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使用NIM®神经监测系统的直接运动诱发电位和皮质图谱:技术说明。

Direct motor evoked potentials and cortical mapping using the NIM® nerve monitoring system: A technical note.

作者信息

Bharadwaj Suparna, Haji Faizal, Hebb Matthew, Chui Jason

机构信息

Department of Anesthesia & Perioperative Medicine, Schulich School of Medicine and Dentistry, Western University, London, Ontario, Canada.

Department of Clinical Neurological Sciences (Neurosurgery), University of Western Ontario, London, Ontario, Canada.

出版信息

J Clin Neurosci. 2017 Apr;38:111-113. doi: 10.1016/j.jocn.2016.11.006. Epub 2016 Dec 22.

Abstract

Motor evoked potentials (MEPs) are commonly used to prevent neurological injury when operating in close proximity to the motor cortex or corticospinal pathway. We report a novel application of the NIM® nerve monitoring system (Medtronic@ NIM response 3.0) for intraoperative direct cortical (dc)-MEPs monitoring. A 69-year-old female patient presented with a 4month history of progressive left hemiparesis resulting from a large right sided posterior frontal meningioma that abutted and compressed the motor cortex. Motor cortical mapping and MEPs were indicated. The patient was anesthetized and maintained on total intravenous anesthetics. Compound muscle action potentials (CMAP) of the right upper limb were monitored using the NIM system. After a craniotomy was performed, we first used the Ojemann stimulator (monopolar) for dc-stimulation and then switched to use the monopolar nerve stimulator probe of the NIM system. The CMAP response was successfully elicited using the NIM stimulating probe (pulse width=250s, train frequency=7pulses/s, current=20mA). A gross total resection of the tumor was achieved with intermittent cortical mapping of MEPs. There were no intraoperative complications and the patient's motor function was preserved after the surgery. In this case, we reported the successful use of the NIM nerve monitoring system to elicit dc-MEPs under general anesthesia. The advantages of using this system include a simple set up and application, neurosurgeon familiarity, wide availability and lower cost. dc-MEPs can be achieved using the NIM system. We conclude that the NIM nerve monitoring system is a feasible alternative to standard neurophysiological monitoring systems.

摘要

运动诱发电位(MEPs)常用于在靠近运动皮层或皮质脊髓通路进行手术时预防神经损伤。我们报告了NIM®神经监测系统(美敦力NIM响应3.0)在术中直接皮层(dc)-MEPs监测中的一种新应用。一名69岁女性患者,因右侧额后大型脑膜瘤毗邻并压迫运动皮层,出现了4个月的进行性左侧偏瘫病史。需要进行运动皮层映射和MEPs检查。患者接受麻醉并维持全静脉麻醉。使用NIM系统监测右上肢的复合肌肉动作电位(CMAP)。开颅术后,我们首先使用奥杰曼刺激器(单极)进行dc刺激,然后改用NIM系统的单极神经刺激探头。使用NIM刺激探头(脉冲宽度=250μs,串刺激频率=7次脉冲/秒,电流=20mA)成功引出了CMAP反应。通过间歇性的MEPs皮层映射实现了肿瘤的大体全切。术中无并发症,术后患者运动功能得以保留。在本病例中,我们报告了在全身麻醉下成功使用NIM神经监测系统引出dc-MEPs。使用该系统的优点包括设置和应用简单、神经外科医生熟悉、可用性高和成本较低。使用NIM系统可以实现dc-MEPs。我们得出结论,NIM神经监测系统是标准神经生理监测系统的一种可行替代方案。

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