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深部脑刺激对帕金森病的影响在脑电图微状态中得以体现。

The effect of deep brain stimulation in Parkinson's disease reflected in EEG microstates.

作者信息

Lamoš Martin, Bočková Martina, Goldemundová Sabina, Baláž Marek, Chrastina Jan, Rektor Ivan

机构信息

Brain and Mind Research Program, Central European Institute of Technology, Masaryk University, Brno, Czech Republic.

Movement Disorders Center, First Department of Neurology, Masaryk University School of Medicine, St. Anne's Hospital, Brno, Czech Republic.

出版信息

NPJ Parkinsons Dis. 2023 Apr 17;9(1):63. doi: 10.1038/s41531-023-00508-x.

Abstract

Mechanisms of deep brain stimulation (DBS) on cortical networks were explored mainly by fMRI. Advanced analysis of high-density EEG is a source of additional information and may provide clinically useful biomarkers. The presented study evaluates EEG microstates in Parkinson's disease and the effect of DBS of the subthalamic nucleus (STN). The association between revealed spatiotemporal dynamics of brain networks and changes in oscillatory activity and clinical examination were assessed. Thirty-seven patients with Parkinson's disease treated by STN-DBS underwent two sessions (OFF and ON stimulation conditions) of resting-state EEG. EEG microstates were analyzed in patient recordings and in a matched healthy control dataset. Microstate parameters were then compared across groups and were correlated with clinical and neuropsychological scores. Of the five revealed microstates, two differed between Parkinson's disease patients and healthy controls. Another microstate differed between ON and OFF stimulation conditions in the patient group and restored parameters in the ON stimulation state toward to healthy values. The mean beta power of that microstate was the highest in patients during the OFF stimulation condition and the lowest in healthy controls; sources were localized mainly in the supplementary motor area. Changes in microstate parameters correlated with UPDRS and neuropsychological scores. Disease specific alterations in the spatiotemporal dynamics of large-scale brain networks can be described by EEG microstates. The approach can reveal changes reflecting the effect of DBS on PD motor symptoms as well as changes probably related to non-motor symptoms not influenced by DBS.

摘要

深部脑刺激(DBS)对皮质网络的作用机制主要通过功能磁共振成像(fMRI)进行探索。对高密度脑电图(EEG)的高级分析是额外信息的来源,可能会提供具有临床应用价值的生物标志物。本研究评估了帕金森病患者的脑电图微状态以及丘脑底核(STN)的DBS效应。评估了所揭示的脑网络时空动态与振荡活动变化及临床检查之间的关联。37例接受STN-DBS治疗的帕金森病患者进行了两次静息态脑电图检查(分别处于刺激关闭和刺激开启状态)。对患者记录以及匹配的健康对照数据集进行了脑电图微状态分析。然后比较了各组之间的微状态参数,并将其与临床和神经心理学评分相关联。在所揭示的五种微状态中,有两种在帕金森病患者和健康对照之间存在差异。患者组中,另一种微状态在刺激开启和刺激关闭条件下有所不同,且在刺激开启状态下参数恢复到接近健康值。该微状态的平均β功率在刺激关闭条件下的患者中最高,在健康对照中最低;其来源主要定位于辅助运动区。微状态参数的变化与统一帕金森病评定量表(UPDRS)和神经心理学评分相关。脑电图微状态可以描述大规模脑网络时空动态中疾病特异性的改变。该方法可以揭示反映DBS对帕金森病运动症状影响的变化,以及可能与不受DBS影响的非运动症状相关的变化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e5df/10110608/07ff6f60e2f1/41531_2023_508_Fig1_HTML.jpg

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