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Whisking and whisker kinematics during a texture classification task

机译:纹理分类任务期间的扫须和须晶运动学

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摘要

Rats explore objects by rhythmically whisking with their vibrissae. The goal of the present study is to learn more about the motor output used by rats to acquire texture information as well as the whisker motion evoked by texture contact. We trained four rats to discriminate between different grooved textures and used high-speed video to characterize whisker motion during the task. The variance in whisking parameters among subjects was notable. After whisker trimming, the animals changed their behaviour in ways that appear consistent with an optimization of whisker movement to compensate for lost information. These results lead to the intriguing notion that the rats use an information-seeking ‘cognitive’ motor strategy, instead of a rigid motor programme. Distinct stick/slip events occurred during texture palpation and their frequency increased in relation to the spatial frequency of the grooves. The results allow a preliminary assessment of three candidate texture-coding mechanisms—the number of grooves encountered during each touch, the temporal difference between groove contacts and the spatial pattern of groove contacts across the whiskers.
机译:老鼠通过触须有节奏地旋转来探索物体。本研究的目的是了解更多有关大鼠用于获取纹理信息以及由纹理接触引起的晶须运动的运动输出的信息。我们训练了四只老鼠,以区分不同的凹槽纹理,并在任务期间使用高速视频来表征晶须运动。受试者之间的搅拌参数差异显着。晶须修剪后,动物以与优化晶须运动以补偿丢失信息相一致的方式改变了行为。这些结果引起了一个有趣的想法,即老鼠使用寻求信息的“认知”运动策略,而不是严格的运动程序。明显的粘滑事件发生在纹理触诊期间,并且其频率相对于凹槽的空间频率增加。结果允许对三种候选纹理编码机制进行初步评估-每次触摸期间遇到的凹槽数量,凹槽触点之间的时间差异以及整个晶须之间的凹槽触点的空间模式。

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