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急性卒中中的有效脑内连接性:一项经颅磁刺激-脑电图研究

Effective Intracerebral Connectivity in Acute Stroke: A TMS-EEG Study.

作者信息

Tecchio Franca, Giambattistelli Federica, Porcaro Camillo, Cottone Carlo, Mutanen Tuomas P, Pizzella Vittorio, Marzetti Laura, Ilmoniemi Risto J, Vernieri Fabrizio, Rossini Paolo Maria

机构信息

Laboratory of Electrophysiology for Translational Neuroscience (LET'S), Institute for Cognitive Sciences and Technologies (ISTC), National Research Council of Italy (CNR), 00185 Rome, Italy.

Department of Clinical Neurology, University Campus Bio-Medico, 00128 Rome, Italy.

出版信息

Brain Sci. 2023 Jan 30;13(2):233. doi: 10.3390/brainsci13020233.

Abstract

Stroke is a major cause of disability because of its motor and cognitive sequelae even when the acute phase of stabilization of vital parameters is overcome. The most important improvements occur in the first 8-12 weeks after stroke, indicating that it is crucial to improve our understanding of the dynamics of phenomena occurring in this time window to prospectively target rehabilitation procedures from the earliest stages after the event. Here, we studied the intracortical excitability properties of delivering transcranial magnetic stimulation (TMS) to the primary motor cortex (M1) of left and right hemispheres in 17 stroke patients who suffered a mono-lateral left hemispheric stroke, excluding pure cortical damage. All patients were studied within 10 days of symptom onset. TMS-evoked potentials (TEPs) were collected via a TMS-compatible electroencephalogram system (TMS-EEG) concurrently with motor-evoked responses (MEPs) induced in the contralateral first dorsal interosseous muscle. Comparison with age-matched healthy volunteers was made by collecting the same bilateral-stimulation data in nine healthy volunteers as controls. Excitability in the acute phase revealed relevant changes in the relationship between left lesioned and contralesionally right hemispheric homologous areas both for TEPs and MEPs. While the paretic hand displayed reduced MEPs compared to the non-paretic hand and to healthy volunteers, TEPs revealed an overexcitable lesioned hemisphere with respect to both healthy volunteers and the contra-lesion side. Our quantitative results advance the understanding of the impairment of intracortical inhibitory networks. The neuronal dysfunction most probably changes the excitatory/inhibitory on-center off-surround organization that supports already acquired learning and reorganization phenomena that support recovery from stroke sequelae.

摘要

中风是导致残疾的主要原因,因为即使度过了生命体征稳定的急性期,它仍会留下运动和认知后遗症。最重要的改善发生在中风后的前8 - 12周,这表明加深我们对这个时间窗口内发生现象动态变化的理解,对于在事件发生后尽早前瞻性地确定康复程序至关重要。在此,我们研究了17例单侧左半球中风(不包括单纯皮质损伤)患者左右半球初级运动皮层(M1)经颅磁刺激(TMS)的皮质内兴奋性特性。所有患者均在症状发作后10天内接受研究。通过与TMS兼容的脑电图系统(TMS - EEG)收集TMS诱发电位(TEP),同时记录对侧第一背侧骨间肌诱发的运动诱发电位(MEP)。通过收集9名健康志愿者作为对照的相同双侧刺激数据,与年龄匹配的健康志愿者进行比较。急性期的兴奋性显示,无论是TEP还是MEP,左损伤半球与对侧右半球同源区域之间的关系都发生了相关变化。与非瘫痪手和健康志愿者相比,瘫痪手的MEP降低,而TEP显示,与健康志愿者和对侧相比,损伤半球过度兴奋。我们的定量结果推进了对皮质内抑制网络损伤的理解。神经元功能障碍很可能改变了兴奋性/抑制性的中心兴奋外周抑制组织,而这种组织支持已经获得的学习和重组现象,这些现象有助于从中风后遗症中恢复。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a7ee/9954230/ed0af6954204/brainsci-13-00233-g001.jpg

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