Okuda N, Tsunekawa F, Awaya S, Watanabe S
Nippon Ganka Gakkai Zasshi. 1989 Feb;93(2):218-26.
Torsional eye movements during cyclofusional responses are recorded objectively and analyzed with respect to the time course of the eye movement until the subject perceives a fused image. Eight subjects whose age ranged from 24 to 35 years old were studied. Torsional disparity was presented stepwise by a synoptiscope. The Number of subjects whose motor response was stepped was less than that of the subjects whose motor response was not stepped. The time course of responses varied in individual. Moreover, the number of the subjects whose motor response showed cyclovergence was less than that of subjects whose motor response showed cycloversion. Fusional cyclovergence is reasonable to bring the disparate images within Panum's area efficiently. However our analysis shows that stepped response and cyclovergence is less in number and the motor response is variable in each individual. Therefore, we do not accept the explanation that the cyclofusional motor response simply brings the disparate images within Panum's area. We speculate that cyclofusional motor response is carried out by a feed-back loop through the cyclofusional sensory input to fuse the disparate images.
在双眼视旋转反应期间的扭转性眼球运动被客观记录,并根据眼球运动的时间进程进行分析,直到受试者感知到融合图像。研究了8名年龄在24岁至35岁之间的受试者。通过实体镜逐步呈现扭转视差。运动反应呈阶梯式变化的受试者数量少于运动反应未呈阶梯式变化的受试者数量。每个个体的反应时间进程各不相同。此外,运动反应表现为旋转性集合的受试者数量少于运动反应表现为旋转运动的受试者数量。融合性旋转性集合对于有效地将视差图像带入潘诺氏区是合理的。然而,我们的分析表明,阶梯式反应和旋转性集合的数量较少,并且每个个体的运动反应是可变的。因此,我们不接受双眼视旋转运动反应只是简单地将视差图像带入潘诺氏区的解释。我们推测,双眼视旋转运动反应是通过一个反馈回路进行的,该回路通过双眼视旋转感觉输入来融合视差图像。