Department of Biomedical Engineering, New Jersey Institute of Technology, Newark, New Jersey 07102, USA.
Invest Ophthalmol Vis Sci. 2010 Aug;51(8):4017-27. doi: 10.1167/iovs.09-4560. Epub 2010 Mar 24.
The purpose of this study was to investigate the relationship between phoria and the dynamics of vergence eye movements as described by the ratio of convergence average peak velocity to divergence average peak velocity, termed the vergence peak velocity ratio.
Phoria and vergence step responses were recorded. Three measures of phoria were assessed: baseline phoria, which is the initial phoria measurement; adapted phoria, which is the phoria measured after a visual task; and change in phoria, which is defined as adapted phoria minus baseline phoria. Phoria was modified in two experiments: vergence steps located at different initial positions and different sustained convergent fixations. Four linear regression analyses were conducted to study the interactions among baseline phoria and vergence peak velocity ratio, adapted phoria and vergence peak velocity ratio, baseline and adapted phoria, and baseline phoria and change in phoria.
Baseline and adapted phoria were significantly correlated to vergence peak velocity ratio. Adapted phoria and baseline phoria were also significantly correlated. The change in phoria induced by the vergence steps or a sustained fixation task was independent of the baseline phoria.
These data support that phoria is a factor in the asymmetry between peak velocity of convergence and divergence and that baseline phoria level is not a factor in the amount of change observed in phoria level (adapted phoria minus baseline phoria). Future oculomotor models of vergence should incorporate phoria within the design.
本研究旨在探讨辐辏的关系和聚散眼动的动态,由聚散平均峰速度与发散平均峰速度的比值描述,称为聚散峰速度比。
记录辐辏和聚散阶跃反应。评估了三种辐辏的测量值:基础辐辏,这是初始辐辏测量值;适应辐辏,这是在视觉任务后测量的辐辏值;以及辐辏变化,定义为适应辐辏减去基础辐辏。在两个实验中改变了辐辏:位于不同初始位置和不同持续会聚注视的聚散步。进行了四项线性回归分析,以研究基础辐辏与聚散峰速度比、适应辐辏与聚散峰速度比、基础和适应辐辏以及基础辐辏与辐辏变化之间的相互作用。
基础和适应辐辏与聚散峰速度比显著相关。适应辐辏和基础辐辏也显著相关。聚散步或持续固视任务引起的辐辏变化与基础辐辏无关。
这些数据支持辐辏是聚散峰速度的不对称性的一个因素,并且基础辐辏水平不是观察到的辐辏水平变化(适应辐辏减去基础辐辏)的一个因素。未来的聚散眼动模型应在设计中纳入辐辏。