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重新审视胼胝体性失用症的研究:右半球可以模仿手的朝向,但不能模仿手的位置。

Revisiting a study of callosal apraxia: the right hemisphere can imitate the orientation but not the position of the hand.

机构信息

Learning Algorithms and Systems Laboratory, Ecole Polytechnique Fédérale de Lausanne, Lausanne, Switzerland.

出版信息

Neuropsychologia. 2010 Jul;48(9):2509-16. doi: 10.1016/j.neuropsychologia.2010.04.025. Epub 2010 May 7.

Abstract

Callosal disconnection can reveal asymmetrical contributions of the two brain hemispheres to praxis. In this paper, we revisit a study of a patient with callosal disconnection (Goldenberg et al., 2001, Neuropsychologia, 39:1432-1443), who perfectly imitated meaningless gestures when imitation was controlled only by the left hemisphere, but was severely impaired when the right hemisphere was in charge of motor control. We decomposed the gestures into a set of geometric variables that were to be reproduced, such as the orientation of the hand and the position of contact between the hand and the face. Whereas orientation of the hand in extrinsic coordinates was replicated correctly by both hemispheres, only the left hemisphere reproduced correctly the position of contact between the hand and the face. This goal-dissociation as well as several partial perseveration errors speak against the hypothesis of a direct route from perception to motor replication of gestures, as interruption of a direct route would probably impair all the features of the gesture. We speculate that incorrect coordination between the reproductions of multiple goals may be the core deficit underlying callosal apraxia.

摘要

胼胝体切断术可以揭示大脑两个半球对动作执行的不对称贡献。在本文中,我们重新研究了一名胼胝体切断术患者(Goldenberg 等人,2001 年,《神经心理学》,39:1432-1443)的研究。当仅由左半球控制模仿时,该患者可以完美地模仿无意义的手势,但当右半球负责运动控制时,患者则严重受损。我们将手势分解为一组要复制的几何变量,例如手的方向和手与脸接触的位置。尽管手在外在坐标中的方向由两个半球都正确复制,但只有左半球正确复制了手与脸之间的接触位置。这种目标分离以及几个部分的持续错误都反对从感知到手势的运动复制的直接途径的假设,因为直接途径的中断可能会损害手势的所有特征。我们推测,多个目标的再现之间不正确的协调可能是胼胝体失用症的核心缺陷。

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