Department of Bioengineering, University of Texas at Arlington, 701 S. Nedderman Dr., Arlington, TX 76019, USA.
Ann Biomed Eng. 2011 Jan;39(1):517-23. doi: 10.1007/s10439-010-0152-x. Epub 2010 Sep 8.
Intraoperative neurophysiological monitoring (IONM) is commonly used as an attempt to minimize neurological morbidity from operative manipulations. The goal of IONM is to identify changes in the central and peripheral nervous system function prior to irreversible damage. Intraoperative monitoring also has been effective in localizing anatomical structures, including peripheral nerves and sensorimotor cortex, which helps guide the surgeon during dissection. As part of IONM, transcranial motor evoked potentials (TcMEPs), and somatosensory evoked potentials (SSEPs) are routinely monitored. However, current wired systems are cumbersome as the wires contribute to the crowded conditions in the operating room and in doing so not only it limits the maneuverability of the surgeon and assistants, but also places certain demand in the total anesthesia required during surgery, due to setup preoperative time needed for proper electrode placement, due to the number and length of the wires, and critical identification of the lead wires needed for stimulation and recording. To address these limitations, we have developed a wireless TcMEP IONM system as a first step toward a multimodality IONM system. Bench-top and animal experiments in rodents demonstrated that the wireless method reproduced with high fidelity, and even increased the frequency bandwidth of the TcMEP signals, compared to wired systems. This wireless system will reduce the preoperative time required for IONM setup, add convenience for surgical staff, and reduce wire-related risks for patients during the operation.
术中神经生理监测(IONM)常用于最大程度地降低手术操作引起的神经功能障碍。IONM 的目标是在中枢和外周神经系统功能发生不可逆损伤之前识别其变化。术中监测还可以有效地定位解剖结构,包括周围神经和感觉运动皮层,从而帮助外科医生在解剖过程中进行引导。作为 IONM 的一部分,经颅运动诱发电位(TcMEP)和体感诱发电位(SSEP)通常被监测。然而,目前的有线系统比较繁琐,因为这些电线会增加手术室的拥挤程度,不仅限制了外科医生和助手的操作灵活性,而且由于术前需要正确放置电极以设置系统,还对手术过程中所需的总麻醉量提出了一定的要求,这是由于电线的数量和长度以及刺激和记录所需的导联的识别。为了解决这些限制,我们开发了一种无线 TcMEP IONM 系统,作为迈向多模态 IONM 系统的第一步。在台式机和啮齿动物的动物实验中,与有线系统相比,无线方法能够高度逼真地再现 TcMEP 信号,甚至增加了其频率带宽。该无线系统将减少 IONM 设置所需的术前时间,为手术人员提供便利,并降低患者在手术过程中与电线相关的风险。