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了解由异质性受体损伤引起的视网膜电图b波变化。

Understanding changes in the b-wave of the ERG caused by heterogeneous receptor damage.

作者信息

Hood D C, Shady S, Birch D G

机构信息

Department of Psychology, Columbia University, New York, New York 10027.

出版信息

Invest Ophthalmol Vis Sci. 1994 Apr;35(5):2477-88.

PMID:8163337
Abstract

PURPOSE

To understand better the relationship between heterogeneous receptor damage and the changes in the b-wave of the rod ERG.

METHODS

A computational model of the b-wave is used to simulate b-waves from retinas with two regions (a healthier and a more affected region) differing in area and sensitivity. The peak-to-peak amplitudes of the simulated b-waves are fitted with a Naka-Rushton equation, and the parameters log K and Vmax are estimated. Insights gained from these simulations are tested against rod ERGs and rod visual fields from patients with autosomal dominant retinitis pigmentosa (n = 11) and cone-rod dystrophy (n = 17).

RESULTS

In the simulated retinas, Vmax decreases when the more affected region of receptors is less sensitive than the healthier region by more than 0.5 log unit. However, the relative change in Vmax does not match the relative area of the more affected region unless this region is depressed by 2.0 log units or more. As the more affected region loses sensitivity, log K at first increases but then decreases and approaches the log K of the healthier region for losses greater than 2.0 log units or so relative to the healthier region. For the patients' data, the simulations predict the general relationships observed between the summary statistics of the visual fields (e.g., area of field and mean of log sensitivity changes in the field) and the changes in log K and Vmax.

CONCLUSION

A decrease in Vmax indicates that regions of the patient's retina have lost 0.5 log unit or more of sensitivity. An increase in log K indicates that either the healthiest part of the patient's retina is abnormal by at most delta log K, a large part of the retina has lost considerable sensitivity (i.e., 0.5 to 2.0 log units) but is still contributing to the response, or both.

摘要

目的

更好地理解异质性受体损伤与视杆细胞视网膜电图b波变化之间的关系。

方法

使用b波的计算模型来模拟来自具有两个区域(一个较健康区域和一个受影响更严重区域)的视网膜的b波,这两个区域在面积和敏感度上有所不同。将模拟b波的峰峰值幅度用中谷-拉什顿方程进行拟合,并估计参数log K和Vmax。从这些模拟中获得的见解针对常染色体显性遗传性视网膜色素变性患者(n = 11)和锥杆营养不良患者(n = 17)的视杆细胞视网膜电图和视杆细胞视野进行检验。

结果

在模拟视网膜中,当受影响更严重的受体区域比健康区域的敏感度低超过0.5对数单位时,Vmax会降低。然而,除非该区域的敏感度降低2.0对数单位或更多,否则Vmax的相对变化与受影响更严重区域的相对面积不匹配。随着受影响更严重的区域失去敏感度,log K起初会增加,但随后会降低,并且当相对于健康区域的敏感度损失大于2.0对数单位左右时,log K会接近健康区域的log K。对于患者的数据,模拟预测了在视野的汇总统计量(例如,视野面积和视野中对数敏感度变化的平均值)与log K和Vmax的变化之间观察到的一般关系。

结论

Vmax降低表明患者视网膜区域的敏感度损失了0.5对数单位或更多。log K增加表明要么患者视网膜最健康的部分最多异常delta log K,视网膜的很大一部分已经失去了相当大的敏感度(即0.5至2.0对数单位)但仍对反应有贡献,要么两者皆是。

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