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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Role of spike timing in the forelimb somatosensory cortex of the rat.
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Role of spike timing in the forelimb somatosensory cortex of the rat.

机译:穗定时在大鼠前肢体感皮层中的作用。

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摘要

The aim of this study was to test the hypothesis that the significance of spike timing in somatosensory processing is not a specific feature of the whisker cortex but a more general characteristic of the primary somatosensory cortex. We recorded ensembles of neurons using microwire arrays implanted in the deep layers of the forelimb region of the rat primary somatosensory cortex in response to step stimuli delivered to the cutaneous surface of the contralateral body. We used a recently developed peristimulus time histogram (PSTH)-based classification method to investigate the temporal precision of the code by evaluating how changing the bin size (from 40 to 1 msec) would affect the ability of the ensemble responses to discriminate stimulus location on a single-trial basis. The information related to the discrimination was redundantly distributed within the ensembles, and the ability to discriminate stimulus location increased when decreasing the bin size, reaching a maximum at 4 msec. In our experiment, at 4 msec bin size the first spike per neuron after the stimulus conveyed almost as much information as the entire responses, so the temporal precision of the code was preserved in the first spikes. Subsequent spikes were less frequent but conveyed more information per spike. Finally, not only the trials correctly classified but also the trials incorrectly classified conveyed information about stimulus location with a similar temporal precision. We conclude that the role of spike timing in cortical somatosensory processing is not an exclusive feature of the highly specialized rat trigeminal system, but a more general property of the rat primary somatosensory cortex.
机译:本研究的目的是检验以下假设:体感处理中尖峰时间的重要性不是晶须皮层的特定特征,而是主要体感皮层的更一般特征。我们使用微线阵列记录了神经元的合奏,该微线阵列被植入大鼠初级体感皮层的前肢区域的深层,以响应传递到对侧身体皮肤表面的步进刺激。我们使用最近开发的基于刺激时间直方图(PSTH)的分类方法,通过评估更改bin大小(从40到1毫秒)将如何影响整体响应区分激励位置的能力,来研究代码的时间精度。一次审判。与辨别有关的信息被冗余地分布在整个集合中,并且当减小箱的大小时,辨别刺激位置的能力提高了,在4毫秒时达到最大值。在我们的实验中,在4毫秒的bin大小下,刺激后每个神经元的第一个峰值传达的信息几乎与整个响应相同,因此代码的时间精度保留在第一个峰值中。随后的峰值不那么频繁,但每个峰值传达的信息更多。最后,不仅试验被正确分类,而且试验被错误分类,也以类似的时间精度传达了有关刺激位置的信息。我们得出结论,峰值定时在皮质体感处理中的作用不是高度专业化的大鼠三叉神经系统的独有特征,而是大鼠初级体感皮层的更一般特性。

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