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Near Optimal Combination of Sensory and Motor Uncertainty in TimeDuring a Naturalistic Perception-Action Task

机译:时间上的感官和运动不确定度的最佳组合在自然主义的感知-行动任务中

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摘要

Most behavioral tasks have time constraints for successful completion, such as catching a ball in flight. Many of these tasks require trading off the time allocated to perception and action, especially when only one of the two is possible at any time. In general, the longer we perceive, the smaller the uncertainty in perceptual estimates. However, a longer perception phase leaves less time for action, which results in less precise movements. Here we examine subjects catching a virtual ball. Critically, as soon as subjects began to move, the ball became invisible. We study how subjects trade-off sensory and movement uncertainty by deciding when to initiate their actions. We formulate this task in a probabilistic framework and show that subjects' decisions when to start moving are statistically near optimal given their individual sensory and motor uncertainties. Moreover, we accurately predict individual subject's task performance. Thus we show that subjects in a natural task are quantitatively aware of how sensory and motor variability depend on time and act so as to minimize overall task variability.
机译:大多数行为任务都有成功完成任务的时间限制,例如在飞行中接球。其中许多任务需要权衡分配给感知和行动的时间,尤其是在任何时候只有两者之一可能的情况下。通常,我们感知的时间越长,感知估计的不确定性就越小。但是,较长的感知阶段将使动作时间减少,从而导致动作精度降低。在这里,我们研究了捕捉虚拟球的对象。至关重要的是,只要对象开始移动,球就变得不可见。我们通过确定何时开始行动来研究受试者如何权衡感觉和运动不确定性。我们在概率框架中制定了这项任务,并表明考虑到他们各自的感觉和运动不确定性,受试者开始运动的决定在统计学上接近最佳。此外,我们可以准确地预测单个主题的任务绩效。因此,我们表明,自然任务中的受试者定量地意识到感觉和运动变异性如何取决于时间并采取行动,从而使总体任务变异性最小。

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