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运动诱发电位术中监测中的电磁干扰及一种无线解决方案

Electromagnetic interference in intraoperative monitoring of motor evoked potentials and a wireless solution.

作者信息

Farajidavar Aydin, Seifert Jennifer L, Delgado Mauricio R, Sparagana Steven, Romero-Ortega Mario I, Chiao J-C

机构信息

Department of Electrical and Computer Engineering, New York Institute of Technology, Harry Schure Hall, Room #226B, Northern Blvd., Old Westbury, New York 11568-8000, USA.

Department of Bioengineering, University of Texas at Dallas, Dallas, Texas, USA.

出版信息

Med Eng Phys. 2016 Feb;38(2):87-96. doi: 10.1016/j.medengphy.2015.11.007. Epub 2015 Dec 8.

Abstract

Intraoperative neurophysiological monitoring (IONM) is utilized to minimize neurological morbidity during spine surgery. Transcranial motor evoked potentials (TcMEPs) are principal IONM signals in which the motor cortex of the subject is stimulated with electrical pulses and the evoked potentials are recorded from the muscles of interest. Currently available monitoring systems require the connection of 40-60 lengthy lead wires to the patient. These wires contribute to a crowded and cluttered surgical environment, and limit the maneuverability of the surgical team. In this work, it was demonstrated that the cumbersome wired system is vulnerable to electromagnetic interference (EMI) produced by operating room (OR) equipment. It was hypothesized that eliminating the lengthy recording wires can remove the EMI induced in the IONM signals. Hence, a wireless system to acquire TcMEPs was developed and validated through bench-top and animal experiments. Side-by-side TcMEPs acquisition from the wired and wireless systems in animal experiments under controlled conditions (absence of EMI from OR equipment) showed comparable magnitudes and waveforms, thus demonstrating the fidelity in the signal acquisition of the wireless solution. The robustness of the wireless system to minimize EMI was compared with a wired-system under identical conditions. Unlike the wired-system, the wireless system was not influenced by the electromagnetic waves from the C-Arm X-ray machine and temperature management system in the OR.

摘要

术中神经生理监测(IONM)用于在脊柱手术期间将神经并发症降至最低。经颅运动诱发电位(TcMEP)是主要的IONM信号,其中用电脉冲刺激受试者的运动皮层,并从感兴趣的肌肉记录诱发电位。目前可用的监测系统需要将40 - 60根长导线连接到患者身上。这些导线导致手术环境拥挤杂乱,并限制了手术团队的可操作性。在这项工作中,证明了笨重的有线系统容易受到手术室(OR)设备产生的电磁干扰(EMI)影响。据推测,消除长记录导线可以消除IONM信号中感应的EMI。因此,开发了一种用于获取TcMEP的无线系统,并通过台式和动物实验进行了验证。在受控条件下(不存在来自OR设备的EMI)的动物实验中,从有线和无线系统并行采集TcMEP,结果显示幅度和波形相当,从而证明了无线解决方案在信号采集方面的保真度。在相同条件下,将无线系统最小化EMI的稳健性与有线系统进行了比较。与有线系统不同,无线系统不受OR中C型臂X光机和温度管理系统发出的电磁波影响。

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