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Task specificity and the timing of discrete aiming movements

机译:任务特异性和离散目标运动的时间

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In discrete aiming movements the task criteria of time-minimization to a spatial target (e.g., Fitts, 1954) and time-matching to a spatial-temporal goal (e.g., Schmidt et al., 1979) tend to produce different functions of the speed-accuracy trade-off. Here we examined whether the task-related movement speed-accuracy characteristics were due to differential space-time trade-offs in time matching, velocity-matching and time-minimizing task goals. Twenty participants performed 100 aiming trials for each of 15 combinations of task-type (3) and space-time condition (5). The prevalence of the primary types of sub-movement (none, pre-peak, post-peak, undershooting and overshooting) was determined from the kinematics of the movement trajectory. There were comparable distributions of trajectory sub-movement profiles and space-time movement outcomes across the three tasks at the short movement duration that became increasingly dissimilar over decreasing movement velocity and increasing movement time conditions. Movement time was the most influential variable in mediating sub-movement characteristics and the spatial/temporal outcome accuracy and variability of discrete aiming tasks a role that was magnified in the explicit task demands of time-matching. The time-matching and time-minimization task goals in discrete aiming induce qualitatively different control processes that progressively contribute beyond the minimal time conditions to task-specific space-time accuracy and variability characteristics of the respective movement speed-accuracy functions.
机译:在离散的目的地移动到空间目标的时间最小化的任务标准(例如,FITTS,1954)和与空间 - 时间目标的时间匹配(例如,Schmidt等人,1979)倾向于产生速度的不同功能-Accuracy权衡。在这里,我们检查了与时间匹配,速度匹配和时间最小化任务目标的差分空间折衷所致的任务相关的运动速度准确性特征。二十名参与者对任务类型(3)和时空条件(5)的15个组合中的每一个进行了100名瞄准试验。根据运动轨迹的运动学确定了副运动的主要类型(无,预峰值,峰值,下漏和过冲)。在短的运动持续时间内,在三个任务中存在轨迹子移动配置文件和时空运动结果的可比分布,这在减小运动速度和增加运动时间条件下变得越来越多地不同。在调解子移动特征和空间/时间结果准确性和离散的空间/时间成果准确性和可变性中,移动时间是最有影响力的变量,其离散的目标任务在时间匹配的明确任务需求中放大的作用。离散瞄准的时间匹配和时间最小化任务目标诱导定性不同的控制过程,其逐渐贡献超出最小时间条件,以实现各个运动速度准确度的任务特定的时空精度和可变性特性。

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