Balloon counterpulsation driven mechanical auxiliary circulating device with valves
A balloon counterpulsation and mechanically assisted technology, applied in the field of medical devices, can solve the problems of lack of mature products, patient phagocytosis, lack of doctors, etc., achieving good biocompatibility, simple manufacturing process, and ensuring unidirectional flow of blood. Effect
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Embodiment 1
[0047] see figure 1 Shown is a specific embodiment of a balloon counterpulsation-driven mechanically assisted circulation device with valves described in this application. The mechanically assisted circulation device includes: a drainage pipeline 10, an input valve 20, and a balloon counterpulsation system , a blood storage chamber 60, an output valve 70 and an infusion line 80, wherein,
[0048] The balloon counterpulsation system includes: a control system 40, an alarm system 50 and a balloon 30, the balloon 30 is connected with the control system 40 and the alarm system 50 through a balloon catheter 31, the balloon 30 is filled with a working medium, the working medium is gas or liquid, the volume of the balloon 30 is 0.1ml to 500ml, and the counterpulsation frequency of the balloon 30 is 1 beat / min to 100000 beats / min, so The counterpulsation pressure of the balloon 30 is 1 mmHg to 300 mmHg;
[0049] The balloon 30 is located in the blood storage chamber 60, and the two ...
Embodiment 2
[0066] The application examples of applying the mechanical assisted circulatory device of the present application to the extracorporeal mechanical assisted circulatory device are provided below, see figure 2 .
[0067] exist figure 1 On the basis of the illustrated embodiment, when the input valve 20, the balloon 30, the blood storage chamber 60 and the output valve 70 are placed outside the body, the input end of the drainage circuit 10 is connected to To the vein or right atrium, the output end of the drainage line 10 is connected to the blood storage chamber 60 through the input valve 20, the blood storage chamber 60 is connected to the infusion line 80 through the output valve 70, and the output end of the infusion line 80 is connected to vein or artery. From the drainage line 10 to the infusion line 80, the blood flow direction can be from vein to vein, or from vein to artery, for example, the input end of the drainage line 10 can be connected to jugular vein, femoral ...
Embodiment 3
[0073] The following provides an application example of applying the mechanical assisted circulatory device of the present application to the internal mechanical assisted circulatory device-left ventricular balloon counterpulsation system, see image 3 .
[0074] On the basis of the above-mentioned embodiment 1, when the input valve 20, the balloon 30, the blood storage chamber 60 and the output valve 70 are placed in the body, the input valve 20, the balloon 30 , the blood storage chamber 60 and the output valve 70 are located in the left ventricle or the aorta, the drainage pipeline 10 is located in the left ventricle through the aortic valve orifice, and the infusion pipeline 80 is connected to the aorta, The infusion line 80 is located in the aorta to infuse blood into the aorta.
[0075] In this embodiment, the drainage pipeline 10 enters the left ventricle across the aortic valve, and the other end of the drainage pipeline 10 is connected to the blood storage chamber 60...
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