Wilson K R, Pearson P M, Matheson H E, Marotta J J
Neuropsychology of Vision Perception and Action Lab, Winnipeg, MB R3T2N2, Canada.
Exp Brain Res. 2008 Jul;189(1):91-8. doi: 10.1007/s00221-008-1407-8. Epub 2008 May 21.
Even though there have been extensive investigations of the temporal integration limits of binocular vision in perceptual tasks, relatively little is known about temporal integration limits during the completion of visuomotor tasks. To assess the temporal integration limits of binocular disparity within the action domain, accuracy of reach kinematics in a reaching and grasping task under continuous binocular and monocular viewing conditions were compared with those obtained under alternating monocular viewing conditions with interocular delays ranging from 14 to 58 ms. Even the shortest of the interocular delays resulted in larger grip apertures than those in the continuous monocular and binocular viewing conditions. The short temporal integration interval of stereovision obtained in this study cannot be accounted for by differential visual feedback in the binocular and interocular delay conditions, nor is it likely to be a consequence of visual disruption due to the interocular delays. Our findings suggest that the visuomotor system has little tolerance to interocular delay.
尽管在感知任务中对双眼视觉的时间整合极限已经进行了广泛研究,但对于视觉运动任务完成过程中的时间整合极限却知之甚少。为了评估动作领域内双眼视差的时间整合极限,我们比较了在连续双眼和单眼观察条件下以及在双眼延迟时间从14毫秒到58毫秒的交替单眼观察条件下,伸手抓取任务中伸手运动学的准确性。即使是最短的双眼延迟也会导致比连续单眼和双眼观察条件下更大的抓握孔径。本研究中获得的立体视觉的短时间整合间隔,既不能用双眼和双眼延迟条件下的差异视觉反馈来解释,也不太可能是双眼延迟导致视觉干扰的结果。我们的研究结果表明,视觉运动系统对双眼延迟几乎没有耐受性。