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观察者-代理运动相似性促进动作意图解码。

Observer-Agent Kinematic Similarity Facilitates Action Intention Decoding.

机构信息

Consiglio Nazionale delle Ricerche (CNR), Istituto di Neuroscienze, sede di Parma, Italy.

出版信息

Sci Rep. 2020 Feb 13;10(1):2605. doi: 10.1038/s41598-020-59176-z.

Abstract

It is well known that the kinematics of an action is modulated by the underlying motor intention. In turn, kinematics serves as a cue also during action observation, providing hints about the intention of the observed action. However, an open question is whether decoding others' intentions on the basis of their kinematics depends solely on how much the kinematics varies across different actions, or rather it is also influenced by its similarity with the observer motor repertoire. The execution of reach-to-grasp and place actions, differing for target size and context, was recorded in terms of upper-limb kinematics in 21 volunteers and in an actor. Volunteers had later to observe the sole reach-to-grasp phase of the actor's actions, and predict the underlying intention. The potential benefit of the kinematic actor-participant similarity for recognition accuracy was evaluated. In execution, both target size and context modulated specific kinematic parameters. More importantly, although participants performed above chance in intention recognition, the similarity of motor patterns positively correlated with recognition accuracy. Overall, these data indicate that kinematic similarity exerts a facilitative role in intention recognition, providing further support to the view of action intention recognition as a visuo-motor process grounded in motor resonance.

摘要

众所周知,动作的运动学是由潜在的运动意图来调节的。反过来,运动学在动作观察中也作为一种线索,提供关于观察到的动作意图的提示。然而,一个悬而未决的问题是,基于运动学来解码他人的意图是否仅仅取决于运动学在不同动作之间的变化程度,或者它是否也受到其与观察者运动技能库的相似性的影响。在 21 名志愿者和一名演员中,记录了针对不同目标大小和情境的伸手抓握和放置动作的上肢运动学。志愿者随后需要观察演员动作的仅伸手抓握阶段,并预测潜在意图。评估了运动学演员-参与者相似性对识别准确性的潜在益处。在执行过程中,目标大小和情境都调节了特定的运动学参数。更重要的是,尽管参与者在意图识别中表现出高于机会水平的表现,但运动模式的相似性与识别准确性呈正相关。总体而言,这些数据表明运动学相似性在意图识别中发挥了促进作用,进一步支持了将动作意图识别视为基于运动共鸣的视动过程的观点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dc66/7018748/bdeb378328b5/41598_2020_59176_Fig1_HTML.jpg

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