Department of Biomedical Engineering, New Jersey Institute of Technology, Newark, New Jersey 07102-1982, USA.
Invest Ophthalmol Vis Sci. 2013 Jun 14;54(6):4122-35. doi: 10.1167/iovs.13-11797.
To assess the potential peak velocity asymmetry between the left-eye and right-eye movement responses stimulated by symmetrical vergence steps in those with normal binocular vision and those with convergence insufficiency (CI) before and after vergence training. This study also evaluated whether vergence training influenced convergence peak velocity and the prevalence of saccades within the first second of the response.
The peak velocities of the left-eye, right-eye, and combined vergence response evoked from symmetrical 2°, 4°, and 6° convergence step stimuli were assessed in 10 controls and 7 CI subjects. Four of the CI subjects participated in vergence training. An asymmetry ratio was calculated as the peak velocity of the slower eye movement response divided by the peak velocity of the faster eye movement response.
Controls were significantly more symmetrical (left-eye peak velocity was approximately equal to right-eye peak velocity) compared to CI subjects (P < 0.001). After vergence training, the CI subjects' left-eye and right-eye movements became significantly more symmetrical, convergence peak velocity increased, and the prevalence of saccades within the first 1 second decreased (P < 0.01). Peak convergence velocity was significantly correlated to the prevalence of saccades observed within the first second of the response (r = 0.8; P < 0.05).
Data suggest that vergence training improves the symmetry between the left-eye and right-eye movements, increases convergence peak velocity, and decreases the prevalence of saccades within the first second of the response, which facilitates binocular coordination in CI patients. Saccades may be a compensatory mechanism used by CI subjects when convergence peak velocity is reduced.
评估正常双眼视者和集合不足(CI)者在集合训练前后,双眼对称聚散刺激诱发的双眼运动反应的潜在峰速度不对称性。本研究还评估了集合训练是否会影响聚散峰速度和反应最初 1 秒内的跳跃运动的发生率。
在 10 名对照者和 7 名 CI 受试者中,评估了来自 2°、4°和 6°对称聚散阶跃刺激的左眼、右眼和双眼聚散反应的峰速度。4 名 CI 受试者接受了集合训练。将较慢的眼运动反应的峰速度除以较快的眼运动反应的峰速度,计算出不对称比。
与 CI 受试者相比,对照者的双眼运动明显更加对称(左眼峰速度与右眼峰速度大致相等)(P < 0.001)。集合训练后,CI 受试者的左眼和右眼运动变得明显更加对称,聚散峰速度增加,反应最初 1 秒内的跳跃运动的发生率降低(P < 0.01)。聚散峰值速度与反应最初 1 秒内观察到的跳跃运动的发生率显著相关(r = 0.8;P < 0.05)。
数据表明,集合训练可改善 CI 患者双眼运动的对称性,增加聚散峰速度,并降低反应最初 1 秒内的跳跃运动的发生率,从而促进 CI 患者的双眼协调。当聚散峰速度降低时,跳跃运动可能是 CI 受试者的一种代偿机制。