous resin sheet material.
- 20. The prosthetic socket as claimed in claim 1, said inner wall comprising a laminated assembly including a smooth inner layer defining the inner wall inner volume, and a carbon fiber reinforced resin outer layer bonded to an outer surface of said inner layer, said inner layer comprising a continuous molded thermoplastic sheet plastic material.
- 21. A prosthetic socket adapted for vacuum suspension of a prosthetic device relative to a residual limb, said socket comprising:
a rigid, structural, load-bearing, cup-shaped socket member defining a substantially closed distal end, an inner volume terminating distally at said distal end for receiving a distal portion of a residual limb, and an open proximal end arranged to admit a distal portion of a residual limb into the inner volume; a vacuum reservoir chamber located externally of and carried by said socket member, said vacuum reservoir chamber defined at least in part by a chamber wall section carried by said socket member externally of said socket member; said chamber wall section being sufficiently rigid and inflexible so as to avoid substantial deflection when the pressure in the reservoir chamber varies during implementation of the prosthetic socket; an evacuation port in communication with said reservoir chamber for enabling establishment of a partial vacuum within said reservoir chamber; and at least one vacuum transfer port communicating said reservoir chamber with said inner volume of said socket member for enabling transfer of a partial vacuum within said reservoir chamber into said inner volume, each of said at least one vacuum transfer port being located at the distal end of the socket member and being substantially smaller in cross section than said distal end which is closed except for said at least one vacuum transfer port.
- 22. The prosthetic socket as claimed in claim 21, said reservoir chamber defined by said chamber wall section and the exterior of said socket member, and located between said chamber wall section and the exterior of said socket member.
- 23. The prosthetic socket as claimed in claim 22, said reservoir chamber disposed adjacent and outside of the substantially closed distal end of said socket member.
- 24. The prosthetic socket as claimed in claim 21, including a prosthetic adapter associated with said chamber wall section, said chamber wall section being structurally sufficiently rigid to carry operational loads between said socket member and said prosthetic adapter during implementation of the prosthetic socket;
said chamber wall section comprising a structural load-bearing portion of the prosthetic socket, and arranged to transfer operational loads between the socket member and a prosthetic device via said prosthetic adapter.
- 25. The prosthetic socket as claimed in claim 24, said chamber wall section and said socket member comprising a carbon reinforced resin material.
- 26. The prosthetic socket as claimed in claim 25, said prosthetic adapter comprising a metal material.
- 27. The prosthetic socket as claimed in claim 21, said evacuation port communicating to an area outside said reservoir chamber via a one-way check valve operational so as to selectively permit evacuation of air out of the reservoir chamber but not ingress of air into the reservoir chamber.
- 28. The prosthetic socket as claimed in claim 21, said chamber wall section extending partially over an outer surface of said socket member and secured thereto by a bonding agent;
said chamber wall section including a distal end area and a prosthetic adapter comprising a portion of the distal end of said chamber wall section; said chamber wall section having sufficient structural strength to enable the chamber wall section to transfer operational loads between said socket member and said prosthetic adapter during implementation of the prosthetic socket.
- 29. The prosthetic socket as claimed in claim 28, said socket member and said chamber wall section formed of carbon fiber reinforced resin material, said resin material also comprising said bonding agent.
- 30. A method of making a vacuum suspension prosthetic socket containing an integrated vacuum reservoir chamber, comprising:
forming a rigid, load-bearing structural inner socket member configured to contain a distal end portion of a residual limb; forming a rigid, load-bearing outer wall section defining at least one wall portion of a suction reservoir chamber and bonding said outer wall section to the outer side of the inner socket member so as to define a suction reservoir chamber located outside the inner socket member and within at least one wall portion of the outer wall section; providing a communication channel between the vacuum reservoir chamber and an inner volume of the inner socket member; and attaching a prosthetic adapter to a distal end area of the outer wall section.
- 31. The method according to claim 30, wherein the outer wall section is joined to the inner socket member so that the vacuum reservoir chamber is located between an outer side of the inner socket member and an inner side of the outer wall section.
- 32. The method according to claim 30, wherein the inner socket member has a closed, cup-shaped distal end, and wherein the communication channel is formed so that it has a cross-section that is substantially smaller in cross-section than the distal end of the inner socket member.
- 33. The method according to claim 30, wherein said inner socket member and said outer wall section are made of carbon fiber-reinforced resin.
- 34. The method according to claim 30, including providing a selective one-way valve in communication with the vacuum reservoir chamber to enable withdrawal of air from the reservoir chamber but not undesired ingress of air therein.
- 35. The method according to claim 30, including pre-forming at least one wall of the vacuum reservoir chamber and joining the at least one wall to said outer wall section and said inner socket member to define the reservoir chamber.
- 36. The method according to claim 35, wherein the pre-formed wall is not a substantial load-bearing element of the prosthetic socket, but defines a spacer element usable during assembly of the outer wall section to the inner socket member enabling creation of the vacuum reservoir chamber with at least one wall portion thereof defined by the pre-formed wall.
- 37. The method according to claim 35, including forming said pre-formed wall comprises said outer wall section and using the pre-formed wall to define the entire vacuum reservoir chamber; and wherein the step of attaching the prosthetic adapter to the distal end area of the outer wall section comprises attaching the adapter to a distal end area of the pre-formed wall.
Parent Case Info
[0001] This application claims the benefit of U.S. provisional patent application No. 60/480,350 filed Jun. 20, 2003.
Provisional Applications (1)
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Number |
Date |
Country |
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60480350 |
Jun 2003 |
US |