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Design and Evaluation of a Fully Implantable Control Unit for Blood Pumps

机译:完全植入式血泵控制单元的设计和评估

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摘要

As the number of donor hearts is limited while more and more patients suffer from end stage biventricular heart failure, Total Artificial Hearts become a promising alternative to conventional treatment. While pneumatic devices sufficiently supply the patients with blood flow, the patient's quality of life is limited by the percutaneous pressure lines and the size of the external control unit. This paper describes the development of the control unit of the ReinHeart, a fully implantable Total Artificial Heart. General requirements for any implantable control unit are defined from a technical and medical point of view: necessity of a Transcutaneous Energy Transmission, autonomous operation, safety, geometry, and efficiency. Based on the requirements, a prototype is designed; it incorporates a LiFePo4 battery pack with charger, a rectifier for transcutaneous energy transmission, the motor's driver electronics, and a microcontroller which monitors and controls all functions. In validation tests, the control unit demonstrated a stable operation on TET and battery supply and a safe switching from one supply to the other. The overall mean efficiency is 14% on TET and 22% on battery supply. The control unit is suitable for chronic animal trials of the ReinHeart.
机译:由于供体心脏的数量有限,而越来越多的患者患有末期双室性心力衰竭,因此全人工心脏已成为传统治疗的有希望的替代方法。尽管气动设备可以为患者提供足够的血流,但是患者的生活质量受到经皮压力管线和外部控制单元尺寸的限制。本文介绍了ReinHeart(完全可植入的全人工心脏)控制单元的开发。从技术和医学的角度定义了任何植入式控制单元的一般要求:透皮能量传输的必要性,自主操作,安全性,几何形状和效率。根据需求,设计了原型。它包括一个带充电器的LiFePo4电池组,一个用于经皮能量传输的整流器,电机的驱动器电子器件以及一个监视和控制所有功能的微控制器。在验证测试中,控制单元证明了TET和电池电源的稳定运行,并且可以安全地从一种电源切换到另一种电源。 TET的整体平均效率为14%,电池供电的整体平均效率为22%。该控制单元适用于ReinHeart的慢性动物试验。

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