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Inter-joint synergies increase with motor task uncertainty in a whole-body pointing task

机译:在全身指向任务中,关节动作之间的协同作用会随着运动任务的不确定性而增加

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摘要

The study investigates the effect of task uncertainty on motor synergies and movement time for a whole-body pointing task employing a Fitts' like paradigm. Thirty-three healthy, young adults were asked to hold a 1.5-m long stick and point it as quickly and accurately as possible to the unmarked center of fixed targets on the ceiling at 150% of the subject's height from the ground. Each subject performed fifteen continuous repetitions for each target size (1cm, 2cm, 3cm, 5cm, 8cm, 13cm and 21cm diameters of circles). It was assumed that the task uncertainty increased as the target size increased. Motion capture was used to collect the data for joint angles in the sagittal plane and uncontrolled manifold (UCM) analysis was used in order to investigate synergistic actions of joints. Results from the study revealed that the movement time decreased as task uncertainty increased. The variability within the uncontrolled manifold (V UCM) systematically increased with task uncertainty, resulting in an increase in the index of inter-joint synergies (ΔV), although the pointing task errors (V ORT) were consistent across different target sizes. The results suggest that the central nervous system systematically modulates the inter-joint synergies with task uncertainty in the whole-body pointing task without affecting motor performance.
机译:这项研究调查了采用Fitts样例的全身指点任务,任务不确定性对运动协同作用和运动时间的影响。 33名健康的年轻人被要求握住1.5米长的木棍,并尽可能快,准确地将木棍指向天花板上未标记的固定目标中心,距离目标从地面的高度的150%。每个受试者针对每个目标尺寸(直径分别为1cm,2cm,3cm,5cm,8cm,13cm和21cm的圆)执行15次连续重复。假定任务不确定性随目标大小的增加而增加。运动捕获用于收集矢状面中关节角度的数据,并使用不受控制的歧管(UCM)分析来研究关节的协同作用。研究结果表明,随着任务不确定性的增加,运动时间减少。尽管任务目标误差(V ORT)在不同的目标尺寸范围内是一致的,但随着任务的不确定性,不受控制的歧管(V UCM)内的变异性系统地增加,导致关节间协同效应的指数(ΔV)增加。结果表明,中枢神经系统在全身指向性任务中系统性地调节了具有不确定性任务的关节间协同作用,而不影响运动性能。

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