Ogirala Ajay, Stachel Joshua R, Mickle Marlin H
RFID Center of Excellence, Department of Electrical and Computer Engineering, University of Pittsburgh, Pittsburgh, PA15261, USA.
IEEE Trans Inf Technol Biomed. 2011 Nov;15(6):848-53. doi: 10.1109/TITB.2011.2163640. Epub 2011 Sep 15.
Increasing density of wireless communication and development of radio frequency identification (RFID) technology in particular have increased the susceptibility of patients equipped with cardiac rhythmic monitoring devices (CRMD) to environmental electro magnetic interference (EMI). Several organizations reported observing CRMD EMI from different sources. This paper focuses on mathematically analyzing the energy as perceived by the implanted device, i.e., voltage. Radio frequency (RF) energy transmitted by RFID interrogators is considered as an example. A simplified front-end equivalent circuit of a CRMD sensing circuitry is proposed for the analysis following extensive black-box testing of several commercial pacemakers and implantable defibrillators. After careful understanding of the mechanics of the CRMD signal processing in identifying the QRS complex of the heart-beat, a mitigation technique is proposed. The mitigation methodology introduced in this paper is logical in approach, simple to implement and is therefore applicable to all wireless communication protocols.
无线通信密度的不断增加,尤其是射频识别(RFID)技术的发展,增加了配备心脏节律监测设备(CRMD)的患者对环境电磁干扰(EMI)的易感性。几个组织报告观察到来自不同来源的CRMD电磁干扰。本文重点对植入设备所感知的能量,即电压进行数学分析。以RFID询问器发射的射频(RF)能量为例。在对几种商用起搏器和植入式除颤器进行广泛的黑盒测试后,提出了一种简化的CRMD传感电路前端等效电路用于分析。在仔细了解CRMD信号处理识别心跳QRS波群的机制后,提出了一种缓解技术。本文介绍的缓解方法在方法上合乎逻辑,易于实施,因此适用于所有无线通信协议。