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首页> 外文期刊>Journal of vision >Perceived slant of binocularly viewed large-scale surfaces: A common model from explicit and implicit measures
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Perceived slant of binocularly viewed large-scale surfaces: A common model from explicit and implicit measures

机译:感知双眼看过大型表面的倾斜:明确和隐含措施的共同模型

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It is known that the perceived slants of large distal surfaces, such as hills, are exaggerated and that the exaggeration increases with distance. In a series of two experiments, we parametrically investigated the effect of viewing distance and slant on perceived slant using a high-fidelity virtual environment. An explicit numerical estimation method and an implicit aspect-ratio approach were separately used to assess the perceived optical slant of simulated large-scale surfaces with different slants and viewing distances while gaze direction was fixed. The results showed that perceived optical slant increased logarithmically with viewing distance and the increase was proportionally greater for shallow slants. At each viewing distance, perceived optical slant could be approximately fit by linear functions of actual slant that were parallel across distances. These linear functions demonstrated a fairly constant gain of about 1.5 and an intercept that increased logarithmically with distance. A comprehensive three-parameter model based on the present data provides a good fit to a number of previous empirical observations measured in real environments.
机译:众所周知,夸大了大远端表面的感知倾斜,例如山丘,并且夸张随着距离而增加。在一系列两次实验中,我们参数研究了使用高保真虚拟环境对观看距离和倾斜的影响。分别用于分别用于评估模拟大规模表面的被定义的大型表面的感知光学倾斜和在凝视方向上进行观察距离的感知光学倾斜。结果表明,感知光倾斜随着观察距离而增加,浅倾斜增加较大。在每个观察距离处,通过横跨距离平行的实际倾斜的线性函数可以近似地拟合。这些线性函数展示了约1.5的相当恒定的增益和截距,随着距离的对数增加。基于当前数据的全面三参数模型提供了良好的拟合在真实环境中测量的许多以前的经验观察。

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