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Tarqet-Directed Head Movements in a Head-Coupled Virtual Environment: Predicting the Effects of Lags Using Fitts' Law

机译:头部耦合虚拟环境中由Tarqet指挥的头部运动:使用菲茨定律预测滞后的影响

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摘要

Two experiments have investigated the effects of lag on discrete target-directed head movements in a virtual environment. Both the target and a head-slaved pointer (subjected to lag) were presented on a head-mounted display Target- directed head movements in the presence of a constant time lag were shown to obey Fitts' law (R~2 > .93). A previously reported interaction between the effects of lag and the effects of index-of-difficulty on hand movement time could not be found in head movement time when the target width was kept constant. Further experiments suggested that there is a significant interaction between the effects of target width and lag but not between target distance and lag. A model pre- dicting head movement strategy in the presence of lag is proposed to explain the experimental findings. This model predicts, and experiments verified, that for a target width from l deg. to 8 deg. and a target distance range of 2.5 deg. to 30 deg., the effect of lag (up to 267 ms) on target-directed head movement is independent of target distance but dependent on target width. Actual or potential applications of this research include the design of virtual control panel and its layout in a Virtual Reality simulator
机译:两项实验研究了滞后对虚拟环境中离散的定向目标头部运动的影响。头戴式显示器上同时显示了目标和头部从动指针(受滞后)的影响。在恒定时滞的情况下,目标定向的头部运动被证明遵循菲茨定律(R〜2> .93) 。当目标宽度保持恒定时,在头部运动时间中找不到滞后效应和难度指数对手运动时间的影响之间的相互作用。进一步的实验表明,目标宽度和滞后效应之间存在显着的相互作用,但目标距离和滞后之间没有显着的相互作用。提出了一种模型,该模型可预测存在滞后的头部运动策略,以解释实验结果。该模型预测并经过实验验证,目标宽度从1度起。到8度目标距离范围为2.5度在30度到30度之间,滞后(最长267毫秒)对目标指向的头部移动的影响与目标距离无关,但与目标宽度有关。该研究的实际或潜在应用包括虚拟控制面板的设计及其在虚拟现实模拟器中的布局

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