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感觉运动表征(结构)的变化:物体特征与目标导向抓握动作之间的功能相互作用。

Variations of Sensorimotor Representation (Structure): The Functional Interplay between Object Features and Goal-Directed Grasping Actions.

作者信息

Cienfuegos Miguel, Kim Taeho, Schack Thomas

机构信息

Neurocognition and Action-Biomechanics-Research Group, Faculty of Psychology and Sports Science, Bielefeld University, Postfach 100131, 33501 Bielefeld, Germany.

Center for Cognitive Interaction Technology (CITEC), Bielefeld University, 33619 Bielefeld, Germany.

出版信息

Brain Sci. 2022 Jun 30;12(7):873. doi: 10.3390/brainsci12070873.

Abstract

This study investigated the structure of sensorimotor representations during goal-directed grasping actions and explored their relationship with object features. Sixteen 3D-printed spheres that varied in size (i.e., a diameter of 20 mm, 40 mm, 60 mm, 80 mm) and weight (i.e., 40 g, 52 g, 76 g, 91 g) were used as experimental stimuli. The Structural Dimensional Analysis of Mental Representation (SDA-M) method was used to assess the sensorimotor representation structure during grasping. Participants were instructed in each trial to weigh, lift, or transport sets of two different spheres and to judge the similarity of the objects' features, taking into account the executed grasping movement. Each participant performed a total of 240 trials, and object presentation was randomized. The results suggest that the functional interplay between object features and goal-directed actions accounts for the significant variations in the structure of sensorimotor representations after grasping. Specifically, the relevance of the perceived objects' size and weight is closely interrelated to the grasping task demands and movement dynamics of the executed action. Our results suggest that distinct sensorimotor representations support individual grasping actions according to top-down influences modulated by motor intentions, functional task demands, and task-relevant object features.

摘要

本研究调查了目标导向抓握动作过程中感觉运动表征的结构,并探讨了它们与物体特征的关系。使用了16个3D打印的球体作为实验刺激物,这些球体在大小(即直径为20毫米、40毫米、60毫米、80毫米)和重量(即40克、52克、76克、91克)方面有所不同。采用心理表征的结构维度分析(SDA-M)方法来评估抓握过程中的感觉运动表征结构。在每次试验中,指导参与者对两组不同的球体进行称重、提起或搬运,并在考虑所执行的抓握动作的情况下判断物体特征的相似性。每个参与者总共进行了240次试验,物体呈现是随机的。结果表明,物体特征与目标导向动作之间的功能相互作用导致了抓握后感觉运动表征结构的显著变化。具体而言,所感知物体的大小和重量的相关性与抓握任务需求和所执行动作的运动动力学密切相关。我们的结果表明,不同的感觉运动表征根据由运动意图、功能任务需求和与任务相关的物体特征调制的自上而下的影响来支持个体抓握动作。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/55d2/9312880/1910dddf2c61/brainsci-12-00873-g001.jpg

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