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通过预期性触须运动进行触觉物体定位。

Tactile object localization by anticipatory whisker motion.

作者信息

Voigts Jakob, Herman David H, Celikel Tansu

机构信息

Department of Brain and Cognitive Sciences, Massachusetts Institute of Technology, Cambridge, Massachusetts; Laboratory of Neural Circuits and Plasticity, USC, Los Angeles, California;

Laboratory of Neural Circuits and Plasticity, USC, Los Angeles, California; Neuroscience Graduate Program, USC, Los Angeles, California; and.

出版信息

J Neurophysiol. 2015 Jan 15;113(2):620-32. doi: 10.1152/jn.00241.2014. Epub 2014 Oct 22.

Abstract

Rodents use rhythmic protractions of their whiskers to locate objects in space. The amplitude of these protractions is reduced when whiskers contact objects, leading to a tendency of whiskers to only lightly touch the environment. While the impact of this process on the sensory input has been studied, little is known about how sensory input causes this change in the motor pattern. Here, using high-speed imaging of whisking in mice, we simultaneously measured whisker contacts and the resulting whisking motion. We found that mice precisely target their whisker protractions to the distance at which they expect objects. This modulation does not depend on the current sensory input and remains stable for at least one whisking cycle when there is no object contact or when the object position is changed. As a result, the timing and other information carried by whisker contacts encodes how well each protraction was matched to the object, functioning as an error signal. Whisker contacts can thus encode a mismatch between expected object locations and the actual environment.

摘要

啮齿动物通过有节奏地前伸触须在空间中定位物体。当触须接触物体时,这些前伸的幅度会减小,导致触须倾向于仅轻轻触碰周围环境。虽然这一过程对感觉输入的影响已得到研究,但对于感觉输入如何引起这种运动模式的变化却知之甚少。在此,我们利用对小鼠触须摆动的高速成像,同时测量了触须接触情况以及由此产生的触须运动。我们发现,小鼠会精确地将触须前伸定位到它们预期物体所在的距离。这种调节并不依赖于当前的感觉输入,并且在没有物体接触或物体位置改变时,至少在一个触须摆动周期内保持稳定。结果,触须接触所携带的时间及其他信息编码了每次前伸与物体的匹配程度,起到了误差信号的作用。因此,触须接触能够编码预期物体位置与实际环境之间的不匹配情况。

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