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黄斑锥体细胞系统的时间响应特性:正常衰老和年龄相关性黄斑病变的影响。

Temporal response properties of the macular cone system: effect of normal aging and age-related maculopathy.

作者信息

Falsini Benedetto, Ziccardi Lucia, Stifano Giovanna, Iarossi Giancarlo, Merendino Erasmo, Minnella Angelo M, Fadda Antonello, Balestrazzi Emilio

机构信息

Institute of Ophthalmology, Catholic University, Rome, Italy.

出版信息

Invest Ophthalmol Vis Sci. 2007 Oct;48(10):4811-7. doi: 10.1167/iovs.07-0306.

Abstract

PURPOSE

To evaluate the influence of aging and age-related maculopathy (ARM) on the temporal frequency response function (TFR) of macular focal electroretinography.

METHODS

Macular (18 degrees ) focal electroretinograms (FERGs) in response to sinusoidal flicker, modulated at TFs between 3.7 and 52 Hz, were recorded from 13 young (age range, 14-29 years) and 9 old (age range, 55-80 years) healthy subjects and from 18 patients with ARM (stage 2 disease; age range, 55-80 years; visual acuity >/=0.4). Amplitude and phase of the Fourier-analyzed response fundamental (1F) and seconnd harmonic (2F) were measured.

RESULTS

In young healthy subjects, mean 1F TFR showed a maximum amplitude at 41 Hz, a secondary peak at 3.7 Hz, a minimum at 8 Hz, and a high TF (32-52 Hz) roll-off. Mean 1F TFR of old, compared with young, healthy subjects showed amplitude enhancement at 10 to 14 Hz and a small loss at high TF. Mean 2F TFR of young and old healthy subjects had a maximum at 5.7 to 8 Hz and an attenuation beyond 10 Hz. Mean 1F and 2F TFRs of ARM patients were similar to those of old healthy subjects but were depressed in mean amplitude. FERG TFR changes of old healthy subjects and ARM patients were not mimicked by reducing stimulus retinal illuminance or modulation depth in young healthy subjects.

CONCLUSIONS

FERG temporal properties are affected by normal aging and ARM. Because FERG TFR is shaped mainly by postreceptoral activity, the findings suggest that photoreceptor and postsynaptic dysfunction underlie aging- and ARM-related FERG changes.

摘要

目的

评估衰老及年龄相关性黄斑病变(ARM)对黄斑区局部视网膜电图时间频率响应函数(TFR)的影响。

方法

记录了13名年轻(年龄范围14 - 29岁)和9名老年(年龄范围55 - 80岁)健康受试者以及18名ARM患者(2期疾病;年龄范围55 - 80岁;视力≥0.4)在3.7至52Hz的时间频率(TF)下对正弦闪烁光刺激的黄斑区(18度)局部视网膜电图(FERG)。测量了傅里叶分析响应基波(1F)和二次谐波(2F)的振幅和相位。

结果

在年轻健康受试者中,平均1F TFR在41Hz处显示最大振幅,在3.7Hz处有一个次峰,在8Hz处有最小值,且在高TF(32 - 52Hz)处有下降。与年轻健康受试者相比,老年健康受试者的平均1F TFR在10至14Hz处振幅增强,在高TF处有小幅度下降。年轻和老年健康受试者的平均2F TFR在5.7至8Hz处有最大值,在超过10Hz处有衰减。ARM患者的平均1F和2F TFR与老年健康受试者相似,但平均振幅降低。通过降低年轻健康受试者的刺激视网膜照度或调制深度,并不能模拟老年健康受试者和ARM患者的FERG TFR变化。

结论

FERG的时间特性受正常衰老和ARM的影响。由于FERG TFR主要由感受器后活动形成,这些发现表明光感受器和突触后功能障碍是衰老和ARM相关FERG变化的基础。

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