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实际运动和想象运动揭示了脑岛皮层在运动控制中的双重作用。

Actual and Imagined Movements Reveal a Dual Role of the Insular Cortex for Motor Control.

机构信息

INSERM UMR1093-CAPS, UFR des Sciences du Sport, Université Bourgogne Franche-Comté, F-21000, Dijon, France.

Centre National d'Etudes Spatiales (CNES), 75001, Paris, France.

出版信息

Cereb Cortex. 2021 Mar 31;31(5):2586-2594. doi: 10.1093/cercor/bhaa376.

Abstract

Movements rely on a mixture of feedforward and feedback mechanisms. With experience, the brain builds internal representations of actions in different contexts. Many factors are taken into account in this process among which is the immutable presence of gravity. Any displacement of a massive body in the gravitational field generates forces and torques that must be predicted and compensated by appropriate motor commands. The insular cortex is a key brain area for graviception. However, no attempt has been made to address whether the same internal representation of gravity is shared between feedforward and feedback mechanisms. Here, participants either mentally simulated (only feedforward) or performed (feedforward and feedback) vertical movements of the hand. We found that the posterior part of the insular cortex was engaged when feedback was processed. The anterior insula, however, was activated only in mental simulation of the action. A psychophysical experiment demonstrates participants' ability to integrate the effects of gravity. Our results point toward a dual internal representation of gravity within the insula. We discuss the conceptual link between these two dualities.

摘要

运动依赖于前馈和反馈机制的混合。随着经验的积累,大脑会在不同的情境下建立起对动作的内部表示。在这个过程中,会考虑许多因素,其中包括不可变的重力存在。在重力场中移动一个质量体时会产生力和扭矩,这些力和扭矩必须通过适当的运动指令进行预测和补偿。脑岛是重力感知的关键脑区。然而,尚未有人试图解决前馈和反馈机制之间是否共享相同的重力内部表示。在这里,参与者要么进行手部的垂直运动的心理模拟(仅前馈),要么进行手部的垂直运动(前馈和反馈)。我们发现,当处理反馈时,脑岛的后部分被激活。然而,在前馈的动作心理模拟中,仅激活了脑岛的前部分。一项心理物理学实验证明了参与者整合重力影响的能力。我们的结果表明,脑岛内部存在重力的双重内部表示。我们讨论了这两种二元性之间的概念联系。

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