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Peripheral optogenetic stimulation induces whisker movement and sensory perception in head-fixed mice

机译:周围光遗传学刺激诱导头固定小鼠晶须运动和感觉知觉

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摘要

We discovered that optical stimulation of the mystacial pad in Emx1-Cre;Ai27D transgenic mice induces whisker movements due to activation of ChR2 expressed in muscles controlling retraction and protraction. Using high-speed videography in anesthetized mice, we characterize the amplitude of whisker protractions evoked by varying the intensity, duration, and frequency of optogenetic stimulation. Recordings from primary somatosensory cortex (S1) in anesthetized mice indicated that optogenetic whisker pad stimulation evokes robust yet longer latency responses than mechanical whisker stimulation. In head-fixed mice trained to report optogenetic whisker pad stimulation, psychometric curves showed similar dependence on stimulus duration as evoked whisker movements and S1 activity. Furthermore, optogenetic stimulation of S1 in expert mice was sufficient to substitute for peripheral stimulation. We conclude that whisker protractions evoked by optogenetic activation of whisker pad muscles results in cortical activity and sensory perception, consistent with the coding of evoked whisker movements by reafferent sensory input.>DOI:
机译:我们发现,光刺激Emx1-Cre; Ai27D转基因小鼠中的神秘肌垫可引起晶须运动,这是由于激活了控制收缩和牵开的肌肉中表达的ChR2引起的。在麻醉的小鼠中使用高速摄影,我们通过改变光遗传学刺激的强度,持续时间和频率来表征晶须突出的幅度。麻醉小鼠的初级体感皮层(S1)的记录表明,光遗传学晶须垫刺激比机械晶须刺激具有更强而更长的潜伏期响应。在接受过培训的可报告光遗传学晶须垫刺激的固定头小鼠中,心理测度曲线显示出与诱发晶须运动和S1活动类似的对刺激持续时间的依赖性。此外,专家小鼠中S1的光遗传刺激足以替代周围刺激。我们得出的结论是,晶须垫肌肉的光遗传激活引起的晶须突伸导致皮层活动和感官知觉,这与传入的感官输入对诱发的晶须运动的编码一致。> DOI:

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