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植入颅内电极不会影响附近或相连脑区的尖峰信号或网络连通性。

Implanting intracranial electrodes does not affect spikes or network connectivity in nearby or connected brain regions.

作者信息

Conrad Erin C, Shinohara Russell T, Gugger James J, Revell Andrew Y, Das Sandhitsu, Stein Joel M, Marsh Eric D, Davis Kathryn A, Litt Brian

机构信息

Department of Neurology, University of Pennsylvania, Philadelphia, PA, USA.

Department of Biostatistics, Epidemiology, and Informatics, University of Pennsylvania, Philadelphia, PA, USA.

出版信息

Netw Neurosci. 2022 Jul 1;6(3):834-849. doi: 10.1162/netn_a_00248. eCollection 2022 Jul.

Abstract

To determine the effect of implanting electrodes on electrographic features of nearby and connected brain regions in patients with drug-resistant epilepsy, we analyzed intracranial EEG recordings from 10 patients with drug-resistant epilepsy who underwent implant revision (placement of additional electrodes) during their hospitalization. We performed automated spike detection and measured EEG functional networks. We analyzed the original electrodes that remained in place throughout the full EEG recording, and we measured the change in spike rates and network connectivity in these original electrodes in response to implanting new electrodes. There was no change in overall spike rate pre- to post-implant revision ((9) = 0.1, = 0.95). The peri-revision change in the distribution of spike rate and connectivity across electrodes was no greater than chance (Monte Carlo method, spikes: = 0.40, connectivity: = 0.42). Electrodes closer to or more functionally connected to the revision site had no greater change in spike rate or connectivity than more distant or less connected electrodes. Changes in electrographic features surrounding electrode implantation are no greater than baseline fluctuations occurring throughout the intracranial recording. These findings argue against an implant effect on spikes or network connectivity in nearby or connected brain regions.

摘要

为了确定植入电极对耐药性癫痫患者附近及相连脑区脑电图特征的影响,我们分析了10例耐药性癫痫患者在住院期间接受植入物翻修(额外电极放置)时的颅内脑电图记录。我们进行了自动棘波检测并测量了脑电图功能网络。我们分析了在整个脑电图记录过程中一直保留在位的原始电极,并测量了这些原始电极在植入新电极后的棘波率变化和网络连通性变化。植入物翻修前后的总体棘波率没有变化((9)=0.1,=0.95)。电极间棘波率和连通性分布在翻修前后的变化不大于随机情况(蒙特卡洛方法,棘波:=0.40,连通性:=0.42)。与翻修部位距离更近或功能连接更强的电极,其棘波率或连通性的变化并不比距离更远或连接较弱的电极更大。电极植入周围脑电图特征的变化不大于颅内记录过程中出现的基线波动。这些发现反对植入物对附近或相连脑区的棘波或网络连通性产生影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bdbe/9810371/6205837691ab/netn-06-834-g001.jpg

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