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多发性硬化症中的事件相关去同步和同步。

Event-related desynchronization and synchronization in multiple sclerosis.

机构信息

Univ Paris Est Créteil, Excitabilité Nerveuse et Thérapeutique (ENT), EA 4391, Créteil F-94010, France; Department of Clinical Neurophysiology, AP-HP, Henri Mondor University Hospital, DMU FIxIT, Creteil F-94010, France.

Univ Paris Est Créteil, Excitabilité Nerveuse et Thérapeutique (ENT), EA 4391, Créteil F-94010, France.

出版信息

Mult Scler Relat Disord. 2024 Jun;86:105601. doi: 10.1016/j.msard.2024.105601. Epub 2024 Apr 4.

Abstract

BACKGROUND

Motor preparation and execution can be impaired in patients with multiple sclerosis (pwMS). These neural processes can be assessed using electroencephalography (EEG). During a self-paced movement, EEG signal amplitude decreases before movement (event-related desynchronization, ERD) and increases after movement (event-related synchronization, ERS).

OBJECTIVE

To reappraise ERD/ERS changes in pwMS compared to healthy controls (HC).

METHODS

This single-center study included 13 pwMS and 10 sex/age-matched HC. 60-channel EEG was recorded during two self-paced movements of the right hand: a simple index finger extension task and a more complex finger tapping task. Clinical variables included MS type, sex, age, disease duration, disability, grip strength, fatigue and attentional performance. EEG variables included ERD and ERS onset latency, duration, and amplitude determined using two methods of signal analyses (based on visual or automated determination) in the alpha and beta frequency bands in five cortical regions: right and left frontocentral and centroparietal regions and a midline region. Neuroimaging variables included the volumes of four deep brain structures (thalamus, putamen, pallidum and caudate nucleus) and the relative lesion load.

RESULTS

ERD/ERS changes in pwMS compared to HC were observed only in the beta band. In pwMS, beta-ERD had a delayed onset in the midline and right parietocentral regions and a shortened duration or increased amplitude in the parietocentral region; beta-ERS had a shorter duration, delayed onset, or reduced amplitude in the left parieto/frontocentral region. In addition, pwMS with a more delayed beta-ERD in the midline region had less impaired executive functions but increased caudate nuclei volume, while pwMS with a more delayed beta-ERS in the parietocentral region contralateral to the movement had less fatigue but increased thalami volume.

CONCLUSION

This study confirms an alteration of movement preparation and execution in pwMS, mainly characterized by a delayed cortical activation (ERD) and a delayed and reduced post-movement inhibition (ERS) in the beta band. Compensatory mechanisms could be involved in these changes, associating more preserved clinical performance and overactivation of deep brain structures.

摘要

背景

多发性硬化症(pwMS)患者的运动准备和执行能力可能受损。这些神经过程可以通过脑电图(EEG)进行评估。在自我调节的运动过程中,运动前 EEG 信号幅度降低(事件相关去同步化,ERD),运动后增加(事件相关同步化,ERS)。

目的

重新评估 pwMS 与健康对照组(HC)相比 ERD/ERS 的变化。

方法

这项单中心研究纳入了 13 名 pwMS 和 10 名性别/年龄匹配的 HC。在两个右手自我调节运动过程中记录 60 通道 EEG:简单的食指伸展任务和更复杂的手指敲击任务。临床变量包括 MS 类型、性别、年龄、疾病持续时间、残疾、握力、疲劳和注意力表现。EEG 变量包括使用两种信号分析方法(基于视觉或自动确定)在五个皮质区域(右侧和左侧额中央和中央顶区以及中线区域)的 alpha 和 beta 频带中确定的 ERD 和 ERS 的起始潜伏期、持续时间和幅度。神经影像学变量包括四个深部脑结构(丘脑、壳核、苍白球和尾状核)的体积和相对病变负荷。

结果

与 HC 相比,pwMS 中仅在 beta 频带中观察到 ERD/ERS 变化。在 pwMS 中,中线和右侧顶中央区域的 beta-ERD 起始延迟,顶中央区域的持续时间缩短或幅度增加;左侧顶/额中央区域的 beta-ERS 持续时间缩短、起始延迟或幅度降低。此外,中线区域 beta-ERD 延迟更明显的 pwMS 执行功能受损程度较低,但尾状核体积较大,而对侧顶中央区域 beta-ERS 延迟更明显的 pwMS 疲劳程度较低,但丘脑体积较大。

结论

这项研究证实了 pwMS 运动准备和执行的改变,主要表现为 beta 频带中皮质激活延迟(ERD)和运动后抑制延迟和减少(ERS)。代偿机制可能参与了这些变化,与更保存的临床表现和深部脑结构的过度激活有关。

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