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首页> 外文期刊>Journal of medical engineering & technology >A methodological approach for the characterization of cardiac pacemaker immunity to low frequency interferences: case of 50 Hz, 60 Hz, 10 kHz and 25 kHz led disruptions.
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A methodological approach for the characterization of cardiac pacemaker immunity to low frequency interferences: case of 50 Hz, 60 Hz, 10 kHz and 25 kHz led disruptions.

机译:一种表征心脏起搏器对低频干扰的免疫性的方法学方法:50 Hz,60 Hz,10 kHz和25 kHz导致led干扰的情况。

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摘要

The goal of this work is the implementation of a metrological set up dedicated to the characterization of cardiac pacemakers' immunity at low frequency electromagnetic disruptions. The studied frequencies are 50 Hz, 60 Hz, 10 kHz and 25 kHz. The assessment methodology that is applied is in accord with the electromagnetic compatibility. The tests are carried out on single-chamber pacemakers. The first approach, consisting of the application of the interfering signal directly between the housing and the electrode, enabled us to point out the influence of a preset detection sensitivity on the signal levels induced between the terminal and the pacemaker's housing. These attempts are completed by in vitro tests using an electromagnetic model which allows one to take into account the interface which constitutes the human body, and thus to get closer to a real life situation. The visualization of the pacemaker generated signal illustrates the performance of the pacemaker according to different test configurations. It is an initial approach meant to create a base for the creation of a metrological protocol.
机译:这项工作的目标是实施专门用于表征心脏起搏器在低频电磁干扰下的免疫力​​的计量学设置。研究的频率为50 Hz,60 Hz,10 kHz和25 kHz。所采用的评估方法符合电磁兼容性。测试在单腔起搏器上进行。第一种方法包括直接在外壳和电极之间施加干扰信号,使我们能够指出预设的检测灵敏度对端子和起搏器外壳之间感应的信号电平的影响。这些尝试是通过使用电磁模型进行的体外测试完成的,该电磁模型允许人们考虑构成人体的界面,从而更接近现实生活中的情况。起搏器生成信号的可视化显示了根据不同测试配置的起搏器性能。这是一种初始方法,旨在为创建计量协议创建基础。

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