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Cell Type Specific Representation of Vibro-tactile Stimuli in the Mouse Primary Somatosensory Cortex

机译:小鼠原代体感皮层中的触觉刺激的细胞类型特异性表示

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摘要

Although the processing of whisker deflections in the barrel area of the rodent primary somatosensory cortex (S1) has been studied extensively, how cutaneous vibro-tactile stimuli are processed in the rodent S1 outside the barrel area has not been fully examined. Particularly, the cell-type specific representation of multiple vibration frequencies in genetically identified inhibitory cells in the S1 has not been examined. Using two-photon calcium imaging, we examined the responses to vibration stimuli of excitatory and inhibitory neurons in the S1 hind limb area of male and female mice. The excitatory cells showed relatively sharp selectivity to vibration stimuli, whereas the inhibitory cells exhibited less selectivity. The excitatory and inhibitory cells with different preferred stimuli were intermingled in a “salt and pepper” manner. Furthermore, the noise correlation tended to be especially strong in excitatory-inhibitory and inhibitory-inhibitory cell pairs that have similar stimulus selectivity. These results suggest that excitatory cells tend to represent specific stimulus information and work together with similarly tuned inhibitory cells as a functionally connected network.
机译:尽管已经广泛研究了啮齿动物初级体感皮层(S1)的桶状区域中的晶须挠曲的处理,但是尚未完全研究如何在桶状区域之外的啮齿动物S1中处理皮肤的触觉刺激。特别是,尚未检测到S1的基因鉴定抑制细胞中多个振动频率的细胞类型特异性表示。使用两光子钙成像,我们检查了雄性和雌性小鼠S1后肢区域对兴奋性和抑制性神经元的振动刺激的反应。兴奋性细胞对振动刺激表现出相对敏锐的选择性,而抑制性细胞表现出较低的选择性。具有不同优选刺激的兴奋性和抑制性细胞以“盐和胡椒”的方式混合在一起。此外,在具有相似刺激选择性的兴奋性抑制和抑制性抑制细胞对中,噪声相关性趋于特别强。这些结果表明,兴奋性细胞倾向于代表特定的刺激信息,并与功能相似的抑制性细胞一起作为功能连接的网络协同工作。

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