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首页> 外文期刊>The Journal of Comparative Neurology >Distributed representation of vibrissa movement in the upper layers of somatosensory cortex revealed with voltage-sensitive dyes.
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Distributed representation of vibrissa movement in the upper layers of somatosensory cortex revealed with voltage-sensitive dyes.

机译:体感皮层上层中的触须运动的分布式表示,通过电压敏感染料显示出来。

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We have identified large-scale patterns of electrical activity in circuits that occur in response to stimulation of peripheral receptors. Our focus was on primary (S1) vibrissal cortex of anesthetized rat, and we used optical techniques in conjunction with voltage-sensitive dyes to measure depolarization of the upper layers of cortex. Displacement of one vibrissa produced a field of activity that extends over very many cortical columns in S1. There are multiple, focal maxima within this field. A global maximum is located near the center of the field of activity, and, as determined electrically and histologically, this site maps to the cortical column appropriate for the deflected vibrissa. The amplitude of this component attains a steady-state value under continuous stimulation. Additional temporal characteristics are revealed by the response to a single displacement; the signal was triphasic and began with a prompt depolarization that was followed by a transient phase of inhibition and a final phase of long-lasting depolarization. The somatotopy of the other, satellite maxima in the field of activity were established through the reconstruction of the fields of activity produced by individual stimulation of other vibrissae. Local maxima for one vibrissa were seen to overlie the global maximum found for stimulation of nearest- and next-nearest-neighbor vibrissae. In contrast to the amplitude of the global maxima, the amplitude associated with the local maxima was not maintained with either continuous or infrequent but repetitive stimulation. Finally, the field of activity induced by alternate deflection of two neighboring vibrissae was suppressed in amplitude in comparison to the summed amplitudes of the signals elicited by deflection of each vibrissa alone. We suggest that these patterns of activity are a manifestation of the dynamic interaction among neighboring cortical columns.
机译:我们已经确定了响应外围受体刺激而发生的电路中电活动的大规模模式。我们的重点是麻醉大鼠的原发性(S1)纤毛皮质,我们将光学技术与电压敏感染料结合使用来测量皮质上层的去极化。一个触须的位移产生了一个活动区域,该活动区域延伸到了S1的许多皮质柱上。在该字段中有多个焦点极大值。全局最大值位于活动场的中心附近,并且从电学和组织学角度确定,此位置映射到适合偏斜触须的皮质柱。在连续刺激下,该分量的振幅达到稳态值。通过对单个位移的响应揭示了其他时间特性。信号是三相的,以迅速的去极化开始,随后是抑制的过渡阶段和持久去极化的最后阶段。通过重建由其他触须单独刺激产生的活动场,可以确定活动场中另一个卫星最大值的体型。可以看到一个触须的局部最大值覆盖了刺激最近和下一个邻近触须的全局最大值。与整体最大值的振幅相反,连续或不频繁但重复的刺激不能维持与局部最大值相关的振幅。最后,与两个单独的触角单独偏转引起的信号总和相比,两个相邻触角交替偏转引起的活动场在幅度上得到了抑制。我们建议这些活动模式是相邻的皮质柱之间动态相互作用的体现。

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