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Radial distance determination in the rat vibrissal system and the effects of Webers law

机译:大鼠震颤系统中的径向距离确定和韦伯定律的影响

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摘要

Rats rhythmically tap and brush their vibrissae (whiskers) against objects to tactually explore the environment. To extract a complex feature such as the contour of an object, the rat must at least implicitly estimate radial object distance, that is, the distance from the base of the vibrissa to the point of object contact. Radial object distance cannot be directly measured, however, because there are no mechanoreceptors along the vibrissa. Instead, the mechanical signals generated by the vibrissa's interaction with the environment must be transmitted to mechanoreceptors near the vibrissa base. The first part of this paper surveys the different mechanical methods by which the rat could determine radial object distance. Two novel methods are highlighted: one based on measurement of bending moment and axial force at the vibrissa base, and a second based on measurement of how far the vibrissa rotates beyond initial contact. The second part of the paper discusses the application of Weber's law to two methods for radial distance determination. In both cases, Weber's law predicts that the rat will have greatest sensing resolution close to the vibrissa tip. These predictions could be tested with behavioural experiments that measure the perceptual acuity of the rat.
机译:大鼠以有节奏的方式将触须(胡须)拍打在物体上,以触觉地探索环境。为了提取复杂的特征(例如物体的轮廓),大鼠必须至少隐式​​地估计径向物体的距离,即从触须的底部到物体接触点的距离。但是,由于沿触角没有机械感受器,因此无法直接测量径向物体的距离。取而代之的是,由触须与环境的相互作用所产生的机械信号必须传送到触须基部附近的机械感受器。本文的第一部分概述了老鼠可以用来确定径向物体距离的不同机械方法。着重介绍了两种新颖的方法:一种基于对弯矩底部的弯矩和轴向力的测量,另一种基于对触角旋转超出初始接触的距离的测量。本文的第二部分讨论了韦伯定律在两种径向距离确定方法中的应用。在这两种情况下,韦伯定律都预测老鼠在触须尖端附近的感应分辨率最高。这些预测可以通过测量大鼠知觉敏锐度的行为实验来检验。

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