虚拟现实中的目标拦截对于自然的轨迹形状和方向比非自然的轨迹形状和方向更好。

IF 2 4区 心理学 Q2 OPHTHALMOLOGY Journal of Vision Pub Date : 2025-01-02 DOI:10.1167/jov.25.1.11
Sofia Varon, Karsten Babin, Miriam Spering, Jody C Culham
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引用次数: 0

摘要

当刺激运动遵循重力物理定律时,人类在感知和视觉运动任务中的表现会增强,包括与地球重力一致的加速度,例如。在这里,我们使用虚拟现实中的手动拦截任务来研究轨迹形状和方向对拦截时间和准确性的影响。参与者通过打孔来拦截沿四种不同形状(抛物线或帐篷)和方向(直立或倒置)运动轨迹之一的球。我们还改变了视觉固定的位置,使轨迹完全落在较低或较高的视野内。无论视野如何,对于更自然的形状和方向,反应时间更快。与其他三种情况相比,倒立帐篷条件的整体准确性较差,移动时间更长,这可能是因为它不太容易让人想起弹跳的球。对空间误差的详细分析显示,在垂直和倒立条件下,拦截端点更有可能沿着最终轨迹的路径落下,这表明在这些条件下,对最终轨迹方向的期望更强。综上所述,这些结果表明,轨迹的形状和方向的自然性有助于在虚拟拦截任务中的表现。
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Target interception in virtual reality is better for natural versus unnatural trajectory shapes and orientations.

Human performance in perceptual and visuomotor tasks is enhanced when stimulus motion follows the laws of gravitational physics, including acceleration consistent with Earth's gravity, g. Here we used a manual interception task in virtual reality to investigate the effects of trajectory shape and orientation on interception timing and accuracy. Participants punched to intercept a ball moving along one of four trajectories that varied in shape (parabola or tent) and orientation (upright or inverted). We also varied the location of visual fixation such that trajectories fell entirely within the lower or upper visual field. Reaction times were faster for more natural shapes and orientations, regardless of visual field. Overall accuracy was poorer and movement time was longer for the inverted tent condition than the other three conditions, perhaps because it was imperfectly reminiscent of a bouncing ball. A detailed analysis of spatial errors revealed that interception endpoints were more likely to fall along the path of the final trajectory in upright vs. inverted conditions, suggesting stronger expectations regarding the final trajectory direction for these conditions. Taken together, these results suggest that the naturalness of the shape and orientation of a trajectory contributes to performance in a virtual interception task.

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来源期刊
Journal of Vision
Journal of Vision 医学-眼科学
CiteScore
2.90
自引率
5.60%
发文量
218
审稿时长
3-6 weeks
期刊介绍: Exploring all aspects of biological visual function, including spatial vision, perception, low vision, color vision and more, spanning the fields of neuroscience, psychology and psychophysics.
期刊最新文献
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