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神经节细胞萎缩不仅会降低精细测试图案的图形视网膜电图,还会降低粗糙测试图案的图形视网膜电图。

[Atrophy of the ganglion cells reduces pattern ERG not only in fine but also in coarse test patterns].

作者信息

Gerling J, Geiger K, Bach M

机构信息

Universitäts-Augenklinik, Freiburg, Bundesrepublik Deutschland.

出版信息

Fortschr Ophthalmol. 1991;88(6):833-7.

PMID:1794815
Abstract

The pattern electroretinogram (PERG) is thought to be generated by the retinal ganglion cells. For coarse patterns, however, it has been suggested that the PERG is due to nonlinear summation of luminance responses. To test this hypothesis, we recorded the PERG in 8 patients with unilateral complete optic atrophy due to trauma or advanced glaucoma. Stimuli were phase-reversing checkerboards (7.8/s) with checks of 0.8 degrees and 15 degrees in size and with flashes. Retinal stimulation subtended 26 degrees x 34 degrees. In all 8 subjects, the PERG was greatly diminished using a check size of 0.8 degrees. With a check size of 15 degrees, the PERG was similarly diminished, while the flash responses were not reduced. Any overall luminance component of the stimulus, e.g., incomplete balance of light and dark areas, evoked strong luminance responses both in normal eyes and in eyes with optic nerve atrophy. Thus, intact ganglion cells seem to be necessary for a normal PERG regardless of the coarseness of the pattern. It is possible that different mechanisms (variable ganglion cell classes) contribute to the PERG response with different check sizes. Earlier reports, contradictory to these findings, are discussed. If the PERG reflects ganglion cell function even for large check sizes, stimulation of the ganglion cells with less optical degradation would be possible, enlarging its range of applications.

摘要

图形视网膜电图(PERG)被认为是由视网膜神经节细胞产生的。然而,对于粗糙图形,有人提出PERG是由于亮度反应的非线性总和所致。为了验证这一假设,我们记录了8例因外伤或晚期青光眼导致单侧完全性视神经萎缩患者的PERG。刺激物为相位反转棋盘格(7.8次/秒),方格大小分别为0.8度和15度,并伴有闪光。视网膜刺激范围为26度×34度。在所有8名受试者中,使用0.8度的方格大小时,PERG明显减弱。当方格大小为15度时,PERG同样减弱,而闪光反应未降低。刺激物的任何整体亮度成分,例如明暗区域的不完全平衡,在正常眼睛和视神经萎缩的眼睛中都会诱发强烈的亮度反应。因此,无论图形的粗糙程度如何,完整的神经节细胞似乎是正常PERG所必需的。对于不同大小的方格,可能有不同的机制(不同类型的神经节细胞)促成PERG反应。文中讨论了与这些发现相矛盾的早期报告。如果即使对于大尺寸方格,PERG也反映神经节细胞功能,那么用较少的光学退化来刺激神经节细胞将是可能的,从而扩大其应用范围。

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