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清醒开颅术中用于皮质和皮质下映射的直接双极电刺激技术原理

Technical principles of direct bipolar electrostimulation for cortical and subcortical mapping in awake craniotomy.

作者信息

Pallud J, Mandonnet E, Corns R, Dezamis E, Parraga E, Zanello M, Spena G

机构信息

Department of Neurosurgery, Sainte-Anne Hospital, 1, rue Cabanis, 75674 Paris cedex 14, France; Paris Descartes University, Sorbonne Paris Cité, 75006 Paris, France.

Department of Neurosurgery, Lariboisière Hospital, 75475 Paris, France.

出版信息

Neurochirurgie. 2017 Jun;63(3):158-163. doi: 10.1016/j.neuchi.2016.12.004. Epub 2017 May 12.

Abstract

INTRODUCTION

Intraoperative application of electrical current to the brain is a standard technique during brain surgery for inferring the function of the underlying brain. The purpose of intraoperative functional mapping is to reliably identify cortical areas and subcortical pathways involved in eloquent functions, especially motor, sensory, language and cognitive functions.

MATERIAL AND METHODS

The aim of this article is to review the rationale and the electrophysiological principles of the use of direct bipolar electrostimulation for cortical and subcortical mapping under awake conditions.

RESULTS

Direct electrical stimulation is a window into the whole functional network that sustains a particular function. It is an accurate (spatial resolution of about 5mm) and a reproducible technique particularly adapted to clinical practice for brain resection in eloquent areas. If the procedure is rigorously applied, the sensitivity of direct electrical stimulation for the detection of cortical and subcortical eloquent areas is nearly 100%. The main disadvantage of this technique is its suboptimal specificity. Another limitation is the identification of eloquent areas during surgery, which, however, could have been functionally compensated postoperatively if removed surgically.

CONCLUSION

Direct electrical stimulation is an easy, accurate, reliable and safe invasive technique for the intraoperative detection of both cortical and subcortical functional brain connectivity for clinical purpose. In our opinion, it is the optimal technique for minimizing the risk of neurological sequelae when resecting in eloquent brain areas.

摘要

引言

在脑外科手术中,向脑部施加电流是推断脑深部功能的一项标准技术。术中功能图谱的目的是可靠地识别与明确功能相关的皮质区域和皮质下通路,尤其是运动、感觉、语言和认知功能。

材料与方法

本文旨在综述清醒状态下使用直接双极电刺激进行皮质和皮质下图谱绘制的基本原理和电生理原则。

结果

直接电刺激是了解维持特定功能的整个功能网络的一个窗口。它是一种准确(空间分辨率约为5毫米)且可重复的技术,特别适用于在明确区域进行脑切除的临床实践。如果严格执行该操作,直接电刺激检测皮质和皮质下明确区域的敏感性接近100%。该技术的主要缺点是其特异性欠佳。另一个局限性是在手术过程中识别明确区域,不过,如果通过手术切除,术后这些区域可能会在功能上得到代偿。

结论

直接电刺激是一种简便、准确、可靠且安全的侵入性技术,用于术中检测皮质和皮质下功能性脑连接,以达到临床目的。我们认为,在明确的脑区进行切除时,它是将神经后遗症风险降至最低的最佳技术。

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