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首页> 外文期刊>Experimental Brain Research >Extending Fitts' Law to three-dimensional obstacle-avoidance movements: support for the posture-based motion planning model.
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Extending Fitts' Law to three-dimensional obstacle-avoidance movements: support for the posture-based motion planning model.

机译:将菲茨定律扩展到三维避障运动:支持基于姿势的运动计划模型。

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摘要

According to Fitts' Law, the time (MT) to move to a target is a linear function of the logarithm of the ratio between the target's distance and width. Although Fitts' Law accurately predicts MTs for direct movements, it does not accurately predict MTs for indirect movements, as when an obstacle intrudes on the direct movement path. To address this limitation, Jax et al. (2007) added an obstacle-intrusion term to Fitts' Law. They accurately predicted MTs around obstacles in two-dimensional (2-D) workspaces, but their model had one more parameter than Fitts' Law did and was merely descriptive. In this study, we addressed these concerns by turning to the mechanistic, posture-based (PB) movement planning model. The PB-based model accounted for almost as much MT variance in a 3-D movement task as the model of Jax et al., with only two parameters, the same number of parameters as in Fitts' Law.
机译:根据菲茨定律,移动到目标的时间(MT)是目标的距离与宽度之比的对数的线性函数。尽管菲茨定律准确地预测了直接运动的运动量,但是当障碍物侵入直接运动路径时,它并不能准确地预测了间接运动的运动量。为了解决这个限制,Jax等人。 (2007年)在菲茨定律中增加了一个闯入障碍术语。他们准确地预测了二维(2-D)工作空间中障碍物周围的MT,但是他们的模型比Fitts定律具有更多的参数,并且仅仅是描述性的。在这项研究中,我们通过转向基于姿势的机械运动(PB)运动计划模型来解决这些问题。基于PB的模型在3-D运动任务中的MT方差几乎与Jax等人的模型一样多,只有两个参数,其参数数目与Fitts定律相同。

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