Department of Psychology, Swarthmore College, 500 College Avenue, Swarthmore, PA 19081, USA.
J Exp Psychol Hum Percept Perform. 2013 Apr;39(2):477-93. doi: 10.1037/a0029405. Epub 2012 Aug 13.
Two experiments are reported concerning the perception of ground extent to discover whether prior reports of anisotropy between frontal extents and extents in depth were consistent across different measures (visual matching and pantomime walking) and test environments (outdoor environments and virtual environments). In Experiment 1 it was found that depth extents of up to 7 m are indeed perceptually compressed relative to frontal extents in an outdoor environment, and that perceptual matching provided more precise estimates than did pantomime walking. In Experiment 2, similar anisotropies were found using similar tasks in a similar (but virtual) environment. In both experiments pantomime walking measures seemed to additionally compress the range of responses. Experiment 3 supported the hypothesis that range compression in walking measures of perceived distance might be due to proactive interference (memory contamination). It is concluded that walking measures are calibrated for perceived egocentric distance, but that pantomime walking measures may suffer range compression. Depth extents along the ground are perceptually compressed relative to frontal ground extents in a manner consistent with the angular scale expansion hypothesis.
报告了两项关于地面范围感知的实验,旨在确定先前关于正面范围和深度范围之间的各向异性的报告是否在不同的测量方法(视觉匹配和模拟行走)和测试环境(户外环境和虚拟环境)中是一致的。在实验 1 中,发现相对于户外环境中的正面范围,深度范围高达 7 米确实在感知上是压缩的,并且感知匹配比模拟行走提供了更精确的估计。在实验 2 中,使用类似的任务和类似的(但虚拟的)环境,也发现了类似的各向异性。在这两个实验中,模拟行走的测量似乎都进一步压缩了反应范围。实验 3 支持了这样一种假设,即行走测量感知距离的范围压缩可能是由于前摄干扰(记忆污染)。结论是,行走测量是针对感知的自我中心距离进行校准的,但模拟行走测量可能会受到范围压缩的影响。地面上的深度范围相对于正面的地面范围在感知上是压缩的,这种方式与角度比例扩展假说一致。