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Perception of Stand-on-ability: Do Geographical Slants Feel Steeper Than They Look?

机译:站立能力的感知:地理偏斜感觉比看上去更陡峭吗?

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Past research has shown that haptically perceived surface slant by foot is matched with visually perceived slant by a factor of 0.81. Slopes perceived visually appear shallower than when stood on without looking. We sought to identify the sources of this discrepancy by asking participants to judge whether they would be able to stand on an inclined ramp. In the first experiment, visual perception was compared to pedal perception in which participants took half a step with one foot onto an occluded ramp. Visual perception closely matched the actual maximal slope angle that one could stand on, whereas pedal perception underestimated it. Participants may have been less stable in the pedal condition while taking half a step onto the ramp. We controlled for this by having participants hold onto a sturdy tripod in the pedal condition (Experiment 2). This did not eliminate the difference between visual and haptic perception, but repeating the task while sitting on a chair did (Experiment 3). Beyond balance requirements, pedal perception may also be constrained by the limited range of motion at the ankle and knee joints while standing. Indeed, when we restricted range of motion by wearing an ankle brace pedal perception underestimated the affordance (Experiment 4). Implications for ecological theory were offered by discussing the notion of functional equivalence and the role of exploration in perception.
机译:过去的研究表明,触觉觉察到的脚部倾斜表面与视觉感知到的倾斜度之比为0.81。视觉上感觉到的斜坡比不看时站立时要浅。我们要求参与者判断他们是否能够站在倾斜的坡道上,以找出这种差异的根源。在第一个实验中,将视觉感知与踏板感知进行了比较,在踏板感知中,参与者用一只脚踩了半步进入了一个封闭的坡道。视觉感知与人可以站立的实际最大倾斜角度紧密匹配,而踏板感知则低估了它。参与者在踏入坡道半步时的踏板状态可能不稳定。为此,我们通过让参与者在踏板状态下抓住结实的三脚架来进行控制(实验2)。这并不能消除视觉和触觉感知之间的差异,但是坐在椅子上重复任务确实可以做到(实验3)。除了平衡要求之外,站立时脚踝和膝盖关节的活动范围也可能会限制踏板的感知。确实,当我们穿着脚踝支撑踏板来限制运动范围时,会低估承受能力(实验4)。通过讨论功能对等的概念以及探索在感知中的作用,为生态学理论提供了启示。

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