Pulsation type double-haematodocha heart auxiliary circulation device

A technology of cardiac assistance and circulatory device, applied in medical science, prosthesis, etc., can solve the problems of inability to real-time monitoring, short service life, inconvenient to move, etc., and achieve the effect of eliminating cross infection

Inactive Publication Date: 2010-06-23
RUIJIN HOSPITAL AFFILIATED TO SHANGHAI JIAO TONG UNIV SCHOOL OF MEDICINE
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0005] (1) Pneumatic power is used, resulting in large air source equipment, high noise, and inconvenient movement;
[0006] (2) Without a control device, it is not convenient to adjust the working state of the cardiac assisted circulation device, and it cannot be monitored in real time;
[0007] (3) There is no sensor system involved, and the pulsating pump cannot be synchronized with the natural frequency of the human bo

Method used

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  • Pulsation type double-haematodocha heart auxiliary circulation device
  • Pulsation type double-haematodocha heart auxiliary circulation device

Examples

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Effect test

Embodiment 1

[0031] Please see attached figure 1, a pulsating double-sac cardiac assisted circulation device, at least including a casing 8, a valve 6, a pipeline 20, a blood bag, two hydraulic chambers are arranged in the blood pump casing, each hydraulic chamber has a spherical blood bag, It is the first blood bag 1 and the second blood bag 2, and a baffle plate is provided between each blood bag and the casing 8, and the first baffle plate 10 is between the first blood bag 1 and the casing 8, and the second Between the blood bag 2 and the casing 8 is the second barrier 11; the first blood bag 1 is connected to the blood vessel 3 through the valve 5, and the first blood bag 1 passes through the one-way valve 7 in the center of the partition 9 in the middle of the blood pump casing 8 It is connected with the second blood bag 2, and the second blood bag 2 is connected with the outlet vessel 4 through the valve 6; between the first blood bag 1 and the blood pump shell 8 is a first cavity, a...

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Abstract

The invention discloses a pulsation type double-haematodocha heart auxiliary circulation device. Two hydraulic chambers are arranged in a blood pump shell, a first haematodocha is connected with a second haematodocha through a one-way valve in the center of a baffle at the middle part of the blood pump shell, a first cavity is arranged between the first haematodocha and the blood pump shell, a hydraulic nozzle is arranged outside the first cavity and is communicated with a first pressure cavity through a pipeline, a second cavity is arranged between the second haematodocha and the blood pump shell, a hydraulic nozzle is arranged outside the second cavity and is communicated with a second pressure cavity through a pipeline, a piston is arranged between the first pressure cavity and the second pressure cavity and is connected with a silk pole mechanism installed on a servo motor through a connecting rod, and an embedded computer is respectively connected with a display and an operation keyboard. The invention has the advantages of lightening the heart load, lowering the myocardial oxygen consumption, enhancing the blood pressure in distole, promoting the cardiac pumping function, providing restoring environment to myocardial cells, stable work, reliable running, simple device and convenient operation.

Description

【Technical field】 [0001] The invention relates to the field of cardiac assisting devices, in particular to a pulsating double-vessel cardiac assisting circulation device. 【Background technique】 [0002] Coronary artery disease, myocarditis, hypertension, and various types of cardiomyopathy often lead to decreased cardiac function and congestive heart failure. The therapeutic effect of internal medical drug therapy on such diseases is very limited, and most of them cannot effectively prolong the patient's life. In the field of surgical treatment, heart transplantation is currently a relatively successful technology, but there are 10 million patients with heart failure in China every year, of which 2 to 3 million die from heart failure, but only nearly 200 patients have the opportunity to receive it every year. Heart transplant. It can be seen from this that heart transplantation is far from meeting the needs of heart failure patients, and exploring new treatment methods has...

Claims

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Application Information

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IPC IPC(8): A61M1/10
Inventor 臧旺福周健孙木潘钢
Owner RUIJIN HOSPITAL AFFILIATED TO SHANGHAI JIAO TONG UNIV SCHOOL OF MEDICINE
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