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由空间分布的一群机械感受器对移动物体的位置和方向进行神经编码。

Neural coding of the location and direction of a moving object by a spatially distributed population of mechanoreceptors.

作者信息

Friedman Robert M, Khalsa Partap S, Greenquist Kenneth W, LaMotte Robert H

机构信息

Department of Anesthesiology, Yale University School of Medicine, New Haven, Connecticut 06520-8051, USA.

出版信息

J Neurosci. 2002 Nov 1;22(21):9556-66. doi: 10.1523/JNEUROSCI.22-21-09556.2002.

Abstract

A neural code for the location and direction of an object moving over the fingerpad was constructed from the responses of a population of rapidly adapting type I (RAs) and slowly adapting type I (SAs) mechanoreceptive nerve fibers. The object was either a sphere with a radius of 5 mm or a toroid with radii of 5 mm on the major axis and either 1 or 3 mm on the minor axis. The object was stroked under constant velocity and contact force along eight different linear trajectories. The spatial locations of the centers of activity of the population responses (PLs) were determined from nonsimultaneously recorded responses of 99 RAs and 97 SAs with receptive fields spatially distributed over the fingerpad of the anesthetized monkey. The PL at each moment during each stroke was used as a neural code of object location. The angle between the direction of the trajectory of the PL and mediolateral axis was used to represent the direction of motion of the object. The location of contact between the object and skin was better represented in SA than in RA PLs, regardless of stroke direction or object curvature. The PL representation of stroke direction was linearly related to the actual direction of the object for both RAs and SAs but was less variable for SAs than for RAs. Both the SA and RA populations coded spatial position and direction of motion at acuities similar to those obtained in psychophysical studies in humans.

摘要

基于一群快速适应I型(RA)和缓慢适应I型(SA)机械感受神经纤维的反应,构建了一种用于编码在指腹上移动物体的位置和方向的神经编码。该物体要么是一个半径为5毫米的球体,要么是一个在长轴上半径为5毫米、在短轴上半径为1或3毫米的环面。物体以恒定速度和接触力沿着八条不同的线性轨迹被抚摸。群体反应(PLs)活动中心的空间位置是根据99条RA和97条SA的非同步记录反应确定的,这些神经纤维的感受野在空间上分布在麻醉猴子的指腹上。每次抚摸过程中每个时刻的PL被用作物体位置的神经编码。PL轨迹方向与内外侧轴之间 的夹角被用来表示物体的运动方向。无论抚摸方向或物体曲率如何,SA的PLs比RA的PLs能更好地表示物体与皮肤之间的接触位置。对于RA和SA,PLs对抚摸方向的表示都与物体的实际方向呈线性相关,但SA的变化比RA小。SA和RA群体编码空间位置和运动方向的敏锐度与人类心理物理学研究中获得的敏锐度相似。

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