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Pulling out all the stops to make the distance: Effects of effort and optical information in distance perception responses made by rope pulling

机译:拉出所有挡块以保持距离:力和光学信息对拉绳进行距离感知响应的影响

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摘要

Human observers perceive distance in remarkably stable and consistent manner across response methods and experimental paradigms. Most empirical work on the problem focused exclusively on geometrical variables, such as angle of declination below the horizon (Ooi, Wu, & He, 2001), with more recent considerations of nonvisual factors, such as effort (Proffitt, 2006). Hajnal, Bunch, and Kelty-Stephen (2014) showed that in addition to the object's physical angle of declination below the horizon, nonvisual variables related to effort were utilized when making distance estimates to objects placed on a sloped ramp. In that experiment, the horizontal ground surface was visible in the background when viewing objects placed on the sloped surface. To further investigate the joint utility of geometric and effort-based variables, we tested the effect of both classes of predictors on a natural hillside where a flat, horizontal surface was not visible in the background. This setup allowed us to evaluate whether observers rely on the same information to perceive distance on ramps versus real hills. The present research implicates the hypothesis that perceived effort and the geometry of space determine distance perception through interactions across multiple temporal scales of perceptual competence.
机译:观察者在响应方法和实验范式中以非常稳定和一致的方式感知距离。关于这个问题的大多数实证研究只集中在几何变量上,例如地平线以下的倾角(Ooi,Wu,&He,2001),而最近对非视觉因素的考虑,例如努力(Proffitt,2006)。 Hajnal,Bunch和Kelty-Stephen(2014)指出,除了对物体低于地平线的物理偏角外,在对倾斜坡道上的物体进行距离估算时,还利用了与力有关的非视觉变量。在该实验中,当查看放置在倾斜表面上的对象时,水平地面在背景中可见。为了进一步研究基于几何和基于工作量的变量的联合效用,我们在自然山坡上测试了这两种预测变量的影响,在自然山坡上背景中看不到平坦的水平表面。这种设置使我们能够评估观察者是否依赖相同的信息来感知坡道与真实山丘之间的距离。本研究隐含了这样的假说,即感知的努力和空间的几何形状通过感知能力的多个时间尺度上的相互作用决定距离感知。

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