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Adaptive changes in the neuromagnetic response of the primary and association somatosensory areas following repetitive tactile hand stimulation in humans

机译:重复触觉手刺激人类后,主要和关联体感区的神经磁反应的适应性变化

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Cortical adaptation in the primary somatosensory cortex (SI) has been probed using different stimulation modalities and recording techniques, in both human and animal studies. In contrast, considerably less knowledge has been gained about the adaptation profiles in other areas of the cortical somatosensory network. Using magnetoencephalography (MEG), we examined the patterns of short-term adaptation for evoked responses in SI and somatosensory association areas during tactile stimulation applied to the glabrous skin of the hand. Cutaneous stimuli were delivered as trains of serial pulses with a constant frequency of 2 Hz and 4 Hz in separate runs, and a constant inter-train interval of 5 s. The unilateral stimuli elicited transient responses to the serial pulses in the train, with several response components that were separated by independent component analysis. Subsequent source reconstruction techniques identified regional generators in the contralateral SI and somatosensory association areas in the posterior parietal cortex (PPC). Activity in the bilateral secondary somatosensory cortex (i.e., SII/PV) was also identified, although less consistently across subjects. The dynamics of the evoked activity in each area and the frequency-dependent adaptation effects were assessed from the changes in the relative amplitude of serial responses in each train. We show that the adaptation profiles in SI and PPC areas can be quantitatively characterized from neuromagnetic recordings using tactile stimulation, with the sensitivity to repetitive stimulation increasing from SI to PPC. A similar approach for SII/PV has proven less straightforward, potentially due to the tendency of these areas to respond selectively to certain stimuli.
机译:在人类和动物研究中,已经使用不同的刺激方式和记录技术探讨了初级体感皮层(SI)的皮质适应性。相比之下,在皮层体感网络其他区域获得的关于适应性概况的知识要少得多。使用磁脑描记法(MEG),我们检查了在触觉施加到手部皮肤上的皮肤中,SI和体感联想区域中诱发反应的短期适应模式。皮肤刺激以连续脉冲序列的形式传递,在单独的运行中具有2 Hz和4 Hz的恒定频率,以及5 s的恒定火车间隔。单边刺激引起对列车中串行脉冲的瞬态响应,其中几个响应分量通过独立的分量分析分离。随后的来源重建技术确定了对侧SI和后顶叶皮质(PPC)的体感关联区域中的区域生成器。还确定了双侧次要体感皮层(即SII / PV)中的活性,尽管在受试者之间不太一致。从每个列车的串行响应的相对幅度的变化中评估了每个区域中诱发活动的动力学和频率依赖性适应效应。我们表明,SI和PPC区域中的适应概况可以通过使用触觉刺激的神经磁记录进行定量表征,对重复刺激的敏感性从SI到PPC不断增加。事实证明,针对SII / PV的类似方法不太简单,这可能是由于这些区域倾向于选择性地对某些刺激做出反应。

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