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服务于人类前臂触觉方向感的空间线索。

Spatial cues serving the tactile directional sensibility of the human forearm.

作者信息

Norrsell U, Olausson H

机构信息

Department of Physiology, University of Göteborg, Sweden.

出版信息

J Physiol. 1994 Aug 1;478 Pt 3(Pt 3):533-40. doi: 10.1113/jphysiol.1994.sp020272.

Abstract
  1. Tactile directional sensibility is considered to rely on the parallel processing of direction-contingent sensory data that depend on skin stretching caused by friction, and spatial cues that vary with time. A temperature-controlled airstream stimulus that prevented the activation of stretch receptors was used to investigate directional sensibility for the skin of the forearm. 2. The dependence on contact load and distance of movement was determined for normal subjects with a two-alternative forced-choice method. Testing was performed under two conditions, elbow bent or straight. Bracing the skin by straightening the arm did not alter the accuracy of the directional sensibility, in contrast to previous findings with stimuli that caused friction. 3. The accuracy of directional sensibility was correlated linearly to the logarithm of the distance of movement of the air jet. No correlation was found between accuracy and contact load, unlike findings with stimuli that cause friction. 4. Measurements were made with different subjects to determine the threshold distance at constant load. On average, subjects were able to distinguish direction with movements of < or = 8 mm. This acuity is sharper than has been reported with static stimuli. There was no correlation between subjects' threshold distances for judging direction and spatial acuity measured with absolute point localization. 5. The ability to distinguish direction was poor for the airstream stimulus compared with stimuli causing frictional contact with hairy skin. Nevertheless, the present findings are consistent with the suggestion that cutaneous spatial acuity is better for dynamic than for static stimuli.
摘要
  1. 触觉方向感被认为依赖于对方向相关感觉数据的并行处理,这些数据取决于由摩擦引起的皮肤拉伸以及随时间变化的空间线索。使用一种可防止拉伸感受器激活的温度控制气流刺激来研究前臂皮肤的方向感。2. 采用二选一强制选择法确定正常受试者对接触负荷和移动距离的依赖性。测试在两种条件下进行,即肘部弯曲或伸直。与先前关于引起摩擦的刺激的研究结果相反,伸直手臂支撑皮肤并不会改变方向感的准确性。3. 方向感的准确性与喷气移动距离的对数呈线性相关。与引起摩擦的刺激的研究结果不同,未发现准确性与接触负荷之间存在相关性。4. 对不同受试者进行测量以确定恒定负荷下的阈值距离。平均而言,受试者能够通过小于或等于8毫米的移动来区分方向。这种敏锐度比静态刺激所报告的更为敏锐。受试者判断方向的阈值距离与用绝对点定位测量的空间敏锐度之间没有相关性。5. 与引起与多毛皮肤摩擦接触的刺激相比,气流刺激的方向辨别能力较差。然而,目前的研究结果与以下观点一致,即皮肤空间敏锐度对动态刺激比对静态刺激更好。

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