Durgin Frank H, Li Zhi
Swarthmore College, 500 College Avenue, Swarthmore, PA 19081, USA.
Atten Percept Psychophys. 2011 Aug;73(6):1856-70. doi: 10.3758/s13414-011-0143-5.
Whereas most sensory information is coded on a logarithmic scale, linear expansion of a limited range may provide a more efficient coding for the angular variables important to precise motor control. In four experiments, we show that the perceived declination of gaze, like the perceived orientation of surfaces, is coded on a distorted scale. The distortion seems to arise from a nearly linear expansion of the angular range close to horizontal/straight ahead and is evident in explicit verbal and nonverbal measures (Experiments 1 and 2), as well as in implicit measures of perceived gaze direction (Experiment 4). The theory is advanced that this scale expansion (by a factor of about 1.5) may serve a functional goal of coding efficiency for angular perceptual variables. The scale expansion of perceived gaze declination is accompanied by a corresponding expansion of perceived optical slants in the same range (Experiments 3 and 4). These dual distortions can account for the explicit misperception of distance typically obtained by direct report and exocentric matching, while allowing for accurate spatial action to be understood as the result of calibration.
鉴于大多数感官信息是以对数尺度编码的,对有限范围进行线性扩展可能会为精确运动控制中重要的角度变量提供更有效的编码。在四项实验中,我们表明,与感知到的表面方向一样,感知到的注视偏角也是以一种扭曲的尺度编码的。这种扭曲似乎源于接近水平/正前方的角度范围的近似线性扩展,并且在明确的言语和非言语测量中(实验1和2)以及在感知到的注视方向的隐性测量中(实验4)都很明显。我们提出这样一种理论,即这种尺度扩展(约为1.5倍)可能服务于角度感知变量的编码效率这一功能目标。感知到的注视偏角的尺度扩展伴随着相同范围内感知到的光学倾斜度的相应扩展(实验3和4)。这些双重扭曲可以解释通常通过直接报告和外心匹配获得的对距离的明确误判,同时又能将准确的空间动作理解为校准的结果。