Motor imagery is widely used to study cognitive aspects of the neural control of action. However, what is exactly simulated during motor imagery is still a matter of debate. On the one hand, it is conceivable that motor imagery is an embodied cognitive process, involving a simulation of movements of one's own body. The alternative possibility is that, although motor imagery relies on knowledge of the motor processes, it does not entail an actual motor simulation that is influenced by the physical configuration of one's own body. Here we discriminate between these two hypotheses, in the context of an established motor imagery task: laterality judgments of rotated hand drawings. We found that reaction times of hand laterality judgments followed the biomechanical constraints of left or right hand movements. Crucially, the position of subjects' own left and right arm influenced laterality judgments of left and right hands. In neural terms, hand laterality judgments activated a parieto-frontal network. The activity within this network increased with increasing biomechanical complexity of the imagined hand movements, even when the amount of stimulus rotation was identical. Moreover, activity in the intraparietal sulcus was modulated by subjects' own hand position: a larger incongruence in orientation between the subjects' hand and the stimulus hand led to a selective increase in intraparietal activity. Our results indicate that motor imagery generates motor plans that depend on the current configuration of the limbs. This motor plan is calculated by a parieto-frontal network. Within this network, the posterior parietal cortex appears to incorporate proprioceptive information related to the current position of the body into the motor plan.

译文

:Motor imagery被广泛用于研究动作神经控制的认知方面。但是,在汽车成像过程中精确模拟的内容仍是一个有争议的问题。一方面,可以想象运动图像是一个具体的认知过程,涉及到模拟人体运动的过程。另一种可能性是,尽管运动图像依赖于对运动过程的了解,但它并不意味着实际的运动模拟会受到人体自身身体形态的影响。在这里,我们在已建立的汽车成像任务中区分这两个假设:旋转手绘图的侧向性判断。我们发现手侧向性判断的反应时间遵循左右手运动的生物力学约束。至关重要的是,受试者自己的左臂和右臂的位置影响了左手和右手的侧向性判断。用神经学的术语来说,手的侧向性判断激活了一个顶额额叶网络。即使刺激旋转量相同,该网络内的活动也会随着所想象的手部运动的生物力学复杂性的增加而增加。此外,顶壁内沟中的活动受受试者自身的手的位置调节:受试者的手和刺激手之间方向上的较大不一致导致顶壁内活动的选择性增加。我们的结果表明,运动图像会生成取决于四肢当前配置的运动计划。这个运动计划是由一个额叶额叶网络计算的。在这个网络中,顶叶后皮质似乎将与身体当前位置有关的本体感受信息纳入运动计划。

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