Intraoperative DBS targeting of the globus pallidus internus by using motor evoked potentials

IF 3.6 3区 医学 Q1 CLINICAL NEUROLOGY
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引用次数: 0

Abstract

Objectives

Target localization for deep brain stimulation (DBS) is a crucial step that influences the clinical benefit of the DBS procedure together with the reduction of side effects. In this work, we address the feasibility of DBS target localization in the globus pallidus internus (GPi) aided by intraoperative motor evoked potentials (MEP) with emphasis on the reduction of capsular side effects.

Material and methods

Micro-macroelectrode recordings were performed intraoperatively on 20 patients that underwent DBS treatment of the GPi (GPi-DBS). MEP were elicited intraoperatively by microelectrode stimulation during stereotactic DBS surgery. We studied the relationship between MEP thresholds and the internal capsule (IC) proximity.

Results

We found a significant correlation between intraoperative MEP thresholds and IC proximity.

Conclusions

We provide further evidence of the role of MEPs for DBS target localization in the GPi, which extends and confirms the usefulness of MEPs as previously reported by DBS target localization studies dealing with the subthalamic and thalamic nuclei. Our approach is advantageous in that it provides criteria to determine the DBS target without the need to rely on a patient's response while avoiding capsular effects.

利用运动诱发电位对苍白球内肌进行术中 DBS 靶向治疗
目的脑深部刺激(DBS)的靶点定位是影响 DBS 手术临床疗效和减少副作用的关键步骤。在这项工作中,我们利用术中运动诱发电位(MEP)辅助研究了在苍白球内肌(GPi)进行 DBS 目标定位的可行性,重点是减少囊性副作用。在立体定向 DBS 手术中,术中通过微电极刺激诱发 MEP。我们研究了 MEP 阈值与内囊(IC)邻近度之间的关系。结果我们发现术中 MEP 阈值与 IC 邻近度之间存在显著相关性。结论我们提供了 MEPs 在 GPi DBS 目标定位中的作用的进一步证据,这扩展并证实了 MEPs 的有用性,正如之前处理丘脑下核和丘脑核的 DBS 目标定位研究报告的那样。我们的方法的优势在于它提供了确定 DBS 目标的标准,无需依赖患者的反应,同时避免了囊膜效应。
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来源期刊
Journal of the Neurological Sciences
Journal of the Neurological Sciences 医学-临床神经学
CiteScore
7.60
自引率
2.30%
发文量
313
审稿时长
22 days
期刊介绍: The Journal of the Neurological Sciences provides a medium for the prompt publication of original articles in neurology and neuroscience from around the world. JNS places special emphasis on articles that: 1) provide guidance to clinicians around the world (Best Practices, Global Neurology); 2) report cutting-edge science related to neurology (Basic and Translational Sciences); 3) educate readers about relevant and practical clinical outcomes in neurology (Outcomes Research); and 4) summarize or editorialize the current state of the literature (Reviews, Commentaries, and Editorials). JNS accepts most types of manuscripts for consideration including original research papers, short communications, reviews, book reviews, letters to the Editor, opinions and editorials. Topics considered will be from neurology-related fields that are of interest to practicing physicians around the world. Examples include neuromuscular diseases, demyelination, atrophies, dementia, neoplasms, infections, epilepsies, disturbances of consciousness, stroke and cerebral circulation, growth and development, plasticity and intermediary metabolism.
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