Hung G K, Ciuffreda K J
Department of Biomedical Engineering, Rutgers University, Piscataway, NJ 08855-0909.
IEEE Trans Biomed Eng. 1994 Mar;41(3):241-8. doi: 10.1109/10.284942.
A sensitivity analysis was performed to determine the variation in response to changes in parameter values of a previously developed nonlinear static model of accommodation and vergence. To determine normal behavior, model simulation responses were computed using previously obtained parameter values in 4 subjects under 2 conditions. In the first, relative accommodation was evaluated by maintaining the vergence stimulus constant at 2.5 meter angles (MA) and varying the accommodative stimulus from -2.5 to 2.5 diopters (D) in 0.25-D steps. In the second, relative vergence was evaluated by maintaining the accommodative stimulus constant at 2.5 D and varying the vergence stimulus from 25 prism diopters (PD) base-in to 25 PD base-out in 5-PD steps. Sensitivity of the model parameters, consisting of controller gains for accommodation (ACG) and vergence (VCG), crosslink gains for accommodation-to-vergence (AC) and vergence-to-accommodation (CA), deadspace operators for accommodation (AE +/- AD) and vergence (VE +/- VD), and the tonic levels for accommodation (ABIAS) and vergence (VBIAS) were assessed by varying them at 50% and 150% of their normal values. It was found that the accommodation and vergence systems were most sensitive to variation in crosslink gain, moderately sensitive to variation in controller gain and tonic level, and least sensitive to variation in size of the deadspace. These results may provide a quantitative basis for the occurrence of ocular dysfunctions associated with abnormal crosslink gains, such as strabismus, in clinic patients.
进行了敏感性分析,以确定对先前开发的调节和聚散非线性静态模型参数值变化的响应变化。为了确定正常行为,使用先前在4名受试者的2种条件下获得的参数值计算模型模拟响应。在第一种情况下,通过将聚散刺激保持在2.5米角(MA)恒定,并将调节刺激从-2.5至2.5屈光度(D)以0.25 D步长变化来评估相对调节。在第二种情况下,通过将调节刺激保持在2.5 D恒定,并将聚散刺激从25棱镜度(PD)底向内至25 PD底向外以5 PD步长变化来评估相对聚散。通过将模型参数(包括调节控制器增益(ACG)和聚散控制器增益(VCG)、调节到聚散交联增益(AC)和聚散到调节交联增益(CA)、调节死区算子(AE +/- AD)和聚散死区算子(VE +/- VD)以及调节张力水平(ABIAS)和聚散张力水平(VBIAS))在其正常值的50%和150%处变化来评估其敏感性。结果发现,调节和聚散系统对交联增益变化最敏感,对控制器增益和张力水平变化中度敏感,对死区大小变化最不敏感。这些结果可为临床患者中与异常交联增益相关的眼功能障碍(如斜视)的发生提供定量依据。