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动作模拟的躯体和运动成分

Somatic and motor components of action simulation.

作者信息

Avenanti Alessio, Bolognini Nadia, Maravita Angelo, Aglioti Salvatore Maria

机构信息

Dipartimento di Psicologia, Università degli Studi di Roma La Sapienza, Via dei Marsi 78, I-00185 Rome, Italy.

出版信息

Curr Biol. 2007 Dec 18;17(24):2129-35. doi: 10.1016/j.cub.2007.11.045.

Abstract

Seminal studies in monkeys report that the viewing of actions performed by other individuals activates frontal and parietal cortical areas typically involved in action planning and execution. That mirroring actions might rely on both motor and somatosensory components is suggested by reports that action observation and execution increase neural activity in motor and in somatosensory areas. This occurs not only during observation of naturalistic movements but also during the viewing of biomechanically impossible movements that tap the afferent component of action, possibly by eliciting strong somatic feelings in the onlooker. Although somatosensory feedback is inherently linked to action execution, information on the possible causative role of frontal and parietal cortices in simulating motor and sensory action components is lacking. By combining low-frequency repetitive and single-pulse transcranial magnetic stimulation, we found that virtual lesions of ventral premotor cortex (vPMc) and primary somatosensory cortex (S1) suppressed mirror motor facilitation contingent upon observation of possible and impossible movements, respectively. In contrast, virtual lesions of primary motor cortex did not influence mirror motor facilitation. The reported double dissociation suggests that vPMc and S1 play an active, differential role in simulating efferent and afferent components of observed actions.

摘要

对猴子的开创性研究报告称,观察其他个体执行的动作会激活通常参与动作规划和执行的额叶和顶叶皮质区域。有报告指出动作观察和执行会增加运动和体感区域的神经活动,这表明镜像动作可能依赖于运动和体感成分。这种情况不仅发生在观察自然动作期间,也发生在观察那些利用动作传入成分的生物力学上不可能的动作时,这可能是通过在旁观者身上引发强烈的躯体感觉来实现的。虽然体感反馈与动作执行有着内在联系,但关于额叶和顶叶皮质在模拟运动和感觉动作成分中可能的因果作用的信息却很缺乏。通过结合低频重复和单脉冲经颅磁刺激,我们发现腹侧运动前皮质(vPMc)和初级体感皮质(S1)的虚拟损伤分别抑制了基于观察可能和不可能动作的镜像运动促进。相比之下,初级运动皮质的虚拟损伤并未影响镜像运动促进。所报告的双重分离表明,vPMc和S1在模拟观察到的动作的传出和传入成分中发挥着积极的、不同的作用。

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