Electroactive polymer actuator and method of actuation thereof
US-2024407771-A1 · Dec 12, 2024 · US
US9352076B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-9352076-B2 |
| Application number | US-201414282208-A |
| Country | US |
| Kind code | B2 |
| Filing date | May 20, 2014 |
| Priority date | Aug 24, 2001 |
| Publication date | May 31, 2016 |
| Grant date | May 31, 2016 |
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A system for stimulating the healing of tissue comprises a porous pad positioned within a wound cavity, and an airtight dressing secured over the pad, so as to provide an airtight seal to the wound cavity. A proximal end of a conduit is connectable to the dressing. A distal end of the conduit is connectable to a negative pressure source, which may be an electric pump housed within a portable housing, or wall suction. A canister is positioned along the conduit to retain exudates suctioned from the wound site during the application of negative pressure. A controller for automated oscillation of pressure over time is provided to further enhance and stimulate the healing of an open wound. A power management motor control for varying pump drive frequency and managing a portable power supply is provided to increase battery life and improve patient mobility.
Opening claim text (preview).
We claim: 1. A system for stimulating healing of tissue at a wound site comprising: a porous pad configured to be positioned at a wound site and adapted to be covered by a drape to form a seal for providing negative pressure to the wound site; a pumping mechanism fluidly coupled to the porous pad for applying negative pressure to the wound site, the pumping mechanism including a pump and an electric motor for driving the pump to generate an actual pressure; and a power management motor control that compares the actual pressure to a target pressure and determines a tentative motor drive power for reaching the target pressure, and then either (i) applies the tentative motor drive power to the electric motor when the tentative motor drive power is greater than or equal to the stall power of the electric motor or (ii) prevents the tentative motor drive power from being applied to the electric motor if the tentative motor drive power is less than the stall power of electric motor. 2. The system of claim 1 , further comprising a canister fluidly connected between the porous pad and the pump. 3. The system of claim 1 , further comprising a clamp for securing said system to a pole. 4. The system of claim 1 , wherein said porous pad is comprised of a polyvinyl alcohol foam. 5. The system of claim 1 , further comprising a control system to determine an optimum drive frequency for variably driving the pump in order to maximize pump flow. 6. The system of claim 5 , further comprising a pressure sensor for measuring the actual pressure across said pump. 7. The system of claim 5 , further comprising a variable frequency drive circuit for driving the electric motor at said optimum drive frequency. 8. The system of claim 1 , wherein the drape forms an airtight seal around the porous pad when the porous pad is positioned at the wound site. 9. The system of claim 2 , further comprising a drainage tube having a distal end and a proximal end, the distal end of the drainage tube being fluidly connected to the porous pad and the proximal end being fluidly connected to the canister. 10. The system of claim 9 , further comprising an access port for sampling wound fluids, said access port being connected to said drainage tube and having a resealable membrane operable to maintain a seal after being punctured. 11. The system of claim 1 , further comprising a portable power unit for supplying power to said electric motor. 12. The system of claim 1 , further comprising means for varying the negative pressure by continually comparing the actual pressure to a maximum target pressure and a minimum target pressure. 13. The system of claim 2 , further comprising a conduit having a proximal end and a distal end, and wherein said proximal end is removably connected to said canister and said distal end is in fluid communication with the wound site. 14. The system of claim 13 wherein said conduit is comprised of longitudinal partitions that form a drainage conduit and a pressure detection conduit. 15. The system of claim 14 wherein a plurality of said detection conduits are arranged about said drainage conduit. 16. The system of claim 10 wherein said resealable access port comprises an appendage of said conduit. 17. The system of claim 1 , wherein said electric pump is a variable frequency pump. 18. The system of claim 17 , further comprising a control system to determine an optimum drive frequency for driving the variable frequency pump in order to maximize pump flow. 19. The system of claim 18 , further comprising a variable frequency drive circuit for driving said pump at said optimum drive frequency. 20. The system of claim 17 , further comprising a pressure sensor for measuring pressure across said pump. 21. The system of claim 1 , further comprising a control system for varying the negative pressure over a time interval by continually comparing the actual pressure to a varying target pressure that is incremented between a maximum target pressure and minimum target pressure and adjusting the actual pressure to meet the varying target pressure in response to the comparisons.
for taking samples · CPC title
with means or measures taken for minimising energy consumption · CPC title
having pierceable self-sealing members · CPC title
Suction control thereof · CPC title
Suction control (underwater drainage A61M1/61) · CPC title
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