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Layer- and cell-type-specific suprathreshold stimulus representation in rat primary somatosensory cortex

机译:大鼠原代体感皮层中特定于层和细胞类型的超阈值刺激表示

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摘要

Sensory stimuli are encoded differently across cortical layers and it is unknown how response characteristics relate to the morphological identity of responding cells. We therefore juxtasomally recorded action potential (AP) patterns from excitatory cells in layer (L) 2/3, L4, L5 and L6 of rat barrel cortex in response to a standard stimulus (e.g. repeated deflection of single whiskers in the caudal direction). Subsequent single-cell filling with biocytin allowed for post hoc identification of recorded cells. We report three major conclusions. First, sensory-evoked responses were layer- and cell-type-specific but always < 1 AP per stimulus, indicating low AP rates for the entire cortical column. Second, response latencies from L4, L5B and L6 were comparable and thus a whisker deflection is initially represented simultaneously in these layers. Finally, L5 thick-tufted cells dominated the cortical AP output following sensory stimulation, suggesting that these cells could direct sensory guided behaviours.
机译:整个皮层的感觉刺激编码方式不同,尚不清楚响应特征与响应细胞的形态特征如何相关。因此,我们根据标准刺激(例如,单个胡须在尾端方向上反复偏转)从大鼠桶状皮层的(L)2/3,L4,L5和L6层的兴奋性细胞中按行记录动作电位(AP)模式。随后用生物胞素填充单细胞,以便事后鉴定记录的细胞。我们报告了三个主要结论。首先,感觉诱发的反应是特定于层和细胞类型的,但每次刺激总是<1 AP,表明整个皮质柱的AP率低。其次,来自L4,L5B和L6的响应延迟是可比较的,因此,在这些层中同时显示了晶须偏转。最后,在感觉刺激后,L5簇状细胞主导了皮质AP的输出,表明这些细胞可以指导感觉引导的行为。

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