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观察他人提起轻或重的物体:初级运动皮层中握力的时间依赖性编码。

Observing how others lift light or heavy objects: time-dependent encoding of grip force in the primary motor cortex.

机构信息

Research Centre of Movement Control and Neuroplasticity, Department of Biomedical Kinesiology, Katholieke Universiteit Leuven, Tervuursevest 101, 3001 Heverlee, Belgium.

出版信息

Psychol Res. 2012 Jul;76(4):503-13. doi: 10.1007/s00426-011-0380-1. Epub 2011 Sep 20.

Abstract

During movement observation, corticomotor excitability of the observer's primary motor cortex (M1) is modulated according to the force requirements of the observed action. Here, we explored the time course of observation-induced force encoding. Force-related changes in M1-excitability were assessed by delivering transcranial magnetic stimulations at distinct temporal phases of an observed reach-grasp-lift action. Temporal changes in force-related electromyographic activity were also assessed during active movement execution. In observation conditions in which a heavy object was lifted, M1-excitability was higher compared to conditions in which a light object was lifted. Both during observation and execution, differential force encoding tended to gradually increase from the grasping phase until the late lift phase. Surprisingly, however, during observation, force encoding was already present at the early reach phase: a time point at which no visual cues on the object's weight were available to the observer. As the observer was aware that the same weight condition was presented repeatedly, this finding may indicate that prior predictions concerning the upcoming weight condition are reflected by M1 excitability. Overall, findings may provide indications that the observer's motor system represents motor predictions as well as muscular requirements to infer the observed movement goal.

摘要

在运动观察过程中,观察者初级运动皮层(M1)的运动皮质兴奋性会根据观察到的动作的力需求进行调节。在这里,我们探索了观察引起的力编码的时间过程。通过在观察到的伸手-抓握-提起动作的不同时间相位施加经颅磁刺激,评估了 M1 兴奋性与力相关的变化。在主动运动执行过程中,还评估了与力相关的肌电图活动的时间变化。在观察到举起重物的条件下,与举起轻物的条件相比,M1 兴奋性更高。在观察和执行过程中,力编码都倾向于从抓握阶段逐渐增加到后期提起阶段。然而,令人惊讶的是,在观察过程中,力编码已经出现在早期的伸展阶段:此时观察者无法获得关于物体重量的视觉线索。由于观察者知道重复呈现相同的重量条件,这一发现可能表明,M1 兴奋性反映了对即将到来的重量条件的先前预测。总的来说,这些发现可能表明观察者的运动系统代表运动预测以及肌肉需求,以推断观察到的运动目标。

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