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当与棱镜适应相结合时,配对脉冲顶叶 - 运动刺激对跨半球的皮质脊髓兴奋性有不同的调节作用。

Paired-Pulse Parietal-Motor Stimulation Differentially Modulates Corticospinal Excitability across Hemispheres When Combined with Prism Adaptation.

作者信息

Schintu Selene, Martín-Arévalo Elisa, Vesia Michael, Rossetti Yves, Salemme Romeo, Pisella Laure, Farnè Alessandro, Reilly Karen T

机构信息

Integrative Multisensory Perception Action & Cognition Team (ImpAct), INSERM U1028, CNRS UMR5292, Lyon Neuroscience Research Center (CRNL), 69000 Lyon, France; University of Lyon 1, 69000 Lyon, France.

Krembil Research Institute, Toronto Western Hospital, University Health Network, Toronto, ON, Canada M5T 2S8.

出版信息

Neural Plast. 2016;2016:5716179. doi: 10.1155/2016/5716179. Epub 2016 Jun 22.

Abstract

Rightward prism adaptation ameliorates neglect symptoms while leftward prism adaptation (LPA) induces neglect-like biases in healthy individuals. Similarly, inhibitory repetitive transcranial magnetic stimulation (rTMS) on the right posterior parietal cortex (PPC) induces neglect-like behavior, whereas on the left PPC it ameliorates neglect symptoms and normalizes hyperexcitability of left hemisphere parietal-motor (PPC-M1) connectivity. Based on this analogy we hypothesized that LPA increases PPC-M1 excitability in the left hemisphere and decreases it in the right one. In an attempt to shed some light on the mechanisms underlying LPA's effects on cognition, we investigated this hypothesis in healthy individuals measuring PPC-M1 excitability with dual-site paired-pulse TMS (ppTMS). We found a left hemisphere increase and a right hemisphere decrease in the amplitude of motor evoked potentials elicited by paired as well as single pulses on M1. While this could indicate that LPA biases interhemispheric connectivity, it contradicts previous evidence that M1-only MEPs are unchanged after LPA. A control experiment showed that input-output curves were not affected by LPA per se. We conclude that LPA combined with ppTMS on PPC-M1 differentially alters the excitability of the left and right M1.

摘要

向右的棱镜适应可改善偏侧忽略症状,而向左的棱镜适应(LPA)会在健康个体中诱发类似偏侧忽略的偏差。同样,对右侧顶叶后皮质(PPC)进行抑制性重复经颅磁刺激(rTMS)会诱发类似偏侧忽略的行为,而对左侧PPC进行刺激则可改善偏侧忽略症状并使左半球顶叶 - 运动(PPC - M1)连接的过度兴奋恢复正常。基于此类比,我们假设LPA会增加左半球的PPC - M1兴奋性,并降低右半球的该兴奋性。为了阐明LPA对认知影响的潜在机制,我们在健康个体中使用双位点配对脉冲TMS(ppTMS)测量PPC - M1兴奋性来研究这一假设。我们发现,在M1上,配对脉冲和单脉冲诱发的运动诱发电位幅度在左半球增加而在右半球降低。虽然这可能表明LPA会影响半球间连接,但这与先前的证据相矛盾,即LPA后仅M1的运动诱发电位并未改变。一项对照实验表明,输入 - 输出曲线本身不受LPA影响。我们得出结论,LPA与对PPC - M1进行的ppTMS相结合会差异性地改变左右M1的兴奋性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/66e3/4933861/ac40735e8432/NP2016-5716179.001.jpg

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