Department of Physical Medicine and Rehabilitation, Chang Gung Memorial Hospital at Linkou, Taoyuan, Taiwan.
PLoS One. 2013 Aug 29;8(8):e74032. doi: 10.1371/journal.pone.0074032. eCollection 2013.
How is motion information that has been obtained through multiple viewing apertures integrated to form a global motion percept? We investigated the mechanisms of motion integration across apertures in two hemifields by presenting gratings through two rectangles (that form the dual barber poles) and recording the perceived direction of motion by human observers. To this end, we presented dual barber poles in conditions with various inter-component distances between the apertures and evaluated the degree to which the hemifield information was integrated by measuring the magnitude of the perceived barber pole illusion. Surprisingly, when the inter-component distance between the two apertures was short, the perceived direction of motion of the dual barber poles was similar to that of a single barber pole formed by the concatenation of the two component barber poles, indicating motion integration is achieved through a simple concatenation mechanism. We then presented dual barber poles in which the motion and contour properties of the two component barber poles differed to characterize the constraints underlying cross-hemifield integration. We found that integration is achieved only when phase, speed, wavelength, temporal frequency, and duty cycle are identical in the two barber poles, but can remain robust when the contrast of the two component barber poles differs substantially. We concluded that a motion stimulus presented in bilateral hemifields tends to be integrated to yield a global percept with a substantial tolerance for spatial distance and contrast difference.
多视角获取的运动信息如何整合形成全局运动感知?我们通过两个矩形(形成双理发 pole)呈现光栅,并记录人类观察者感知的运动方向,研究了两个视野之间的运动整合机制。为此,我们在不同孔径组件之间的间隔距离的条件下呈现双理发 pole,并通过测量感知理发 pole 错觉的幅度来评估半视野信息的整合程度。令人惊讶的是,当两个孔径之间的组件间隔距离较短时,双理发 pole 的感知运动方向与由两个组成部分理发 pole 串联形成的单个理发 pole 的运动方向相似,表明运动整合是通过简单的串联机制实现的。然后,我们呈现了双理发 pole,其中两个组成部分理发 pole 的运动和轮廓特性不同,以描述跨半视野整合的基础约束。我们发现,只有当两个理发 pole 中的相位、速度、波长、时间频率和占空比相同时,才能实现整合,但当两个组成部分理发 pole 的对比度有很大差异时,整合仍然可以保持稳健。我们得出的结论是,呈现在双侧视野中的运动刺激往往会整合在一起,产生具有较大空间距离和对比度差异容忍度的全局感知。