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首页> 外文期刊>Frontiers in Psychology >Spontaneous Body Movements in Spatial Cognition
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Spontaneous Body Movements in Spatial Cognition

机译:空间认知中的自发身体运动

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摘要

People often perform spontaneous body movements during spatial tasks such as giving complex directions or orienting themselves on maps. How are these spontaneous gestures related to spatial problem-solving? We measured spontaneous movements during a perspective-taking task inspired by map reading. Analyzing the motion data to isolate rotation and translation components of motion in specific geometric relation to the task, we found out that most participants executed spontaneous miniature rotations of the head that were significantly related to the main task parameter. These head rotations were as if participants were trying to align themselves with the orientation on the map either in the image plane or on the ground plane, but with tiny amplitudes, typically below 1% of the actual movements. Our results are consistent with a model of sensorimotor prediction driving spatial reasoning. The efference copy of planned movements triggers this prediction mechanism. The movements themselves may then be mostly inhibited; the small spontaneous gestures that we measure are the visible traces of these planned but inhibited actions.
机译:人们经常在空间任务期间执行自发的身体运动,例如给出复杂的方向或将自己定向在地图上。这些自发的手势与解决空间问题有什么关系?我们在受地图阅读启发的透视任务中测量了自发运动。分析运动数据以分离出与任务具有特定几何关系的运动的旋转和平移分量,我们发现大多数参与者执行了与主要任务参数显着相关的头部的自发微型旋转。这些头部旋转就像参与者试图在图像平面或地面上使自己与地图上的方向对齐,但是幅度很小,通常低于实际运动的1%。我们的结果与驱动空间推理的感觉运动预测模型一致。计划动作的有效副本触发了此预测机制。这样,运动本身就可能被大部分抑制。我们测量的小的自发手势是这些计划但受抑制的动作的可见痕迹。

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