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Lighting direction and visual field modulate perceived intensity of illumination

机译:照明方向和视野可调节感知的照明强度

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摘要

When interpreting object shape from shading the visual system exhibits a strong bias that illumination comes from above and slightly from the left. We asked whether such biases in the perceived direction of illumination might also influence its perceived intensity. Arrays of nine cubes were stereoscopically rendered where individual cubes varied in their 3D pose, but possessed identical triplets of visible faces. Arrays were virtually illuminated from one of four directions: Above-Left, Above-Right, Below-Left, and Below-Right (±24.4° azimuth; ±90° elevation). Illumination intensity possessed 15 levels, resulting in mean cube array luminances ranging from 1.31–3.45 cd/m2. A “reference” array was consistently illuminated from Above-Left at mid-intensity (mean array luminance = 2.38 cd/m2). The reference array's illumination was compared to that of matching arrays which were illuminated from all four directions at all intensities. Reference and matching arrays appeared in the left and right visual field, respectively, or vice versa. Subjects judged which cube array appeared to be under more intense illumination. Using the method of constant stimuli we determined the illumination level of matching arrays required to establish subjective equality with the reference array as a function of matching cube visual field, illumination elevation, and illumination azimuth. Cube arrays appeared significantly more intensely illuminated when they were situated in the left visual field (p = 0.017), and when they were illuminated from below (p = 0.001), and from the left (p = 0.001). An interaction of modest strength was that the effect of illumination azimuth was greater for matching arrays situated in the left visual field (p = 0.042). We propose that objects lit from below appear more intensely illuminated than identical objects lit from above due to long-term adaptation to downward lighting. The amplification of perceived intensity of illumination for stimuli situated in the left visual field and lit from the left is best explained by tonic egocentric and allocentric leftward attentional biases, respectively.
机译:当通过阴影解释对象形状时,视觉系统会表现出强烈的偏见,即照明来自上方,略微来自左侧。我们问这种在照明感知方向上的偏差是否还会影响其感知强度。立体地绘制了九个立方体的阵列,其中各个立方体的3D姿势各不相同,但具有相同的三面体可见面。阵列实际上是从四个方向之一照明的:左上方,右上方,左下方和右下方(±24.4°方位角;±90°仰角)。照明强度共有15个级别,导致立方体阵列的平均亮度范围为1.31–3.45 cd / m 2 。始终从左上方以中等强度照亮“参考”阵列(平均阵列亮度= 2.38 cd / m 2 )。将参考阵列的照明与匹配阵列的照明进行比较,匹配阵列从所有强度的所有四个方向进行照明。参考数组和匹配数组分别出现在左侧和右侧视野中,反之亦然。受试者判断哪个立方体阵列似乎在更强烈的照明下。使用恒定刺激的方法,我们确定了与参考阵列建立主观相等性所需的匹配阵列的照明水平,作为匹配立方体视野,照明高度和照明方位角的函数。当多维数据集阵列位于左侧视野中时(p = 0.017),从下方(p = 0.001)和左侧(p = 0.001)照明时,它们的照明强度明显提高。强度适中的相互作用是,对于位于左视野中的匹配阵列,照明方位角的影响更大(p = 0.042)。我们建议,由于长期适应向下照明,从下方照明的物体看起来比从上方照明的相同物体更强烈地照明。位于左视野和从左点亮的刺激的感知照明强度的放大最好分别由强直中心和同心向左注意偏见来解释。

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