Vacuum assisted suspension system
US-9198780-B2 · Dec 1, 2015 · US
US11298249B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-11298249-B2 |
| Application number | US-201916433319-A |
| Country | US |
| Kind code | B2 |
| Filing date | Jun 6, 2019 |
| Priority date | Jun 7, 2018 |
| Publication date | Apr 12, 2022 |
| Grant date | Apr 12, 2022 |
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Official abstract text for this publication.
A prosthetic interface includes a body portion having an open proximal end and a closed distal end including a distal cup. The body portion includes a membrane component having a flexible configuration defining an internal flow space extending along a length of the membrane component between an inner side arranged to face a skin surface of a residual limb and an outer side arranged to face away from the skin surface. At least one material coating is selectively applied to the membrane component that interacts with at least one of the membrane component and the distal cup to define at least one breathable region along the inner side that allows fluid flow between the internal flow space and the residual limb, and at least one impermeable region along the outer side that allows for vacuum suspension between the prosthetic interface and a prosthetic socket.
Opening claim text (preview).
The invention claimed is: 1. A prosthetic interface comprising: a body portion including a proximal end having an open configuration, and a distal end having a closed configuration, the body portion formed at least in part by a membrane component having a flexible configuration defining an internal flow space extending along a length of the membrane component between an inner side arranged to face a skin surface of a residual limb and an outer side arranged to face away from the skin surface, wherein the internal flow space is arranged to transport fluid through the membrane component and relative to the skin surface; a distal cup formed of a polymeric material at the distal end of the body portion; and at least one material coating selectively applied to the membrane component such that the at least one material coating interacts with at least one of the membrane component and the distal cup to define at least one breathable region along the inner side that allows fluid flow between the residual limb and the internal flow space, and at least one impermeable region along the outer side that allows for vacuum suspension between the prosthetic interface and a prosthetic socket; wherein the at least one material coating comprises a first material coating having a first surface applied to the inner side of the membrane component and defining a permeable region formed as an opening along the first material coating extending through a thickness defined between the first surface and a second surface opposite the first surface of the first material coating, and a second material coating applied to the second surface of the first material coating, wherein a portion of the second material coating passes completely through the permeable region and extends from the inner side through and to the outer side of the membrane component to define the at least one impermeable region protruding from the outer side; wherein the first and second material coatings are impermeable polymeric materials. 2. The prosthetic interface of claim 1 , the at least one impermeable region comprises a sealing bridge of the polymeric material forming the distal cup extending through the internal flow space and between the distal cup and the outer side of the membrane component. 3. The prosthetic interface of claim 2 , wherein the at least one impermeable region comprises a portion of the polymeric material forming the distal cup extending into the internal flow space via a plurality of voids formed in at least one material coating. 4. The prosthetic interface of claim 1 , wherein the body portion comprises an elastomeric body portion having a wall portion and the at least one impermeable region comprises a same polymeric material as the distal cup and forming a portion of the wall portion and impregnating the membrane component. 5. The prosthetic interface of claim 1 , wherein the distal cup is formed on the inner side of the membrane component. 6. The prosthetic interface of claim 1 , wherein the distal cup is formed on the outer side of the membrane component. 7. The prosthetic interface of claim 6 , comprising a textile cover positioned on an outer surface of the distal cup and arranged to reduce friction between the distal end of the body portion and the prosthetic socket. 8. The prosthetic interface of claim 7 , wherein the at least one breathable region extends along an entirety of the inner side. 9. The prosthetic interface of claim 1 , wherein the at least one breathable region comprises a first material coating of silicone applied to inner side of the membrane component and defining a plurality of voids in communication with the internal flow space. 10. The prosthetic interface of claim 1 , wherein the at least one breathable region and the at least one impermeable region overlap one another along a longitudinal axis of the membrane component. 11. The prosthetic interface of claim 1 , wherein the at least one breathable region extends in a proximal direction from the at least one impermeable region. 12. The prosthetic interface of claim 1 , wherein the second material coating is silicone. 13. A prosthetic socket system comprising: a prosthetic socket; a prosthetic interface adapted to provide an interface between a residual limb and the prosthetic socket, the prosthetic interface comprising: a body portion including a proximal end having an open configuration, and a distal end having a closed configuration, the body portion formed at least in part by a membrane component having a flexible configuration defining an internal flow space extending along a length of the membrane component between an inner side arranged to face a skin surface of a residual limb and an outer side arranged to face away from the skin surface, wherein the internal flow space is arranged to transport heat and fluid from the residual limb through the membrane component and away from the skin surface; a distal cup formed of a polymeric material at the distal end of the body portion; and at least one material coating selectively applied to the membrane component, wherein the at least one material coating interacts with at least one of the membrane component and the distal cup to define at least one breathable region along the inner side that allows the heat and moisture from the residual limb to move into the internal flow space, and at least one impermeable region along the outer side that allows for vacuum suspension between the prosthetic interface and the prosthetic socket; wherein the at least one material coating comprises a first material coating having a first surface applied to the inner side of the membrane component and defining a permeable region formed as an opening along the first material coating extending through a thickness defined between the first surface and a second surface opposite the first surface of the first material coating, and a second material coating applied to the second surface of the first material coating, wherein a portion of the second material coating passes completely through the permeable region and extends from the inner side through and to the outer side of the membrane component to define the at least one impermeable region protruding from the outer side; wherein the first and second material coatings are impermeable polymeric materials. 14. The prosthetic socket system of claim 13 , wherein the second material coating is silicone.
Cooling bags, e.g. ice-bags · CPC title
Pads, e.g. relief pads · CPC title
Interface cushioning members placed between the limb stump and the socket, e.g. bandages or stockings for the limb stump · CPC title
having a vacuum reservoir chamber · CPC title
Sockets, e.g. of suction type · CPC title
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