Claims
- 1. A method of withdrawing blood from a patient for use with a cardiopulmonary bypass system, comprising the steps of:
providing a venous cannula and a venting catheter, the venous cannula having a lumen and at least one opening in fluid communication with the lumen, the venting catheter also having a venting lumen with at least one opening in fluid communication with the venting lumen; inserting the venous cannula into a vein of a patient; passing the venting catheter through the patient's tricuspid and pulmonary valves; coupling the venous catheter and the venous cannula to a pump; and withdrawing blood from the patient through the lumen of the venous cannula and the venting lumen of the venting catheter using the pump.
- 2. The method of claim 1, further comprising the step of:
inserting an arterial cannula into an artery of the patient, the arterial cannula having a lumen; coupling the lumen of the arterial cannula to an outlet of the pump; and returning the blood to the patient through the lumen of the arterial cannula using the pump.
- 3. The method of claim 2, further comprising the step of:
fluidly coupling a blood storage element to the outlet of the pump; and selectively changing a volume of blood in the blood storage element.
- 4. The method of claim 1, wherein:
the providing step is carried out with the pump being a centrifugal pump.
- 5. The method of claim 1, further comprising:
inserting an aortic occlusion device into the patient; passing the aortic occlusion device through the patient so that an occluding member on the aortic occlusion device is positioned in the ascending aorta; expanding the occluding member so that the ascending aorta is occluded; delivering cardioplegic fluid through a lumen in the aortic occlusion device; coupling the lumen of the aortic occlusion device to the pump; and venting blood from the patient through the lumen in the aortic occlusion device using the pump.
- 6. A method of withdrawing and returning blood to a patient supported by a cardiopulmonary bypass system, comprising the steps of:
passing a first lumen and a second lumen through an opening in a patient's artery, the first lumen having an occluding member mounted thereto, the occluding member being movable between a collapsed condition and an expanded condition; inserting a venous cannula into a vein of the patient; coupling the venous cannula to a venous line; withdrawing blood from the patient through the venous cannula and the venous line; returning the blood to the patient through an arterial line coupled to the second lumen; positioning the occluding member in the patient's ascending aorta; expanding the occluding member to occlude the patient's ascending aorta delivering cardioplegic fluid through the first lumen to thereby arrest the patient's heart; providing a blood storage element having an inlet and an outlet; fluidly coupling the inlet of the blood storage element to the arterial line; and selectively changing a volume of blood in the blood storage element.
- 7. The method of claim 6, further comprising the step of:
providing a venting catheter; passing the venting catheter through the patient's tricuspid and pulmonary valves; and withdrawing blood from the patient using the venting catheter.
- 8. The method of claim 6, further comprising the steps of:
coupling the outlet of the blood storage element to the venous line.
- 9. The method of claim 8, wherein:
the withdrawing step is carried out with the venous cannula being coupled to a pump.
- 10. The method of claim 6, wherein:
the providing step is carried out with the first lumen and second lumen being carried by a single device.
- 11. The method of claim 6, wherein:
the passing step is carried out with the first lumen being slidable relative to the second lumen.
- 12. An endovascular bypass system, comprising:
an aortic occlusion device having a lumen and an occluding member, the occluding member being sized and configured to occlude a patient's ascending aorta; a venous cannula having a lumen for withdrawing blood from the patient; a manifold having first and second valves and first and second valve controls for controlling the first and second valves; a vent line extending between the lumen of the aortic occlusion device to the manifold; and a venous line extending from the venous cannula to the manifold; the first and second valves being positioned to regulate flows through the first and second lines, respectively.
- 13. The endovascular bypass system of claim 12, further comprising:
a pump having an inlet and an outlet; and an exit line which receives blood passing through the first and second valves, the exit line being fluidly coupled to the pump inlet.
- 14. The endovascular bypass system of claim 12, further comprising:
an arterial cannula having a lumen for returning oxygenated blood to the patient; an arterial line extending from the pump outlet to the lumen of the arterial cannula; and a blood storage device having an inlet line and an outlet line, the inlet line being coupled to the arterial line.
- 15. The endovascular bypass system of claim 14, wherein:
the outlet line of the blood storage element is coupled to the manifold; and the manifold having a third valve and a third valve controller for controlling the third valve, the third valve being positioned to regulate blood flow through the outlet line of the blood storage element.
- 16. The endovascular bypass system of claim 12, further comprising:
a bridge line extending between the arterial line and the second conduit.
- 17. A method of arresting a patient's heart and maintaining bypass support, comprising the steps of:
inserting a venous cannula into a vein of a patient; coupling the venous cannula to an inlet of a pump, the pump having an outlet; withdrawing blood from the patient through the venous cannula using the pump; fluidly coupling the outlet of the pump to an arterial cannula through an arterial line; returning blood to the patient through the arterial cannula; inserting an aortic occlusion device through an artery of the patient, the aortic occlusion device having an occluding member; expanding the occluding member in the patient's ascending aorta thereby occluding the ascending aorta; delivering cardioplegic fluid to the ascending aorta through a lumen in the aortic occlusion device; and coupling the lumen of the aortic occlusion device to the pump intake.
- 18. The method of claim 17, wherein:
the blood returning step is carried out with the aortic occlusion device passing through the arterial cannula.
- 19. The method of claim 17, wherein:
the arterial cannula and aortic occlusion device are integrally formed.
- 20. The method of claim 17, further comprising:
fluidly coupling the venous cannula and the arterial cannula with a bridge.
CROSS REFERENCE TO RELATED APPLICATIONS
[0001] This application is a division of co-pending application Ser. No. 08/789,223, filed Jan. 24, 1997, the complete disclosure of all of which is hereby incorporated herein by reference for all purposes.
Divisions (2)
|
Number |
Date |
Country |
Parent |
09401734 |
Sep 1999 |
US |
Child |
10193627 |
Jul 2002 |
US |
Parent |
08789223 |
Jan 1997 |
US |
Child |
09401734 |
Sep 1999 |
US |