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Stimulation of somatosensory cortex locked to whisker motions in a mouse model of active sensing

机译:刺激在活性感应的小鼠模型中锁定到晶须运动的晶须运动

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Active sensing incorporates closed-loop behavioral selection of information during sensory acquisition. The rodent whisker tactile system provides an ideal platform for studying these processes. We developed methods to deliver optogenetic feedback to mouse primary somatosensory cortex (SI), time-locked to active sensing motions (whisking) estimated through facial electromyography (EMG). To explore the impact of SI activity on individual whisker motions, we delivered stimulation locked to EMG threshold crossings at multiple delays. We found that stimulation regularized whisking (increasing overall periodicity), and shifted whisking frequency. These behavioral changes emulate changes observed when rodents actively contact objects, suggesting a role for SI in action selection that could guide design of sensory neuroprostheses sensitive to active sensing context.
机译:主动传感在感官采集期间包含闭环行为选择信息。啮齿动物晶须触觉系统提供了用于研究这些过程的理想平台。我们开发了向小鼠初级躯体感染皮层(SI)提供致敏反馈的方法,锁定在通过面部肌电图(EMG)估计的主动传感运动(搅拌器)。为了探讨SI活动对单个晶须运动的影响,我们在多个延迟下锁定锁定到EMG阈值交叉的刺激。我们发现刺激正则化搅拌(越来越大的周期性),并转移搅拌频率。当啮齿动物积极接触对象时,这些行为改变模拟了观察到的变化,这表明可以在动作选择中的作用,该作用选择可以指导对主动感测环境敏感的感官神经调节性的设计。

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