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触觉空间敏感性与各向异性。

Tactile spatial sensitivity and anisotropy.

作者信息

Gibson Gregory O, Craig James C

机构信息

Department of Psychology, Indiana University, Bloomington, Indiana 47405, USA.

出版信息

Percept Psychophys. 2005 Aug;67(6):1061-79. doi: 10.3758/bf03193632.

Abstract

A gap detection task was examined for its usefulness as a measure of tactile spatial sensitivity and as a measure of anisotropy. In Experiment 1, sensitivity was measured with a gap detection task both with and without a latex glove at three locations on the hand: the fingerpad, fingerbase, and palm. Results showed that sensitivity varied as a function of location and was correlated with changes in the density of innervation of the primary afferent fibers. In accord with other measures of spatial sensitivity, the glove had a moderate effect on sensitivity in the gap detection task. The results both with and without the glove were more similar to those obtained using another measure of spatial sensitivity, the grating orientation task, than to those obtained using the smooth-grooved task, which is considered an intensive measure. In Experiments 2-4, anisotropy was examined using the gap detection and grating orientation tasks, as well as the smooth-grooved task. Locations on the index finger, palm, and arm were tested. Results indicated that anisotropy was revealed only by tasks that relied on spatial cues. The differences between spatial sensitivity measured in the proximal-distal orientation as compared with the lateral-medial orientation varied by location and were as much as 2.35/1. The results are discussed in terms of what they may reveal about the underlying mechanisms responsible for tactile anisotropy.

摘要

一项间隙检测任务被用于检验其作为触觉空间敏感性测量指标以及各向异性测量指标的有用性。在实验1中,使用间隙检测任务在手部的三个位置(指尖、指根和手掌)测量敏感性,测量时分别戴和不戴乳胶手套。结果表明,敏感性随位置而变化,并且与初级传入纤维的神经支配密度变化相关。与其他空间敏感性测量指标一致,手套在间隙检测任务中对敏感性有中等程度的影响。戴手套和不戴手套时的结果与使用另一种空间敏感性测量指标(光栅定向任务)所获得的结果比使用被认为是一种精细测量的光滑凹槽任务所获得的结果更为相似。在实验2 - 4中,使用间隙检测任务、光栅定向任务以及光滑凹槽任务来检验各向异性。对食指、手掌和手臂上的位置进行了测试。结果表明,只有依赖空间线索的任务才能揭示各向异性。与内外侧方向相比,在近远侧方向测量的空间敏感性差异因位置而异,高达2.35/1。根据这些结果对可能揭示触觉各向异性潜在机制的内容进行了讨论。

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