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来自视觉和内部模型的关于所抓握物体的重量的信息在初级运动皮层内相互作用。

Information about the weight of grasped objects from vision and internal models interacts within the primary motor cortex.

机构信息

Sobell Department of Motor Neuroscience and Movement Disorders, Institute of Neurology, UCL, Queen Square, London WC1N 3BG, United Kingdom.

出版信息

J Neurosci. 2010 May 19;30(20):6984-90. doi: 10.1523/JNEUROSCI.6207-09.2010.

Abstract

When grasping and lifting different objects, visual cues and previously acquired knowledge enable us to prepare the upcoming grasp by scaling the fingertip forces according to the actual weight of the object. However, when no visual information is available, the weight of the object has to be predicted based on information learned from previous grasps. Here, we investigated how changes in corticospinal excitability (CSE) and grip force scaling depend on the presence of visual cues and the weight of previously lifted objects. CSE was assessed by delivering transcranial magnetic stimulation (TMS) at different times before grasp of the object. In conditions in which visual information was not provided, the size of motor evoked potentials (MEP) was larger when the object lifted was preceded by a heavy relative to a light object. Interestingly, the previous lift also affected MEP amplitude when visual cues about object weight were available but only in the period immediately after object presentation (50 ms); this effect had already declined for TMS delivered 150 ms after presentation. In a second experiment, we demonstrated that these CSE changes are used by the motor system to scale grip force. This suggests that the corticospinal system stores a "sensorimotor memory" of the grasp of different objects and relies on this memory when no visual cues are present. Moreover, visual information about weight interacts with this stored representation and allows the corticospinal system to switch rapidly to a different model of predictive grasp control.

摘要

当抓取和提起不同的物体时,视觉线索和先前获得的知识使我们能够通过根据物体的实际重量调整指尖力来准备即将到来的抓取。然而,当没有视觉信息可用时,必须根据从先前抓取中获得的信息来预测物体的重量。在这里,我们研究了皮质脊髓兴奋性 (CSE) 和抓握力缩放如何取决于视觉线索的存在和先前提起的物体的重量。通过在抓取物体之前的不同时间给予经颅磁刺激 (TMS) 来评估 CSE。在没有提供视觉信息的情况下,当物体提起之前是重物体而不是轻物体时,运动诱发电位 (MEP) 的大小更大。有趣的是,即使在有关于物体重量的视觉线索的情况下,先前的提起也会影响 MEP 幅度,但仅在物体呈现后立即的时间段内(50 毫秒);对于呈现后 150 毫秒给予的 TMS,这种效果已经下降。在第二个实验中,我们证明了这些 CSE 变化被运动系统用于调整握力。这表明皮质脊髓系统存储了不同物体抓取的“感觉运动记忆”,并且在没有视觉线索时依赖于该记忆。此外,关于重量的视觉信息与这种存储的表示相互作用,并允许皮质脊髓系统快速切换到不同的预测抓握控制模型。

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