首页> 美国卫生研究院文献>Frontiers in Physiology >Target Uncertainty During Motor Decision-Making: The Time Course of Movement Variability Reveals the Effect of Different Sources of Uncertainty on the Control of Reaching Movements
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Target Uncertainty During Motor Decision-Making: The Time Course of Movement Variability Reveals the Effect of Different Sources of Uncertainty on the Control of Reaching Movements

机译:运动决策过程中的目标不确定性:运动变异的时程揭示了不确定性的不同来源对到达运动控制的影响

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摘要

The processes underlying motor decision-making have recently caught considerable amount of scientific attention, focusing on the integration of empirical evidence from sensorimotor control research with psychological theories and computational models on decision-making. Empirical studies on motor decision-making suggest that the kinematics of goal-directed reaching movements are sensitive to the level of target uncertainty during movement planning. However, the source of uncertainty as a relevant factor influencing the process of motor decision-making has not been sufficiently considered, yet. In this study, we test the assumption that the source of target uncertainty has an effect on motor decision-making, which can be proven by analyzing movement variability during the time course of movement execution. Ten healthy young adults performed three blocks with 66 trials of goal-directed reaching movements in each block, across which the source and level of reach target uncertainty at movement onset were manipulated (“no uncertainty”, “extrinsic uncertainty”, and “intrinsic uncertainty”). Fingertip position of the right index finger was recorded using an optical motion tracking system. Standard kinematic measures (i.e., path length and movement duration) as well as variability of fingertip position across the time course of movement execution and at movement end were analyzed. In line with previous studies, we found that a high level of extrinsic target uncertainty leads to increased overall movement duration, which could be attributed to increased path length in this condition, as compared to intrinsic and no target uncertainty (all p < 0.001). Movement duration and path length did not show any differences between the latter two conditions. However, the time course analysis of movement variability revealed significant differences between these two conditions, with increased variability of fingertip position in the presence of intrinsic target uncertainty (Condition × Sampling point: p = 0.01), though considerably less than under high extrinsic target uncertainty (p ≤ 0.001). These findings suggest that both the level and source of uncertainty have a significant effect on the processing of potential action plans during motor decision-making, which can be revealed through the analysis of the time course of movement variability at the end-effector level.
机译:运动决策的基础过程最近引起了相当大的科学关注,着重于将感觉运动控制研究的经验证据与决策的心理学理论和计算模型相结合。关于运动决策的实证研究表明,目标定向到达运动的运动学对运动计划过程中目标不确定性的水平很敏感。但是,尚未充分考虑不确定性的来源作为影响运动决策过程的相关因素。在这项研究中,我们测试了目标不确定性源对运动决策产生影响的假设,这可以通过分析运动执行过程中的运动变异性来证明。十名健康的年轻人进行了三个区块,每个区块中有66个针对目标的到达动作试验,在这些动作中操纵了动作开始时到达目标不确定性的来源和水平(“无不确定性”,“外在不确定性”和“内在不确定性” ”)。使用光学运动跟踪系统记录右手食指的指尖位置。分析了标准运动学指标(即路径长度和运动持续时间)以及整个运动执行过程中和运动结束时指尖位置的变化性。与先前的研究一致,我们发现,与固有和无目标不确定性相比,高水平的外部目标不确定性会导致总体运动持续时间增加,这可能归因于这种情况下路径长度的增加(所有p <0.001)。运动持续时间和路径长度在后两个条件之间没有显示任何差异。然而,运动变异性的时程分析显示这两种情况之间存在显着差异,在存在内在目标不确定性的情况下,指尖位置的变异性增加(条件×采样点:p = 0.01),尽管远低于在高外在目标不确定性下(p≤0.001)。这些发现表明,不确定性的水平和来源都对运动决策过程中潜在行动计划的处理产生重大影响,这可以通过分析末端执行者水平的运动变异性的时间过程来揭示。

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