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[利用图形视网膜电图进行青光眼的早期诊断]

[Early diagnosis of glaucoma with pattern-ERG].

作者信息

Uclés P, Almárcegui C, Fernández F J, Honrubia F M

机构信息

Service de Neurophysiologie Clinique, Hospital Miguel Servet, Zaragoza, Espagne.

出版信息

J Fr Ophtalmol. 1997;20(2):90-6.

PMID:9099266
Abstract

PURPOSE

Current electrophysiological techniques for diagnosis of glaucoma include pattern-electroretinogram (PERG) and visual evoked potentials (VEP) but PERG has been recognized over the last decade as a good functional indicator of retinal ganglion cells.

METHODS

An investigation has been carried out on 171 eyes of 89 subjects using both PERG (gold foil electrodes) and VEP. One group of 32 subjects with ocular hypertension (OHT) and another group of 27 subjects having simple chronic glaucoma (SCG) were compared with a control group of 30 healthy age-matched subjects.

RESULTS

For PERG, the amplitude of the P50 and N95 components was measured but statistically significant differences were shown for N95 only in SCG (p < 0.01) and OHT (p < 0.05). FFT analysis on each PERG showed a dominant frequency of 3.3 Hz for OHT subjects versus 9.9 Hz for those of the control group. For VEP, the amplitude and latency of P100 was analysed. P100 latency showed significant delay (p < 0.05) in the SCG group only.

CONCLUSIONS

These findings suggest that N95-amplitude is the most sensitive electrophysiologic parameter for early glaucoma detection. By comparing data of this work with a previous study using wire (anchor shaped) electrodes we demonstrate higher amplitude and lesser variability of the N95 component for gold foil electrodes, therefore this latter type of recording is acknowledged as the most sensitive for detection of early impairment of ganglion cells in HTO patients.

摘要

目的

目前用于青光眼诊断的电生理技术包括图形视网膜电图(PERG)和视觉诱发电位(VEP),但在过去十年中,PERG已被公认为视网膜神经节细胞的良好功能指标。

方法

使用PERG(金箔电极)和VEP对89名受试者的171只眼睛进行了调查。将一组32名高眼压症(OHT)患者和另一组27名单纯慢性青光眼(SCG)患者与30名年龄匹配的健康对照组进行比较。

结果

对于PERG,测量了P50和N95成分的振幅,但仅在SCG组(p < 0.01)和OHT组(p < 0.05)中,N95的差异具有统计学意义。对每个PERG进行的快速傅里叶变换(FFT)分析显示,OHT受试者的主导频率为3.3 Hz,而对照组为9.9 Hz。对于VEP,分析了P100的振幅和潜伏期。仅在SCG组中,P100潜伏期显示出显著延迟(p < 0.05)。

结论

这些发现表明,N95振幅是早期青光眼检测中最敏感的电生理参数。通过将本研究的数据与先前使用线状(锚形)电极的研究进行比较,我们证明金箔电极的N95成分具有更高的振幅和更小的变异性,因此后一种记录方式被认为是检测HTO患者神经节细胞早期损伤最敏感的方法。

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