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Nonvisual motor learning improves visual motion perception: evidence from violating the two-thirds power law.

机译:非视觉运动学习可改善视觉运动知觉:违反三分之二幂定律的证据。

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Few studies have reported direct effects of motor learning on visual perception, especially when using novel movements for the motor system. Atypical motor behaviors that violate movement constraints provide an excellent opportunity to study action-to-perception transfer. In our study, we passively trained blindfolded participants on movements violating the 2/3 power law. Before and after motor training, participants performed a visual discrimination task in which they decided whether two consecutive movements were same or different. For motor training, we randomly assigned the participants to two motor training groups or a control group. The motor training group experienced either a weak or a strong elliptic velocity profile on a circular trajectory that matched one of the visual test stimuli. The control group was presented with linear trajectories unrelated to the viewed movements. After each training session, participants actively reproduced the movement to assess motor learning. The group trained on the strong elliptic velocity profile reproduced movements with increasing elliptic velocity profiles while circular geometry remained constant. Furthermore, both training groups improved in visual discrimination ability for the learned movement as well as for highly similar movements. Participants in the control group, however, did not show any improvements in the visual discrimination task nor did participants who did not acquire the trained movement. The present results provide evidence for a transfer from action to perception which generalizes to highly related movements and depends on the success of motor learning. Moreover, under specific conditions, it seems to be possible to acquire movements deviating from the 2/3 power law.
机译:很少有研究报道运动学习对视觉的直接影响,特别是当对运动系统使用新颖的动作时。违反运动约束的非典型运动行为为研究行动到感知的转移提供了极好的机会。在我们的研究中,我们被动训练了蒙住眼睛的参与者违反2/3幂定律的动作。在运动训练前后,参与者执行了视觉辨别任务,他们决定两个连续的动作是相同还是不同。对于运动训练,我们将参与者随机分为两个运动训练组或一个对照组。运动训练小组在与视觉测试刺激之一匹配的圆形轨迹上经历了弱或强的椭圆速度分布。对照组呈现与观察到的运动无关的线性轨迹。每次培训之后,参与者都积极地复制了动作以评估运动学习。在强椭圆速度剖面上训练的小组再现了随着椭圆速度剖面增加而运动,而圆形几何形状保持恒定的情况。此外,两个训练组都提高了所学动作以及高度相似动作的视觉辨别能力。然而,对照组的参与者在视觉辨别任务上没有表现出任何改善,没有接受训练的动作的参与者也没有表现出任何改善。本研究结果提供了从动作到感知的转变的证据,这种转变普遍涉及高度相关的动作,并取决于运动学习的成功。而且,在特定条件下,似乎有可能获得偏离2/3幂定律的运动。

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