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青光眼患者视网膜颞侧多焦视网膜电图反应中振荡成分的选择性丧失。

Selective loss of an oscillatory component from temporal retinal multifocal ERG responses in glaucoma.

作者信息

Fortune Brad, Bearse Marcus A, Cioffi George A, Johnson Chris A

机构信息

Discoveries in Sight, Devers Eye Institute, Portland, Oregon 97232, USA.

出版信息

Invest Ophthalmol Vis Sci. 2002 Aug;43(8):2638-47.

Abstract

PURPOSE

To evaluate electrophysiologic function in glaucoma by using a new stimulus designed to enhance ganglion cell and optic nerve head component (ONHC) contributions to multifocal electroretinogram (mfERG) responses.

METHODS

mfERGs of 16 individuals with glaucoma (POAG) and 18 normal control subjects were recorded and analyzed with a VER imaging system. The stimulus had three frames inserted between each m-sequence step: a full-field dark frame (1.0 cd/m(2)), a full-field flash (200 cd/m(2)), and another dark frame. Multifocal flashes were 100 cd/m(2). The stimulus subtended approximately 40 degrees total diameter and contained 103 scaled hexagonal elements. Signals were obtained using Burian-Allen bipolar electrodes, amplified x10(6), band-pass filtered at 10 to 300 Hz, and sampled at 1200 Hz.

RESULTS

Local first-order responses (kernels) consisted of a direct component (DC) followed by an induced component (IC). Nasal-temporal response asymmetries in normal eyes were most easily observed in the IC. A small but distinct oscillation in the ICs of temporal retinal responses distinguished them from nasal IC waveforms. In individuals with glaucoma, there was less asymmetry between nasal and temporal responses, mostly because of the reduction of the oscillation in the temporal retinal ICs. The amplitude of this oscillation was 4.4 +/- 2.1 nV/deg(2) in the control group and 1.8 +/- 1.2 nV/deg(2) in the glaucoma group (P < 0.0001). Amplitude and latency measures of other response features were not significantly different from normal. Amplitude of the IC oscillation was not correlated with age in either the normal or glaucoma groups. In a group of normal subjects retested 3 months later, the average test-retest repeatability was +/-12%.

CONCLUSIONS

Selective loss of an oscillatory feature from IC responses in glaucoma may represent abnormalities in the inner plexiform layer of the temporal retina, where classic oscillatory potentials (OPs) are thought to arise. However, evidence suggests that this effect may also be due in part to loss of the ONHC.

摘要

目的

通过使用一种新的刺激方法来评估青光眼患者的电生理功能,该刺激方法旨在增强神经节细胞和视神经乳头成分(ONHC)对多焦视网膜电图(mfERG)反应的贡献。

方法

使用VER成像系统记录并分析了16例青光眼(原发性开角型青光眼,POAG)患者和18例正常对照者的mfERG。该刺激在每个m序列步长之间插入三帧:一个全视野暗帧(1.0 cd/m²)、一个全视野闪光(200 cd/m²)和另一个暗帧。多焦闪光为100 cd/m²。刺激的总直径约为40度,包含103个缩放的六边形元素。使用Burian-Allen双极电极获取信号,放大10⁶倍,在10至300 Hz进行带通滤波,并以1200 Hz采样。

结果

局部一阶反应(内核)由一个直接成分(DC)和一个诱导成分(IC)组成。正常眼中鼻颞侧反应不对称在IC中最容易观察到。颞侧视网膜反应的IC中存在一个小但明显的振荡,使其与鼻侧IC波形区分开来。在青光眼患者中,鼻侧和颞侧反应之间的不对称性较小,主要是因为颞侧视网膜IC中的振荡减少。该振荡的幅度在对照组中为4.4±2.1 nV/deg²,在青光眼组中为1.8±1.2 nV/deg²(P<0.0001)。其他反应特征的幅度和潜伏期测量与正常情况无显著差异。IC振荡的幅度在正常组和青光眼组中均与年龄无关。在一组3个月后重新测试的正常受试者中,平均重测重复性为±12%。

结论

青光眼患者IC反应中振荡特征的选择性丧失可能代表颞侧视网膜内丛状层的异常,经典振荡电位(OPs)被认为起源于此。然而,有证据表明这种效应也可能部分归因于ONHC的丧失。

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