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Involvement of the Superior Temporal Cortex in Action Execution and Action Observation

机译:上颞叶皮层参与动作执行和动作观察

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摘要

The role of the superior temporal sulcus (STs) in action execution and action observation remains unsettled. In an attempt to shed more light on the matter, we used the quantitative method of 14C-deoxyglucose to reveal changes in activity, in the cortex of STs and adjacent inferior and superior temporal convexities of monkeys, elicited by reaching-to-grasp in the light or in the dark and by observation of the same action executed by an external agent. We found that observation of reaching-to-grasp activated the components of the superior temporal polysensory area [STP; including temporo-parieto-occipital association area (TPO), PGa, and IPa], the motion complex [including medial superior temporal area (MST), fundus of superior temporal area (FST), and dorsal and ventral parts of the middle temporal area (MTd and MTv, respectively)], and area TS2. A significant part of most of these activations was associated with observation of the goal-directed action, and a smaller part with the perception of arm-motion. Execution of reaching-to-grasp in the light-activated areas TS2, STP partially and marginally, and MT compared with the fixation but not to the arm-motion control. Consequently, MT-activation is associated with the arm-motion and not with the purposeful action. Finally, reaching-to-grasp in complete darkness activated all components of the motion complex. Conclusively, lack of visibility of our own actions involves the motion complex, whereas observation of others' actions engages area STP and the motion complex. Our previous and present findings together suggest that sensory effects are interweaved with motor commands in integrated action codes, and observation of an action or its execution in complete darkness triggers the retrieval of the visual representation of the action.
机译:颞上沟(STs)在动作执行和动作观察中的作用尚未确定。为了进一步阐明该问题,我们使用了 14 C-脱氧葡萄糖的定量方法揭示了ST皮层以及猴子相邻的上下颞凸的活动变化。通过在明亮或黑暗中抓握并观察外部因素执行的相同动作来实现。我们发现观察到掌握激活了上颞颞多感官区域[STP;包括颞顶枕联合区(TPO),PGa和IPa],运动复合体[包括内侧上颞叶区域(MST),上颞叶区域的眼底(FST)以及中颞叶区域的背腹侧(分别为MTd和MTv)]和区域TS2。这些激活中的很大一部分与观察目标定向动作有关,而一小部分与对手臂运动的感知有关。与固定相比,在光激活区域TS2,STP和MT中部分和边缘执行到达抓握而不是手臂运动控制。因此,MT激活与手臂运动相关,而不与有目的的动作相关。最终,在完全黑暗的环境中抓握激活了运动复合体的所有组件。最终,缺乏我们自己行动的可见性会涉及运动综合体,而对他人行动的观察会涉及区域STP和运动综合体。我们以前和现在的发现共同表明,在综合动作代码中,感觉效果与运动命令交织在一起,在完全黑暗的环境中观察动作或执行动作会触发动作的视觉表示。

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