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脑状态依赖的皮质-皮质配对联想刺激诱导的半球间运动皮质连接可塑性

Plasticity of interhemispheric motor cortex connectivity induced by brain state-dependent cortico-cortical paired-associative stimulation.

作者信息

Ermolova Maria, Kozák Gábor, Belardinelli Paolo, Ziemann Ulf

机构信息

Department of Neurology and Stroke, University of Tübingen, Tübingen, Germany.

Hertie Institute for Clinical Brain Research, University of Tübingen, Tübingen, Germany.

出版信息

Sci Rep. 2025 Sep 23;15(1):32677. doi: 10.1038/s41598-025-20294-1.

Abstract

Transcallosal connectivity between the hand areas of the two primary motor cortices (M1) is important for coordination of unimanual and bimanual hand motor function. Effective connectivity of this M1-M1 pathway can be tested in the form of short-interval interhemispheric inhibition (SIHI) using dual-coil transcranial magnetic stimulation (TMS). Recently, we and others have demonstrated that the phase of the ongoing sensorimotor µ-rhythm has significant impact on corticospinal excitability as measured by motor evoked potential (MEP) amplitude, and repetitive TMS of the high-excitability state (trough of the µ-rhythm) but not other states resulted in long-term potentiation-like MEP increase. Here, we tested to what extent the phase of the ongoing µ-rhythm in the two M1 affects long-term change in SIHI. In healthy subjects we applied cortico-cortical paired associative stimulation (ccPAS) in four different µ-phase conditions in the left conditioning M1 and right test M1 (trough-trough, trough-positive peak, positive peak-trough, random phase). We found long-term strengthening of SIHI but no differential effect of phase conditions. Findings point to a distinct regulation of plasticity of corticospinal versus M1-M1 connectivity. The observed ccPAS-induced strengthening of effective M1-M1 connectivity (SIHI) may be utilized for therapeutic applications that potentially benefit from modification of interhemispheric excitation/inhibition balance.

摘要

两个初级运动皮层(M1)手部区域之间的胼胝体连接对于单手和双手手部运动功能的协调至关重要。可以使用双线圈经颅磁刺激(TMS),以短间隔半球间抑制(SIHI)的形式来测试这条M1-M1通路的有效连接性。最近,我们和其他人已经证明,正在进行的感觉运动μ节律的相位对运动诱发电位(MEP)幅度所测量的皮质脊髓兴奋性有显著影响,并且高兴奋性状态(μ节律的波谷)而非其他状态的重复TMS导致了类似长时程增强的MEP增加。在这里,我们测试了两个M1中正在进行的μ节律的相位在多大程度上影响SIHI的长期变化。在健康受试者中,我们在左侧条件性M1和右侧测试M1的四种不同μ相位条件下(波谷-波谷、波谷-正峰、正峰-波谷、随机相位)应用皮质-皮质配对联想刺激(ccPAS)。我们发现SIHI有长期增强,但相位条件没有差异效应。研究结果表明皮质脊髓与M1-M1连接性的可塑性存在明显的调节。观察到的ccPAS诱导的有效M1-M1连接性(SIHI)增强可用于可能受益于半球间兴奋/抑制平衡改变的治疗应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2c44/12457623/31782669d67d/41598_2025_20294_Fig1_HTML.jpg

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