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A Contactless Sensor for Pacemaker Pulse Detection: Design Hints and Performance Assessment

机译:用于起搏器脉冲检测的非接触式传感器:设计提示和性能评估

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摘要

Continuous monitoring of pacemaker activity can provide valuable information to improve patients’ follow-up. Concise information is stored in some types of pacemakers, whereas ECG can provide more detailed information, but requires electrodes and cannot be used for continuous monitoring. This study highlights the possibility of a continuous monitoring of pacemaker pulses by sensing magnetic field variations due to the current pulses. This can be achieved by means of a sensor coil positioned near the patient’s thorax without any need for physical contact. A simplified model of coil response to pacemaker pulses is presented in this paper, along with circuits suitable for pulse detection. In vitro tests were carried out using real pacemakers immersed in saline solution; experimental data were used to assess the accuracy of the model and to evaluate the sensor performance. It was found that the coil signal amplitude decreases with increasing distance from the pacemaker lead wire. The sensor was able to easily perform pacemaker spike detection up to a distance of 12 cm from the pacemaker leads. The stimulation rate can be measured in real time with high accuracy. Since any electromagnetic pulse triggers the same coil response, EMI may corrupt sensor measurements and thus should be discriminated.
机译:持续监测起搏器活动可以提供有价值的信息,以改善患者的随访情况。精确信息存储在某些类型的起搏器中,而ECG可以提供更详细的信息,但需要电极,不能用于连续监测。这项研究强调了通过检测电流脉冲引起的磁场变化来连续监测起搏器脉冲的可能性。这可以通过将传感器线圈放置在患者胸部附近而无需物理接触来实现。本文介绍了线圈对起搏器脉冲的简化模型,以及适用于脉冲检测的电路。使用浸入盐溶液中的真实起搏器进行体外测试;实验数据用于评估模型的准确性和评估传感器性能。发现线圈信号幅度随着距起搏器导线的距离的增加而减小。该传感器能够轻松地检测起搏器尖峰,距离起搏器导线12 cm。可以高精度地实时测量刺激率。由于任何电磁脉冲都会触发相同的线圈响应,因此EMI可能会破坏传感器的测量结果,因此应加以区分。

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