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Depth Compression Based On Mis-Scaling Of Binocular Disparity May Contribute To Angular Expansion In Perceived Optical Slant

机译:基于双目视差错误缩放的深度压缩可能会导致感知到的光学倾斜角扩展

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摘要

Three studies, involving a total of 145 observers examined quantitative theories of the overestimation of perceived optical slant. The first two studies investigated the depth/width anisotropies on positive and negative slant in both pitch and yaw at 2 and 8 m using calibrated immersive virtual environments. Observers made judgments of the relative lengths of extents that were frontal with those that were in depth. The physical aspect ratio that was perceived as 1:1 was determined for each slant. The observed anisotropies can be modeled by assuming overestimation in perceived slant. Three one-parameter slant perception models (angular expansion, affine depth compression caused by mis-scaling of binocular disparity, and intrinsic bias) were compared. The angular expansion and the affine depth compression models provided significantly better fits to the aspect ratio data than the intrinsic bias model did. The affine model required depth compression at the 2 m distance; however, that was much more than the depth compression measured directly in the third study using the same apparatus. The present results suggest that depth compression based on mis-scaling of binocular disparity may contribute to slant overestimation, especially as viewing distance increases, but also suggest that a functional rather than mechanistic account may be more appropriate for explaining biases in perceived slant in near space.
机译:涉及总共145位观察者的三项研究研究了对感知到的光学倾斜度高估的定量理论。前两项研究使用校准的沉浸式虚拟环境研究了在2 m和8 m时俯仰和偏航中正斜率和负斜率的深度/宽度各向异性。观察者对范围的相对长度做出判断,这些范围相对于深度而言是正面的。确定每个倾斜的物理纵横比为1:1。可以通过假设感知倾斜中的高估来建模观察到的各向异性。比较了三个单参数倾斜感知模型(角度扩展,由双眼视差的缩放错误引起的仿射深度压缩和固有偏差)。与固有偏差模型相比,角扩展和仿射深度压缩模型可以更好地拟合纵横比数据。仿射模型需要在2 m距离处进行深度压缩;但是,这远远超过了在第三次研究中使用相同设备直接测量的深度压缩。目前的结果表明,基于双目视差的错误缩放的深度压缩可能会导致偏高估,特别是随着观察距离的增加,但也表明功能性而非机械性的解释可能更适合于解释近距离感知斜率中的偏差。

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    Li Z.; Durgin Frank H.;

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  • 年度 2013
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