Hung G K
Department of Biomedical Engineering, Rutgers University, Piscataway, NJ 08854.
Ophthalmic Physiol Opt. 1992 Jul;12(3):319-26.
Both accommodation and vergence have been shown to exhibit adaptation after extended near viewing. Normally, when the stimulus to accommodation is removed, the accommodation system returns rapidly towards its tonic position. However, if the stimulus is removed after an extended focusing effort, the decay is much slower. A similar effect can be observed in the vergence system. After prolonged wearing of horizontal prisms, blockage of one eye results in a much slower decay of the vergence output towards its tonic value. No previous models have been shown to simulate quantitatively these effects. An interactive dual-feedback model of accommodation and vergence was developed to simulate the adaptive behaviour found experimentally. The unique feature of the model is that the output of each controller drives a dynamic adaptive component whose output governs the time constant of the controller. The model was able to simulate the rapid and slow decays following short and long viewing intervals in each of the accommodative and vergence systems. It also simulated adaptation during alternate binocular and monocular viewing under the accommodation closed-loop condition. Thus, this model can serve as the basis for detailed quantitative evaluation of adaptive behaviour in the accommodation and vergence systems.
已证明在长时间近距视物后,调节和聚散都会出现适应性变化。通常,当调节刺激去除后,调节系统会迅速恢复到其紧张性位置。然而,如果在长时间聚焦努力后去除刺激,其衰减会慢得多。在聚散系统中也能观察到类似的效应。长时间佩戴水平棱镜后,遮盖一只眼睛会导致聚散输出向其紧张性值的衰减慢得多。以前没有模型能够定量模拟这些效应。我们开发了一种调节和聚散的交互式双反馈模型来模拟实验中发现的适应性行为。该模型的独特之处在于,每个控制器的输出驱动一个动态自适应组件,其输出控制着控制器的时间常数。该模型能够模拟调节和聚散系统在短时间和长时间视物间隔后的快速和缓慢衰减。它还模拟了在调节闭环条件下双眼和单眼交替视物时的适应性变化。因此,该模型可作为详细定量评估调节和聚散系统适应性行为的基础。