A Simplified Model of Activation and Deactivation of Human Rod Phototransduction—An Electroretinographic Study

转导素 视觉光转导 时间常数 视紫红质 化学 指数 闪光灯(摄影) 指数函数 动力学 反应速率常数 指数衰减 物理 数学 光学 视网膜 数学分析 生物化学 量子力学 哲学 工程类 电气工程 语言学
作者
James D. Akula,Annie M Lancos,Bilal K AlWattar,Hanna De Bruyn,Ronald M. Hansen,Anne B. Fulton
出处
期刊:Investigative Ophthalmology & Visual Science [Cadmus Press]
卷期号:64 (12): 36-36
标识
DOI:10.1167/iovs.64.12.36
摘要

To test the hypothesis that a simple model having properties consistent with activation and deactivation in the rod approximates the whole time course of the photoresponse.Routinely, an exponential of the form f = α·(1 - exp(-(τ·(t - teff)s-1))), with amplitude α, rate constant τ (often scaled by intensity), irreducible delay teff, and time exponent s-1, is fit to the early period of the flash electroretinogram. Notably, s (an integer) represents the three integrating stages in the rod amplification cascade (rhodopsin isomerization, transducin activation, and cGMP hydrolysis). The time course of the photoresponse to a 0.17 cd·s·m-2 conditioning flash (CF) was determined in 21 healthy eyes by presenting the CF plus a bright probe flash (PF) in tandem, separated by interstimulus intervals (ISIs) of 0.01 to 1.4 seconds, and calculating the proportion of the PF a-wave suppressed by the CF at each ISI. To test if similar kinetics describe deactivation, difference of exponential (DoE) functions with common α and teff parameters, respective rate constants for the initiation (I) and quenching (Q) phases of the response, and specified values of s (sI, sQ), were compared to the photoresponse time course.As hypothesized, the optimal values of sI and sQ were 3 and 2, respectively. Mean ± SD α was 0.80 ± 0.066, I was 7700 ± 2400 m2·cd-1·s-3, and Q was 1.4 ± 0.47 s-1. Overall, r2 was 0.93.A method, including a DoE model with just three free parameters (α, I, Q), that robustly captures the magnitude and time-constants of the complete rod response, was produced. Only two steps integrate to quench the rod photoresponse.

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