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Mapping collective variable and synergy dynamics to task outcome in a perceptual-motor skill

机译:将集体变量和协同动力映射到感知运动技能中的任务结果

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摘要

In complex adaptive systems approaches to perceptual-motor control the mapping between the different categories of task dynamics: namely, task outcome, collective variable, neuromuscular synergies and individual joint configurations is a central theoretical issue, that has been primarily studied in bimanual tasks. Here we report an investigation in the roller ball task of how the task goal and multiple degrees of freedom of the arm-hand complex affords degeneracy between the respective properties of the task dynamics. The relation of the candidate collective variable, namely, the synchrony of the inner ball to outer shell motion of the roller ball and its relation to the task goal (continued increasing in ball speed), was examined as a function of the initial ball speed acting as a control parameter. Within trial analysis revealed initial search behavior for synchrony of ball and shell motion that was longer in duration with initial lower ball speed conditions. In contrast, higher initial ball speed conditions reduced the search time for and enhanced the rate of stabilization of the synchrony of inner ball and outer shell motion–features that facilitated the continued increase of ball speed and the probability of task success. Participants adopted one of three wrist-elbow neuromuscular synergies to manipulate the roller ball, the distribution of which was not influenced by either initial ball speed or task outcome. The pattern of findings over the different properties of task analysis of the roller ball provides evidence for the distinct but complementary dynamics of searching to form, stabilize and exploit a collective variable that satisfies the task goal through a small redundant set of arm-hand synergy motions.
机译:在用于感知运动控制的复杂自适应系统方法中,任务动态的不同类别之间的映射:任务结果,集体变量,神经肌肉协同作用和单个关节配置是一个中心理论问题,主要在双向任务中进行了研究。在这里,我们报告了一项有关滚球任务的调查,该研究涉及任务目标和手臂-手部复合体的多个自由度如何在任务动力学的各个属性之间产生退化。作为初始球速作用的函数,检查了候选集合变量的关系,即内球与滚球的外壳运动的同步及其与任务目标的关系(球速度的持续增加)。作为控制参数。在试验分析范围内,发现初始的球壳运动同步搜索行为在初始较低的球速条件下持续时间更长。相反,较高的初始球速条件减少了内球和外壳运动同步的搜索时间,并提高了稳定速度,这些特征有助于球速的持续提高和任务成功的可能性。参与者采用三种腕肘神经肌肉协同作用中的一种来操纵滚球,滚球的分布不受初始滚球速度或任务结果的影响。滚珠球任务分析的不同属性的发现模式为形成,稳定和利用集体变量的搜索提供了独特但互补的动力证据,该变量通过一组小的手臂手协同运动来满足任务目标。

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