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首页> 外文期刊>Brain stimulation >Plasticity of motor threshold and motor-evoked potential amplitude - A model of intrinsic and synaptic plasticity in human motor cortex?
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Plasticity of motor threshold and motor-evoked potential amplitude - A model of intrinsic and synaptic plasticity in human motor cortex?

机译:电机阈值和电动机诱发潜在幅度的可塑性 - 一种人机皮质内在和突触可塑性模型?

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摘要

Background: Neuronal plasticity is the physiological correlate of learning and memory. In animal experiments, synaptic (i.e. long-term potentiation (LTP) and depression (LTD)) and intrinsic plasticity are distinguished. In human motor cortex, cortical plasticity can be demonstrated using transcranial magnetic stimulation (TMS). Changes in motor-evoked potential (MEP) amplitudes most likely represent synaptic plasticity and are thus termed LTP-like and LTD-like plasticity. Objective/hypothesis: We investigated the role of changes of motor threshold and their relation to changes of MEP amplitudes. Methods: We induced plasticity by paired associative stimulation (PAS) with 25 ms or 10 ms inter-stimulus interval or by motor practice (MP) in 64 healthy subjects aged 18-31 years (median 24.0). Results: We observed changes of MEP amplitudes and motor threshold after PAS[25], PAS[10] and MP. In all three protocols, long-term individual changes in MEP amplitude were inversely correlated to changes in motor threshold (PAS[25]: P = .003, n = 36; PAS[10]: P = .038, n = 19; MP: P = .041, n = 19). Conclusion: We conclude that changes of MEP amplitudes and MT represent two indices of motor cortex plasticity. Whereas increases and decreases in MEP amplitude are assumed to represent LTP-like or LTD-like synaptic plasticity of motor cortex output neurons, changes of MT may be considered as a correlate of intrinsic plasticity.
机译:背景:神经元可塑性是学习和记忆的生理相关性。在动物实验中,区分突触(即长期增强(LTP)和抑郁(LTP))和内在可塑性。在人机皮质中,可以使用经颅磁刺激(TMS)来证明皮质可塑性。电动机诱发电位(MEP)振幅的变化很可能代表突触塑性,因此被称为LTP样和LTD样可塑性。目标/假设:我们调查了电机阈值变化的作用及其与MEP振幅的变化的关系。方法:通过成对的关联刺激(PAS)引起可塑性,通过25毫秒或10 ms刺激间隔或在18-31岁的64岁的健康受试者中(MEDIAN 24.0)中的运动实践(MP)。结果:我们在PAS [25],PAS [10]和MP中观察了MEP振幅和电动机阈值的变化。在所有三种协议中,MEP幅度的长期个体变化与电动机阈值的变化相反(PAS [25]:P = .003,n = 36; PAS [10]:P = .038,N = 19; MP:p = .041,n = 19)。结论:我们得出结论,MEP振幅和MT的变化代表了两种电动机皮质塑性指标。然而,假设MEP幅度的增加和减少表示Motor皮质输出神经元的LTP样或LTD样突触塑性,因此MT的变化可以被认为是固有塑性的相关性。

著录项

  • 来源
    《Brain stimulation》 |2012年第4期|共8页
  • 作者单位

    Division of Neuropaediatrics and Muscular Disorders Department of Paediatrics and Adolescent;

    Division of Neuropaediatrics and Muscular Disorders Department of Paediatrics and Adolescent;

    Division of Neuropaediatrics and Muscular Disorders Department of Paediatrics and Adolescent;

    Department of Neurology Goethe-University Frankfurt am Main Germany;

    Department of Paediatrics Technical University München Munich Germany;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 诊断学;
  • 关键词

    Motor cortex; Synaptic plasticity; Transcranial magnetic stimulation;

    机译:电机皮质;突触塑性;经颅磁刺激;

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