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主动感知中的快速反馈:触须-物体相互作用的触摸诱导变化。

Fast feedback in active sensing: touch-induced changes to whisker-object interaction.

机构信息

Department of Neurobiology, The Weizmann Institute of Science, Rehovot, Israel.

出版信息

PLoS One. 2012;7(9):e44272. doi: 10.1371/journal.pone.0044272. Epub 2012 Sep 18.

Abstract

Whisking mediated touch is an active sense whereby whisker movements are modulated by sensory input and behavioral context. Here we studied the effects of touching an object on whisking in head-fixed rats. Simultaneous movements of whiskers C1, C2, and D1 were tracked bilaterally and their movements compared. During free-air whisking, whisker protractions were typically characterized by a single acceleration-deceleration event, whisking amplitude and velocity were correlated, and whisk duration correlated with neither amplitude nor velocity. Upon contact with an object, a second acceleration-deceleration event occurred in about 25% of whisk cycles, involving both contacting (C2) and non-contacting (C1, D1) whiskers ipsilateral to the object. In these cases, the rostral whisker (C2) remained in contact with the object throughout the double-peak phase, which effectively prolonged the duration of C2 contact. These "touch-induced pumps" (TIPs) were detected, on average, 17.9 ms after contact. On a slower time scale, starting at the cycle following first touch, contralateral amplitude increased while ipsilateral amplitude decreased. Our results demonstrate that sensory-induced motor modulations occur at various timescales, and directly affect object palpation.

摘要

扫动介导的触觉是一种主动感觉,其中胡须运动通过感觉输入和行为背景进行调制。在这里,我们研究了在头部固定的大鼠中触摸物体对胡须运动的影响。双侧同时跟踪胡须 C1、C2 和 D1 的运动,并对其进行比较。在自由空气扫动期间,胡须的伸出通常以单个加速-减速事件为特征,扫动幅度和速度相关,而胡须持续时间与幅度和速度均不相关。当与物体接触时,大约 25%的胡须周期中会发生第二次加速-减速事件,涉及同侧的接触(C2)和非接触(C1、D1)胡须。在这些情况下,位于鼻侧的前向胡须(C2)在双峰阶段始终与物体接触,从而有效地延长了 C2 接触的持续时间。这些“触摸诱导泵”(TIP)在接触后平均 17.9 毫秒被检测到。在较慢的时间尺度上,从第一次接触后的下一个周期开始,对侧幅度增加,而同侧幅度减小。我们的结果表明,感觉诱导的运动调制发生在不同的时间尺度上,并直接影响物体的触觉。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4558/3445569/6fc4bc76f8b3/pone.0044272.g001.jpg

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