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Timing-dependent plasticity in human primary somatosensory cortex

机译:人初级体感皮层的时间依赖性可塑性

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摘要

Animal experiments suggest that cortical sensory representations may be remodelled as a consequence of changing synaptic efficacy by timing-dependent associative neuronal activity. Here we describe a timing-based associative form of plasticity in human somatosensory cortex. Paired associative stimulation (PAS) was performed by combining repetitive median nerve stimulation with transcranial magnetic stimulation (TMS) over the contralateral postcentral region. PAS increased exclusively the amplitude of the P25 component of the median nerve-evoked somatosensory-evoked potential (MN-SSEP), which is probably generated in the superficial cortical layers of area 3b. SSEP components reflecting neuronal activity in deeper cortical layers (N20 component) or subcortical regions (P14 component) remained constant. PAS-induced enhancement of P25 amplitude displayed topographical specificity both for the recording (MN-SSEP versus tibial nerve-SSEP) and the stimulation (magnetic stimulation targeting somatosensory versus motor cortex) arrangements. Modulation of P25 amplitude was confined to a narrow range of interstimulus intervals (ISIs) between the MN pulse and the TMS pulse, and the sign of the modulation changed with ISIs differing by only 15 ms. The function describing the ISI dependence of PAS effects on somatosensory cortex resembled one previously observed in motor cortex, shifted by ∼7 ms. The findings suggest a simple model of modulation of excitability in human primary somatosensory cortex, possibly by mechanisms related to the spike-timing-dependent plasticity of neuronal synapses located in upper cortical layers.
机译:动物实验表明,通过改变时间依赖性的联想神经元活动,可以改变突触功效,从而重塑皮质的感觉表现。在这里,我们描述了人类体感皮层中可塑性的基于时间的关联形式。通过将对侧后中部区域的重复正中神经刺激与经颅磁刺激(TMS)相结合,进行配对联想刺激(PAS)。 PAS仅增加了中位神经诱发的体感诱发电位(MN-SSEP)的P25成分的振幅,这可能是在区域3b的表皮皮质层中产生的。反映较深皮质层(N20组分)或皮质下区域(P14组分)中神经元活动的SSEP组分保持恒定。 PAS诱导的P25幅度增强显示了记录(MN-SSEP与胫神经-SSEP)和刺激(针对体感与运动皮层的磁刺激)布置的地形特异性。 P25幅度的调制被限制在MN脉冲和TMS脉冲之间的激励间隔(ISI)的狭窄范围内,并且调制的符号随ISI的变化仅相差15 ms。描述PAS效应对躯体感觉皮层的ISI依赖性的函数类似于先前在运动皮层中观察到的函数,偏移了约7 ms。研究结果表明,可能通过与位于上皮层的神经元突触的峰形依赖可塑性相关的机制来调节人原代体感皮层兴奋性的简单模型。

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