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首页> 外文期刊>Journal of Neurophysiology >Illusions of force perception: the role of sensori-motor predictions, visual information, and motor errors.
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Illusions of force perception: the role of sensori-motor predictions, visual information, and motor errors.

机译:力觉错觉:感觉运动预测,视觉信息和运动错误的作用。

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摘要

Internal predictions influence the perception of force. When we support an object with one hand and lift it up with the other, we expect the force to disappear from the first, postural hand. In a virtual reality system, we violated this prediction by maintaining the force on the postural hand, whereas the object was still seen and felt to be lifted by the lifting hand. In this situation, participants perceived an illusionary increase in force on the postural hand, which was, in reality, constant. We test three possible mechanisms of how force perception may be influenced in this context. First, we showed that part of the illusion can be linked to a sensorimotor prediction--the predicted sensory consequences based on an efference copy of the lifting action. The illusion is reduced when the object is lifted by an external force. We also showed that the illusion changes on a trial-by-trial basis, paralleling the fast adaptation of the postural response. Second, motor errors that arise from a miscalibratedforward model do not contribute to the illusion; the illusion was unchanged even when we prevented motor errors by supporting the postural hand. Finally, visual information signaling the removal of the object is sufficient to elicit part of the illusion. These results argue that both sensorimotor predictions and visual object information, but not motor errors, influence force perception.
机译:内部预测会影响对力的感知。当我们用一只手支撑一个物体并用另一只手将其提起时,我们期望该力会从第一手姿势手势中消失。在虚拟现实系统中,我们通过保持姿势手上的力来违反此预测,而仍然可以看到并感觉到该物体被举起的手举起。在这种情况下,参与者感觉到姿势手的幻觉增加,实际上是恒定的。我们测试了在这种情况下如何影响力感知的三种可能的机制。首先,我们证明了幻觉的一部分可以与感觉运动预测相关联-感觉运动效果基于举起动作的有效拷贝。当物体被外力抬起时,错觉会减少。我们还表明,幻觉在逐项试验的基础上发生了变化,与姿势反应的快速适应相平行。其次,由错误校准的模型引起的运动误差不会导致幻觉。即使我们通过支撑姿势手来防止运动失误,错觉也没有改变。最后,发信号表示物体已被移除的视觉信息足以引起部分错觉。这些结果表明,感觉运动的预测和视觉对象信息,而不是运动错误,都影响力感知。

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