Aspiration pump for removal of fluids, blood clots and other materials from human body
A suction pump system for aspirating fluids and other materials from a human body comprises a power source, an aspiration pump, and an electrical motor coupled to the power source and the aspiration pump, wherein the aspiration pump is pulsed at a frequency below 100 Hz.
1. A aspiration pump system that provides vacuum suction flows in one direction for removing fluids and materials from a human body comprising:
a power source;
a diaphragm aspiration pump having an inlet to aspirate fluids and other materials into the pump and an outlet to remove fluids and other materials from the pump; and
an electrical motor coupled to the power source and to the pump; wherein the pump is a uni-directional flow pump, and wherein the power source is pulsed repeatedly on and off to cause step-up increase in suction pressure of the pump while suction pressure increases.
2. The pump system of claim 1 , wherein step-up increase in suction pressure continues until the pump reaches a pressure of up to 29.5 inHg.
3. The pump system of claim 2 , wherein the pump suction pressure continues to be at up to 29.5 inHg aspiration pressure if the inlet of the pump is blocked and there is no flow of fluids or other material through the pump.
4. The pump system of claim 2 , wherein the pump pressure of up to 29.5 inHg fluctuates to sustain flow of material to be removed if the inlet of the pump is cleared, and fluids and other materials continue to flow into the pump and out of the pump.
5. The pump system of claim 1 , wherein a voltage provided to the motor from the power source is pulsed on/off at a frequency between 1-100 Hz.
6. The pump system of claim 1 , wherein the aspiration pressure of the pump is pulsed on/off at a frequency between 1-100 Hz.
7. The pump system of claim 1 , wherein a voltage from the power source is pulsed by an electrical circuit.
8. The pump system of claim 1 , wherein the power source is one of the following: a battery, line power or combination of both.
9. The pump system of claim 1 , further including a collection bag attached to the outlet of the pump.
10. The pump system of claim 1 , further including an aspiration tube connected to the inlet of the pump.
11. The pump system of claim 10 , further including an aspiration catheter attached to the aspiration tube.
12. A method for removing fluids and materials from a human body comprising:
providing a pump system having:
a power source;
a diaphragm aspiration pump having an inlet to aspirate fluids and other materials into the pump and an outlet to remove fluids and other materials from the pump; and
an electrical motor coupled to the power source and to the pump; and
providing a voltage to the motor from the power source which is pulsed repeatedly on and off to cause a step-up increase in suction pressure while suction pressure increases.
13. The method of claim 12 , wherein the step-up increase in suction pressure continues until the pump reaches up to 29.5 inHg aspiration pressure.
14. The method of claim 13 , wherein the pump suction pressure continues to be at up to 29.5 inHg aspiration pressure if the inlet of the pump is blocked and there is no flow of fluids or other material through the pump.
15. The method of claim 13 , wherein the 29.5 inHg aspiration pressure fluctuates if the inlet of the pump is cleared, and fluids and other materials continue to flow into the pump and out of the pump.
16. The method of claim 12 , wherein fluids and materials that are removed from the human body include: blood, saline, blood clots, atherosclerotic plug, tissue, other debris, or combination of all.
17. The method of claim 12 , wherein a voltage provided to the motor from the power source is pulsed on/off at a frequency between 1-100 Hz.
18. The method of claim 12 , wherein the aspiration pressure of the pump is pulsed on/off at a frequency between 1-100 Hz.