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触觉学习是特定于任务的,但可以在手指间转移。

Tactile learning is task specific but transfers between fingers.

作者信息

Sathian K, Zangaladze A

机构信息

Emory University School of Medicine, Department of Neurology, Atlanta, GA 30322, USA.

出版信息

Percept Psychophys. 1997 Jan;59(1):119-28. doi: 10.3758/bf03206854.

Abstract

Practice-related improvement in visual perception is highly specific for properties of the stimulus used in training. We explored the specificity of such perceptual learning in the human tactile system, using gratings consisting of alternating ridges and groves. Practice effects on grating discrimination showed limited transfer between grating sets defined by spatial variation in either groove width or ridge width, consistent with partially overlapping neural representations of these two spatial parameters. In contrast, substantial interdigital transfer of practice effects occurred for discrimination of gratings varying in either spatial parameter and also for spatial acuity-dependent discrimination of grating orientation. We conclude that tactile learning, although quite as task specific as in other sensory systems, generalizes with considerable facility across fingers, unlike visual learning, which is highly location specific.

摘要

与实践相关的视觉感知改善对于训练中使用的刺激特性具有高度特异性。我们利用由交替的脊和槽组成的光栅,探索了人类触觉系统中这种感知学习的特异性。对光栅辨别能力的实践效果表明,在由槽宽或脊宽的空间变化定义的光栅组之间,转移有限,这与这两个空间参数的部分重叠神经表征一致。相比之下,对于在任一空间参数上变化的光栅的辨别以及对于依赖空间敏锐度的光栅方向辨别,实践效果发生了显著的指间转移。我们得出结论,触觉学习虽然与其他感觉系统一样具有任务特异性,但与高度依赖位置的视觉学习不同,它能很容易地在手指间进行泛化。

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