首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Spatiotemporal properties of neuron response suppression in owl monkey primary somatosensory cortex when stimuli are presented to both hands.
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Spatiotemporal properties of neuron response suppression in owl monkey primary somatosensory cortex when stimuli are presented to both hands.

机译:双手受到刺激时,猫头鹰猴原代体感皮层神经元反应抑制的时空特性。

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摘要

Despite the lack of ipsilateral receptive fields (RFs) for neurons in the hand representation of area 3b of primary somatosensory cortex, interhemispheric interactions have been reported to varying degrees. We investigated spatiotemporal properties of these interactions to determine the following: response types, timing between stimuli to evoke the strongest bimanual interactions, topographical distribution of effects, and their dependence on similarity of stimulus locations on the two hands. We analyzed response magnitudes and latencies of single neurons and multineuron clusters recorded from 100-electrode arrays implanted in one hemisphere of each of two anesthetized owl monkeys. Skin indentations were delivered to the two hands simultaneously and asynchronously at mirror locations (matched sites on each hand) and nonmirror locations. Since multiple neurons were recorded simultaneously, stimuli on the contralateral hand could be within or outside of the classical RFs of any given neuron. For most neurons, stimulation on the ipsilateral hand suppressed responses to stimuli on the contralateral hand. Maximum suppression occurred when the ipsilateral stimulus was presented 100 ms before the contralateral stimulus onset (p < 0.0005). The longest stimulus onset delay tested (500 ms) allowed contralateral responses to recover to control levels (p = 0.428). Stimulation on mirror digits did not differ from stimulation on nonmirror locations (p = 1.000). These results indicate that interhemispheric interactions are common in area 3b, somewhat topographically diffuse, and maximal when the suppressing ipsilateral stimulus precedes the contralateral stimulus. Our findings point to a neurophysiological basis for "interference" effects found in human psychophysical studies of bimanual stimulation.
机译:尽管在初级体感皮层区域3b的手部表示中缺少神经元的同侧感受野(RF),但已报道了不同程度的半球间相互作用。我们调查了这些相互作用的时空特性,以确定以下各项:响应类型,诱发最强的双手相互作用的刺激之间的时机,效应的地形分布以及它们对两只手刺激位置相似性的依赖性。我们分析了从两个麻醉猫头鹰猴子的每一个半球中植入的100电极阵列记录的单个神经元和多神经元簇的响应幅度和潜伏期。皮肤压痕在镜像位置(每只手的匹配位置)和非镜像位置同时并异步传递给两只手。由于同时记录了多个神经元,对侧手的刺激可能在任何给定神经元的经典RF内或外。对于大多数神经元而言,同侧手的刺激会抑制对侧手对刺激的反应。当对侧刺激发作前100 ms出现同侧刺激时,最大抑制作用发生(p <0.0005)。测试的最长刺激发作延迟时间(500毫秒)使对侧反应恢复至对照水平(p = 0.428)。镜像数字刺激与非镜像位置刺激无差异(p = 1.000)。这些结果表明,当抑制同侧刺激先于对侧刺激时,半球间相互作用在区域3b中很常见,在地形上有些分散,并且最大。我们的发现指向在双手刺激的人类心理物理学研究中发现的“干扰”效应的神经生理基础。

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