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手指的结构表示依赖于解剖参考系和空间参考系。

Structural representations of fingers rely on both anatomical and spatial reference frames.

机构信息

Department of Psychological Sciences, Birkbeck, University of London.

出版信息

J Exp Psychol Hum Percept Perform. 2020 Feb;46(2):125-130. doi: 10.1037/xhp0000715.

Abstract

Finger agnosia refers to a neurological condition in which patients with left posterior parietal lesions fail to identify their fingers, despite having relatively preserved abilities in sensation and skilled action. This dissociation suggests that the structural body representations (BSRs) may be distinct from sensorimotor representations. However, recent research has reported that postural changes modulate representation of hand structure, revealing dynamic interactions between structural and sensorimotor body representations. However, it is unknown how and to what extent anatomical and spatial proximity contribute to shape the hand structural representation. We investigate this question using the "in-between" test in which participants estimate how many unstimulated fingers are in between 2 touched fingers of the left hand placed palm down. The first phalange of the participants' fingers was touched on the left or right side. Judged finger numerosity was greater when fingers were stimulated on far sides (i.e., opposite sides of the 2 fingers) compared to when they were stimulated on close (i.e., sides facing each other's) or middistance (i.e., sides facing in the same direction) sides. Therefore, finger identification was modulated by anatomical and spatial proximity in external space between touches. This demonstrates that BSRs rely on both anatomical and external reference frames. (PsycINFO Database Record (c) 2020 APA, all rights reserved).

摘要

手指失认症是一种神经疾病,患者左顶叶后部损伤后无法识别自己的手指,尽管其感觉和熟练动作能力相对保留。这种分离表明结构性身体代表(BSR)可能与感觉运动代表不同。然而,最近的研究报告称,姿势变化调节手部结构的代表,揭示了结构性和感觉运动身体代表之间的动态相互作用。然而,尚不清楚解剖和空间接近度如何以及在何种程度上有助于塑造手部结构代表。我们使用“中间”测试来研究这个问题,在该测试中,参与者估计放在手掌向下的左手的两个被触摸的手指之间有多少个未被刺激的手指。参与者的手指的第一指节被触摸在左侧或右侧。与手指被刺激在近侧(即,彼此相对的侧面)或中距(即,朝向同一方向的侧面)相比,当手指被刺激在远侧(即,两个手指相对的侧面)时,判断的手指数量更大。因此,手指识别受到触摸之间外部空间的解剖和空间接近度的调节。这表明 BSR 既依赖于解剖参考框架,也依赖于外部参考框架。

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