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自闭症中非典型生物运动的观察性学习。

Observational learning of atypical biological kinematics in autism.

机构信息

Center for Human Technologies, Fondazione Istituto Italiano di Tecnologia, Genoa, Italy.

Department of Neurology, University Medical Center Hamburg-Eppendorf (UKE), Hamburg, Germany.

出版信息

Autism Res. 2023 Sep;16(9):1799-1810. doi: 10.1002/aur.3002. Epub 2023 Aug 3.

Abstract

Observing and voluntarily imitating the biological kinematics displayed by a model underpins the acquisition of new motor skills via sensorimotor processes linking perception with action. Differences in voluntary imitation in autism could be related to sensorimotor processing activity during action-observation of biological motion, as well as how sensorimotor integration processing occurs across imitation attempts. Using an observational practice protocol, which minimized the active contribution of the peripheral sensorimotor system, we examined the contribution of sensorimotor processing during action-observation. The data showed that autistic participants imitated both the temporal duration and atypical kinematic profile of the observed movement with a similar level of accuracy as neurotypical participants. These findings suggest the lower-level perception-action processes responsible for encoding biological kinematics during the action-observation phase of imitation are operational in autism. As there was no task-specific engagement of the peripheral sensorimotor system during observational practice, imitation difficulties in autism are most likely underpinned by sensorimotor integration issues related to the processing of efferent and (re)afferent sensorimotor information during trial-to-trial motor execution.

摘要

通过感知运动过程将感知与动作联系起来,观察和自愿模仿模型所展示的生物运动学,是通过感觉运动过程获得新运动技能的基础。自闭症患者自愿模仿能力的差异可能与对生物运动的动作观察过程中的感觉运动处理活动有关,以及感觉运动整合处理在模仿尝试过程中是如何发生的。我们使用一种观察性实践方案,最大限度地减少外周感觉运动系统的主动贡献,以检查动作观察过程中的感觉运动处理的贡献。数据表明,自闭症患者模仿观察到的运动的时间持续时间和非典型运动学特征,其准确性与神经典型参与者相似。这些发现表明,在模仿的动作观察阶段负责对生物运动学进行编码的较低层次感知动作过程在自闭症中是可行的。由于在观察性实践过程中没有特定于任务的外周感觉运动系统的参与,因此自闭症患者的模仿困难很可能是由与在逐次运动执行过程中处理传出和(再)传入感觉运动信息的感觉运动整合问题有关。

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