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强直刺激后经颅运动诱发电位增强了受神经支配和非神经支配肌肉记录的复合肌肉动作电位的振幅。

Post-tetanic transcranial motor evoked potentials augment the amplitude of compound muscle action potentials recorded from innervated and non-innervated muscles.

机构信息

Department of Orthopaedic Surgery, Nara Medical University, 840 Shijo-cho, Kashihara City, Nara 6348522, Japan.

Department of Anesthesiology, Nara Medical University, 840 Shijo-cho, Kashihara City, Nara 6348522, Japan.

出版信息

Spine J. 2018 May;18(5):740-746. doi: 10.1016/j.spinee.2017.08.249. Epub 2017 Sep 1.

Abstract

BACKGROUND CONTEXT

Transcranial electrical stimulation used to produce motor evoked potentials (TES-MEPs) and subsequent compound muscle action potential (CMAP) recording is widely used to monitor motor function during surgery when there is risk of damaging the spinal cord. Nonetheless, some muscles do not produce CMAP amplitudes sufficient for intraoperative monitoring.

PURPOSE

This study aimed to investigate the utility of tetanic stimulation at single and multiple peripheral nerve sites for augmenting CMAP amplitudes recorded from innervated and non-innervated muscles.

STUDY DESIGN/SETTING: A retrospective study was carried out.

PATIENT SAMPLE

The study sample comprised 24 patients with cervical myelopathy who underwent decompression surgery at our department between November 2005 and March 2007.

OUTCOME MEASURES

Compound muscle action potential amplitude was a physiological measure.

METHODS

We used two patterns of tetanic peripheral nerve stimulation for each patient. The first pattern consisted of tetanic stimulation of the left tibial nerve only (Pattern 1), and the second pattern consisted of tetanic stimulation of the bilateral median nerves and left tibial nerve (Pattern 2).

RESULTS

Compound muscle action potential amplitudes from all muscles were augmented by both tetanic stimulation patterns compared with conventional TES-MEP recording; however, Pattern 2 elicited the greatest augmentation of CMAP amplitudes, especially for CMAPs recorded from the bilateral abductor pollicis brevis muscles.

CONCLUSIONS

Although tetanic stimulation of a single peripheral nerve increased CMAP amplitudes recorded from both innervated and non-innervated muscles, CMAP amplitudes were best augmented when the corresponding nerve received tetanic stimulation. Additionally, tetanic stimulation of multiple nerves rather than a single nerve appears to provide better augmentation.

摘要

背景语境

经颅电刺激用于产生运动诱发电位(TES-MEPs)和随后的复合肌肉动作电位(CMAP)记录,广泛用于监测手术期间脊髓损伤风险时的运动功能。尽管如此,一些肌肉产生的 CMAP 幅度不足以进行术中监测。

目的

本研究旨在探讨单根和多根周围神经部位的强直刺激在增强受神经支配和非神经支配肌肉记录的 CMAP 幅度方面的效用。

研究设计/设置:这是一项回顾性研究。

患者样本

研究样本包括 24 例在我科接受颈椎脊髓病减压手术的患者,这些患者均于 2005 年 11 月至 2007 年 3 月期间接受手术。

结果测量

复合肌肉动作电位幅度是一种生理测量。

方法

我们对每位患者使用两种强直外周神经刺激模式。第一种模式仅包括左胫神经的强直刺激(模式 1),第二种模式包括双侧正中神经和左胫神经的强直刺激(模式 2)。

结果

与常规 TES-MEP 记录相比,两种强直刺激模式均增强了所有肌肉的 CMAP 幅度;然而,模式 2 引起的 CMAP 幅度增强最大,特别是对于双侧拇短展肌记录的 CMAP。

结论

虽然单根周围神经的强直刺激增加了受神经支配和非神经支配肌肉的 CMAP 幅度,但当相应神经接受强直刺激时,CMAP 幅度的增强最大。此外,与单一神经相比,多根神经的强直刺激似乎提供了更好的增强效果。

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