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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Hebbian and anti-Hebbian spike-timing-dependent plasticity of human cortico-cortical connections
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Hebbian and anti-Hebbian spike-timing-dependent plasticity of human cortico-cortical connections

机译:Hebbian和抗Hebbian Spike - 时序依赖于人体皮质皮质连接的依赖性可塑性

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摘要

Learning of new skills may occur through Hebbian associative changes in the synaptic strength of cortical connections [spike-timingdependent plasticity (STDP)], but how the precise temporal relationship of the presynaptic and postsynaptic inputs determines the STDP effects in humans is poorly understood. We used a novel paired associative stimulation protocol to repeatedly activate the short-latency connection between the posterior parietal cortex and the primary motor cortex (M1) of the left-dominant hemisphere. In different experiments, we systematically varied the temporal relationships between the stimuli and the preferential activation of different M1 neuronal populations by applying transcranial magnetic stimulation over M1 with different coil orientations and in different states of cortical excitability (rest vs muscular contraction). We found evidence for the existence of both Hebbian and anti-Hebbian STDP in human long-range connections. The induction of bidirectional long-term potentiation or depression in M1 depended not only on the relative timing between the stimuli but, crucially, on the stimulation of specific neuronal populations and the activity state of the cortex. Our findings demonstrate that these mechanisms are not fixed but susceptible to rapid adaptations. This sudden transition from anti-Hebbian to Hebbian plasticity likely involves local dynamics of interaction with different populations of postsynaptic neurons.
机译:的新技能学习可以通过在皮层的连接[尖峰timingdependent可塑性(STDP)]的突触强度赫布缔发生变化,但的突触前和突触后的输入的精确的时间关系如何确定在人体中的作用STDP知之甚少。我们使用了一个新颖的成对刺激关联协议重复地激活后顶叶和左优势半球的初级运动皮层(M1)之间的短时延连接。在不同的实验中,我们系统地通过在M1具有不同线圈取向施加经颅磁刺激和皮质兴奋(其余VS肌肉收缩)的不同状态而变化的刺激和不同M1神经元群体的优先激活之间的时间关系。我们发现的证据两种赫宾和反赫布STDP的人类长距离连接的存在。在M1双向长时程增强或抑郁症的诱导不仅取决于刺激但关键之间的相对定时,对特定神经元群体的刺激和皮层的活动状态。我们的研究结果表明,这些机制是不固定的,但容易迅速适应。从反赫布到赫布可塑性这突如其来的转变可能涉及与突触后神经元的不同群体互动的地方动态。

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    Non-Invasive Brain Stimulation Unit Santa Lucia Foundation Institute for Inpatient Treatment and;

    Non-Invasive Brain Stimulation Unit Santa Lucia Foundation Institute for Inpatient Treatment and;

    Non-Invasive Brain Stimulation Unit Santa Lucia Foundation Institute for Inpatient Treatment and;

    Non-Invasive Brain Stimulation Unit Santa Lucia Foundation Institute for Inpatient Treatment and;

    Non-Invasive Brain Stimulation Unit Santa Lucia Foundation Institute for Inpatient Treatment and;

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  • 正文语种 eng
  • 中图分类 人体生理学;
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