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Detecting and correcting errors in rapid aiming movements: effects of movement time, distance, and velocity.

机译:检测和纠正快速瞄准运动中的错误:运动时间,距离和速度的影响。

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摘要

According to closed-loop accounts of motor control, movement errors are detected by comparing sensory feedback to an acquired reference state. Differences between the reference state and the movement-produced feedback results in an error signal that serves as a basis for a correction. The main question addressed in the current study was how distance, movement time, and velocity influence both spatial or temporal error detection. Forty college-aged participants (30 women and 10 men) performed rapid aiming movements over 30 degrees or 50 degrees in either 210 ms or 350 ms without vision. The participants verbally estimated the distance moved and the movement time during acquisition before knowledge of results was given and during an immediate retention test without knowledge of results. Spatial and temporal objective-subjective correlations were greater in the 210-ms condition compared to the 350-ms condition, but were not related to movement velocity.
机译:根据电动机控制的闭环说明,通过将感官反馈与获取的参考状态进行比较来检测运动错误。参考状态和运动产生的反馈之间的差异导致误差信号,该误差信号用作校正的基础。当前研究中解决的主要问题是距离,移动时间和速度如何影响空间或时间错误检测。 40名大学年龄的参与者(30名女性和10名男性)在210毫秒或350毫秒无视力的情况下,进行了3​​0度或50度以上的快速瞄准运动。参与者口头估计了在获得结果之前的获取过程中以及在不知道结果的情况下立即进行保留测试期间的移动距离和移动时间。 210毫秒条件下的时空客观主观相关性高于350毫秒条件,但与运动速度无关。

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