Department of Materials and Human Environmental Sciences, Faculty of Engineering, Shonan Institute of Technology, Fujisawa, Japan.
Department of Clinical Engineering, School of Allied Health Science, Kitasato University, Sagamihara, Japan.
J Med Syst. 2024 Aug 5;48(1):72. doi: 10.1007/s10916-024-02096-6.
Wireless medical telemetry systems (WMTSs) are typical radio communication-based medical devices that monitor various biological parameters, such as electrocardiograms and respiration rates. In Japan, the assigned frequency band for WMTSs is 400 MHz. However, the issues accounting for poor reception in WMTS constitute major concerns. In this study, we analyzed the effects of electromagnetic interferences (EMIs) caused by other radio communication systems, the intermodulation (IM) effect, and noises generated from electrical devices on WMTS and discussed their management. The 400-MHz frequency band is also shared by other radio communication systems. We showed the instantaneous and impulsive voltages generated from the location-detection system for wandering patients and their potential to exhibit EMI effects on WMTS. Further, we presented the IM effect significantly reduces reception in WMTS. Additionally, the electromagnetic noises generated from electrical devices, such as light-emitting diode lamps and security cameras, can exceed the 400 MHz frequency band as these devices employ the switched-mode power supply and/or central processing unit and radiate wideband emissions. Moreover, we proposed and evaluated simple and facile methods using a simplified spectrum analysis function installed in the WMTS receiver and software-defined radio for evaluating the electromagnetic environment.
无线医疗遥测系统 (WMTS) 是一种基于无线电通信的医疗设备,用于监测各种生物参数,如心电图和呼吸率。在日本,WMTS 的指定频段为 400MHz。然而,WMTS 接收不良的问题引起了人们的关注。本研究分析了其他无线电通信系统引起的电磁干扰 (EMI)、互调 (IM) 效应以及电气设备产生的噪声对 WMTS 的影响,并讨论了它们的管理措施。400MHz 频段也被其他无线电通信系统共享。我们展示了漫游患者位置检测系统产生的瞬时和脉冲电压及其对 WMTS 产生 EMI 效应的可能性。此外,IM 效应会显著降低 WMTS 的接收效果。此外,发光二极管灯和安全摄像头等电气设备产生的电磁噪声可能会超过 400MHz 频段,因为这些设备采用开关电源和/或中央处理器,并辐射宽带发射。最后,我们提出并评估了使用 WMTS 接收器中安装的简化频谱分析功能和软件定义无线电的简单易用的方法,用于评估电磁环境。