Otsuka Yumiko, Mareschal Isabelle, Clifford Colin W G
J Vis. 2016 Jun 1;16(8):8. doi: 10.1167/16.8.8.
We have recently proposed a dual-route model of the effect of head orientation on perceived gaze direction (Otsuka, Mareschal, Calder, & Clifford, 2014; Otsuka, Mareschal, & Clifford, 2015), which computes perceived gaze direction as a linear combination of eye orientation and head orientation. By parametrically manipulating eye orientation and head orientation, we tested the adequacy of a linear model to account for the effect of horizontal head orientation on perceived direction of gaze. Here, participants adjusted an on-screen pointer toward the perceived gaze direction in two image conditions: Normal condition and Wollaston condition. Images in the Normal condition included a change in the visible part of the eye along with the change in head orientation, while images in the Wollaston condition were manipulated to have identical eye regions across head orientations. Multiple regression analysis with explanatory variables of eye orientation and head orientation revealed that linear models account for most of the variance both in the Normal condition and in the Wollaston condition. Further, we found no evidence that the model with a nonlinear term explains significantly more variance. Thus, the current study supports the dual-route model that computes the perceived gaze direction as a linear combination of eye orientation and head orientation.
我们最近提出了一种头部朝向对感知注视方向影响的双路径模型(大冢、马雷夏尔、卡尔德和克利福德,2014年;大冢、马雷夏尔和克利福德,2015年),该模型将感知注视方向计算为眼睛朝向和头部朝向的线性组合。通过参数化地操纵眼睛朝向和头部朝向,我们测试了线性模型对水平头部朝向对感知注视方向影响的解释能力。在此,参与者在两种图像条件下将屏幕上的指针调整到感知注视方向:正常条件和沃拉斯顿条件。正常条件下的图像包括随着头部朝向变化眼睛可见部分的变化,而沃拉斯顿条件下的图像被处理为在不同头部朝向下具有相同的眼睛区域。对眼睛朝向和头部朝向的解释变量进行多元回归分析表明,线性模型在正常条件和沃拉斯顿条件下都能解释大部分方差。此外,我们没有发现证据表明带有非线性项的模型能显著解释更多方差。因此,当前研究支持将感知注视方向计算为眼睛朝向和头部朝向线性组合的双路径模型。