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Driving pump regulation and control system and method for artificial lung

A control system and artificial lung technology, applied in the fields of application, medical equipment, medical science, etc., to achieve the effect of stable operation and compact design

Inactive Publication Date: 2020-12-04
王艳苓
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0006] In order to solve the related technical problems in the prior art, the present invention provides a driving pump control system and method for artificial lungs, which can replace the previous manually adjusted power adjustment mechanism of artificial lung driving pumps. The adaptive and dynamic adjustment mechanism of human body volume, so that the use of artificial lungs can better meet the individual needs of different human bodies

Method used

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Embodiment Construction

[0029] Embodiments of the system and method for regulating the drive pump for artificial lungs of the present invention will be described in detail below.

[0030] Artificial lung, also known as oxygenator or gas exchanger, is an artificial organ that replaces human lungs to expel carbon dioxide, absorb oxygen, and perform gas exchange. In the past, extracorporeal circulation, which was only used in heart surgery, needed to be combined with a blood pump, which was called an artificial heart-lung machine. In the early 1970s, the artificial lung was studied as a separate artificial organ. Because it can perform partial respiratory support without a blood pump, and there are experimental reports of implanted artificial lungs. Therefore, the American Society for Artificial Organs (ASAIO) has a dedicated group every year to discuss the progress of artificial lungs.

[0031] Most of the artificial lungs currently used in heart surgery are single-use bubbling artificial lungs with ...

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Abstract

The invention relates to a driving pump regulation and control system for an artificial lung. The driving pump regulation and control system comprises a blood pressure measurement mechanism disposed on a human body to which the artificial lung is applied, and used for detecting the real-time blood pressure of the human body; a driving pump which is used for providing power for blood exchange of the artificial lung and realizing numerical value change operation on the provided power based on the received human body detection volume and the real-time blood pressure; and a micro capturing mechanism which is arranged above a power supply box of the artificial lung and is used for carrying out camera shooting operation on the human body to which the artificial lung is applied to obtain an instant captured image. The invention further relates to a driving pump regulation and control method for the artificial lung. The driving pump regulation and control system and method for the artificial lung are stable in operation and compact in design. Due to the fact that a power adjusting mechanism of an artificial lung driving pump which is manually adjusted in the past can be replaced, a self-adaptive dynamic adjusting mechanism based on the human body blood pressure and the human body size is adopted, and the use of the artificial lung can better meet the individual requirements of different human bodies.

Description

technical field [0001] The invention relates to the field of lung treatment equipment, in particular to a driving pump control system and method for artificial lungs. Background technique [0002] The blunt upper end of the lung is called the lung apex, which protrudes upwards through the upper thorax into the root of the neck. The base is located on the top of the diaphragm. The entrance and exit of lymphatic vessels and nerves are called hilum, and these structures that enter and exit the hilum are wrapped together by connective tissue and are called lung roots. The left lung is divided into upper and lower lobes by an oblique fissure, and the right lung is divided into upper, middle and lower lobes by a horizontal fissure in addition to the oblique fissure. [0003] The lungs are based on the bronchial tree formed by the repeated branching of the bronchi. [0004] The left and right bronchi are divided into second-order bronchi at the hilum, and the area under the juris...

Claims

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Application Information

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IPC IPC(8): A61M16/00A61B5/107
CPCA61B5/1073A61B5/1079A61M16/0057A61M2205/33A61M2230/30A61M16/0003A61M2230/005
Inventor 王艳苓
Owner 王艳苓
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