Claims
- 1. An apparatus for providing rapid compression to at least one appendage, the apparatus comprising:
at least one inflatable sleeve for receiving the at least one appendage, the at least one inflatable sleeve having a first volume for receiving a gas, the gas within the first volume having a pressure that is applied to the appendage; a cylinder having a first end and a second end; a piston movably positioned within the cylinder between the first end and the second end to define a pressure cavity within the cylinder between the piston and the second end of the cylinder, the pressure cavity having a second volume for receiving the gas, the pressure cavity being coupled to the at least one inflatable sleeve such that altering the second volume by moving the piston alters the pressure of the gas within the first volume; a piston driver coupled to the piston, the piston driver configured to position the piston within the cylinder responsive to a control signal; and a controller coupled to the piston driver, the controller configured to generate the control signal for positioning the piston within the cylinder to control the pressure of the gas within the first volume; wherein the pressure of the gas in the first volume is increased by inserting the piston into the cylinder to decrease the second volume and the pressure in the first volume is decreased by withdrawing the piston from the cylinder to increase the second volume.
- 2. The apparatus of claim 1, wherein the controller is configured to control the pressure of the gas within the first volume responsive to a predefined therapy program.
- 3. The apparatus of claim 1, wherein the appendage is associated with a being having a cardiac signal and wherein the controller is configured to receive the cardiac signal and to control the pressure of the gas within the first volume responsive to the cardiac signal.
- 4. The apparatus of claim 3, wherein the cardiac signal indicates expansion and contraction of a heart associated with the being and wherein the controller is configured to control the pressure of the gas within the first volume responsive to the cardiac signal such that the pressure is increased substantially concurrent with the expansion of the heart and the pressure is decreased substantially concurrent with the contraction of the heart.
- 5. The apparatus of claim 1, further comprising:
a pressure sensor coupled to the controller, the pressure sensor positioned to sense the pressure of the gas; wherein the controller is configured to control the position of the piston responsive at least in part to the sensed pressure.
- 6. The apparatus of claim 5, further comprising:
a valve coupled to the controller, the valve having a least an open state and a closed state selectable by the controller, the valve positioned to expose at least one of (i) the first volume and (ii) the second volume to an atmospheric pressure when in the open state; wherein the controller is further configured to select when the valve is in the open state responsive to the position of the piston and the sensed pressure.
- 7. The apparatus of claim 1, further comprising:
a pump coupled to the controller and to at least one of (i) the inflatable sleeve and (ii) the pressure cavity, the pump configured to initialize the pressure of the gas.
- 8. The apparatus of claim 1, wherein the controller is configured to apply a therapy to the at least one appendage.
- 9. The apparatus of claim 1, wherein the at least one inflatable sleeve includes at least two inflatable sleeves for receiving at least two respective appendages.
- 10. The apparatus of claim 1, wherein the at least one inflatable sleeve includes at least four inflatable sleeves for receive at least four respective appendage.
- 11. The apparatus of claim 1, wherein the piston driver is configured to operate using less than 1500 watts at 120 volts AC.
- 12. A method for providing rapid compression to at least one appendage positioned within an inflatable sleeve comprising the steps of:
(a) filling the inflatable sleeve with a gas; (b) withdrawing a portion of the gas from the inflatable sleeve into a cavity; (c) inserting the withdrawn portion of gas from the cavity back into the inflatable sleeve; and (d) repeating steps (b) and (c) to apply a compression therapy to the at least one appendage.
- 13. The method of claim 12, wherein steps (b) and (c) are performed responsive to a predefined program.
- 14. The method of claim 12, wherein the appendage is associated with a being having a cardiac signal and wherein the steps (b) and (c) are performed responsive to the cardiac signal.
- 15. The method of claim 14, wherein the cardiac signal is associated with a heart of the being and wherein step (b) is performed substantially concurrent with contraction of the heart and step (c) is performed substantially concurrent with expansion of the heart.
- 16. The method of claim 12, wherein steps (b) and (c) are preformed using a cylinder having a first end and a second end and a piston movably positioned within the cylinder between the first end and the second end to define a pressure cavity having a volume coupled to the inflatable sleeve, step (b) is performed by withdrawing the piston from the cylinder from a first position within the cylinder to a second position, and step (c) is performed by inserting the piston into the cylinder from the second position to the first position, and wherein the method further comprises the steps of:
monitoring a pressure associated with the inflatable sleeve; and altering at least one of (i) the first position and (ii) the second position responsive to the monitored pressure to accommodate pressure fluctuations.
- 17. The method of claim 16, wherein the cylinder further comprises a valve having a least an open state and a closed state, the valve positioned to expose the pressure cavity to an atmosphere when in the open state, wherein step (a) comprises the steps of:
(i) withdrawing the piston from the cylinder from a third position to a fourth position with the valve open; (ii) inserting the piston into the cylinder from the fourth position to the third position with the valve closed; and (iii) repeating steps (i) and (ii) until a predetermined pressure associated with the inflatable sleeve is met.
- 18. A system for providing rapid compression to at least one appendage positioned within an inflatable sleeve comprising:
means for filling the inflatable sleeve with a gas; means for withdrawing a portion of the gas from the inflatable sleeve; and means for inserting the withdrawn portion of gas back into the inflatable sleeve.
- 19. The system of claim 18, further comprising:
means for altering the means for inserting and the means for withdrawing to accommodate pressure fluctuations.
- 20. An apparatus for providing rapid compression to at least one appendage, the apparatus comprising:
an inflatable sleeve for receiving an appendage, the inflatable sleeve having a plurality of sections, each of the sections having a respective section volume for receiving a gas, the gas within each of the sections having a pressure that is applied to the appendage; at least one cylinder associated with a respective one of the sections, each of the at least one cylinder having a first end and a second end; at least one piston, each of the at least one piston movably positioned within a respective one of the at least one cylinder between the first end and the second end to define a pressure cavity within the respective cylinder between the piston and the second end of the cylinder, the pressure cavity having a cavity volume for receiving the gas, the pressure cavity being coupled to a respective section of the inflatable sleeve such that altering the cavity volume by moving the piston alters the pressure of the gas within the section volume of the respective section; at least one piston driver, each of the at least one piston driver coupled to a respective one of the at least one piston, each of the at least one piston driver configured to position the respective piston within the respective cylinder responsive to a control signal; and a controller coupled to the at least one piston driver, the controller configured to generate the control signals for positioning the at least one piston within the respective at least one cylinder to independently control the pressure of the gas within the section volumes of each of the inflatable sleeve sections; wherein the pressure of the gas within each section is increased by inserting the respective at least one piston into the respective at least one cylinder to decrease the cavity volume and the pressure is decreased by withdrawing the respective at least one piston from the respective at least one cylinder to increase the cavity volume.
- 21. The apparatus of claim 20, wherein the controller is configured to delay one of the at least one pistons within a respective one of the at least one cylinder with respect to another piston and respective cylinder.
- 22. An apparatus for providing rapid compression to at least one appendage, the apparatus comprising:
an inflatable sleeve for receiving an appendage, the inflatable sleeve having a plurality of sections, each of the sections having a respective section volume for receiving a gas, the gas within each of sections having a pressure that is applied to the appendage; a cylinder having a first end and a second end; a piston movably positioned within the cylinder between the first end and the second end to define a pressure cavity within the cylinder between the piston and the second end of the cylinder, the pressure cavity having a cavity volume for receiving the gas; a plurality of valves, each of the plurality of valves coupled between the pressure cavity and a respective one of the plurality of sections, the plurality of valves configured to selectively couple the plurality of sections to the pressure cavity responsive to one or more valve control signals; a piston driver coupled to the piston, the piston driver configured to position the piston within the cylinder responsive to a piston control signal; and a controller coupled to the piston driver, the controller configured to generate the control signal and the one or more valve control signals to independently control the pressure of the gas within the section volumes of each of the inflatable sleeve sections; wherein the pressure of the gas in each section is increased by inserting the piston into the cylinder with the respective valve open to decrease the second volume and the pressure is decreased by withdrawing the piston from the cylinder with the respective valve open to increase the second volume.
- 23. The apparatus of claim 22, wherein the controller is configured to delay opening and/or closing one of the plurality of valves with respect to another of the plurality of valves.
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] This application claims the benefit of the filing date of provisional application No. 60/479,315 entitled “RAPID COMPRESSION APPARATUS AND METHOD” filed Jun. 18, 2003, the contents of which are incorporated herein by reference.
Provisional Applications (1)
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Number |
Date |
Country |
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60479315 |
Jun 2003 |
US |