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首页> 外文期刊>Human movement science >Periodic change in phase relationship between target and hand motion during visuo-manual tracking task: Behavioral evidence for intermittent control
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Periodic change in phase relationship between target and hand motion during visuo-manual tracking task: Behavioral evidence for intermittent control

机译:手动跟踪任务期间目标与手部运动之间的相位关系的周期性变化:间歇控制的行为证据

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摘要

When one performs visuo-manual tracking tasks, velocity profile of hand movements shows discontinuous patterns even if the target moves smoothly. A crucial factor of this "intermittency" is considerable delay in the sensorimotor feedback loop, and several researchers have suggested that the cause is intermittent correction of motor commands. However, when and how the brain monitors task performance and updates motor commands in a continuous motor task is uncertain. We examined how tracking error was affected by the timing of target disappearance during a tracking task. Results showed that tracking error, defined as the average phase difference between target and hand, varied periodically in all conditions. Hand preceded target at one specific phase but followed it at another, implying that motor control was not performed in a temporally uniform manner. Tracking stability was evaluated by the variance in phase difference, and changed depending on the timing of target-removal. The variability was larger when target disappeared around turning points than that when it disappeared around the center of motion. This shows that visual information at turning points is more effectively exploited for motor control of sinusoidal target tracking, suggesting that our brain controls hand movements with intermittent reference to visual information.
机译:当执行视觉手动跟踪任务时,即使目标平稳移动,手的移动速度也会显示不连续的模式。这种“间歇性”的一个关键因素是感觉运动反馈回路中的相当大的延迟,并且一些研究人员认为,原因是运动命令的间歇性校正。但是,在连续的运动任务中,大脑何时以及如何监视任务性能并更新运动命令尚不确定。我们研究了跟踪任务中目标消失的时间对跟踪错误的影响。结果表明,跟踪误差(定义为目标与手之间的平均相位差)在所有条件下均会定期变化。手在一个特定阶段先于目标,但在另一个特定阶段先于目标,这意味着运动控制不是在时间上统一的。通过相位差的变化来评估跟踪稳定性,并且跟踪稳定性会根据去除目标的时间而改变。当目标在转折点附近消失时,其变异性大于在运动中心附近消失时的变异性。这表明转折点上的视觉信息被更有效地用于正弦目标跟踪的运动控制,这表明我们的大脑通过间歇性地参考视觉信息来控制手部动作。

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