Fukushima Tetsuya, Torii Masahito, Ukai Kazuhiko, Wolffsohn James S, Gilmartin Bernard
Department of Applied Physics, Waseda University, Shinjuku, Tokyo, Japan.
J Vis. 2009 Dec 30;9(13):21.1-13. doi: 10.1167/9.13.21.
The oculomotor synergy as expressed by the CA/C and AC/A ratios was investigated to examine its influence on our previous observation that whereas convergence responses to stereoscopic images are generally stable, some individuals exhibit significant accommodative overshoot. Using a modified video refraction unit while viewing a stereoscopic LCD, accommodative and convergence responses to balanced and unbalanced vergence and focal stimuli (BVFS and UBVFS) were measured. Accommodative overshoot of at least 0.3 D was found in 3 out of 8 subjects for UBVFS. The accommodative response differential (RD) was taken to be the difference between the initial response and the subsequent mean static steady-state response. Without overshoot, RD was quantified by finding the initial response component. A mean RD of 0.11 +/- 0.27 D was found for the 1.0 D step UBVFS condition. The mean RD for the BVFS was 0.00 +/- 0.17 D. There was a significant positive correlation between CA/C ratio and RD (r = +0.75, n = 8, p < 0.05) for only UBVFS. We propose that inter-subject variation in RD is influenced by the CA/C ratio as follows: an initial convergence response, induced by disparity of the image, generates convergence-driven accommodation commensurate with the CA/C ratio; the associated transient defocus subsequently decays to a balanced position between defocus-induced and convergence-induced accommodations.
通过CA/C和AC/A比率所表达的动眼神经协同作用进行了研究,以检验其对我们之前观察结果的影响,即尽管对立体图像的集合反应通常是稳定的,但一些个体表现出明显的调节性过冲。在观看立体液晶显示器时,使用改良的视频验光仪测量对平衡和不平衡聚散及焦点刺激(BVFS和UBVFS)的调节和集合反应。在8名受试者中,有3名在UBVFS时出现至少0.3 D的调节性过冲。调节反应差异(RD)被定义为初始反应与随后的平均静态稳态反应之间的差异。在没有过冲的情况下,通过找出初始反应成分来量化RD。在1.0 D步长的UBVFS条件下,平均RD为0.11±0.27 D。BVFS的平均RD为0.00±0.17 D。仅在UBVFS时,CA/C比率与RD之间存在显著的正相关(r = +0.75,n = 8,p < 0.05)。我们提出,RD的个体间差异受CA/C比率的影响如下:由图像视差引起的初始集合反应产生与CA/C比率相称的集合驱动性调节;相关的短暂散焦随后衰减至散焦诱导性调节和集合诱导性调节之间的平衡位置。