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利用闪烁刺激对小鼠视杆和视锥介导的双极细胞通路进行视网膜电图评估。

Electroretinographic assessment of rod- and cone-mediated bipolar cell pathways using flicker stimuli in mice.

作者信息

Tanimoto Naoyuki, Sothilingam Vithiyanjali, Kondo Mineo, Biel Martin, Humphries Peter, Seeliger Mathias W

机构信息

Division of Ocular Neurodegeneration, Institute for Ophthalmic Research, Centre for Ophthalmology, Eberhard Karls University, Schleichstr. 4/3, D-72076 Tübingen, Germany.

Department of Ophthalmology, Mie University Graduate School of Medicine, 2-175 Edobashi, Tsu, Mie 514-8507, Japan.

出版信息

Sci Rep. 2015 Jun 1;5:10731. doi: 10.1038/srep10731.

Abstract

Mouse full-field electroretinograms (ERGs) are dominated by responses of photoreceptors and depolarizing (ON-) bipolar cells, but not much of hyperpolarizing (OFF-) bipolar cells under conventional recording conditions. Here we investigate a novel ERG protocol in mice for functional assessment of the major ON- and OFF-bipolar cell pathways using flicker stimuli for a high luminance with varying frequency up to 30 Hz. Wild-type (WT) and functionally specific transgenic mice (Cnga3(-/-), no cone photoreceptor function; rho(-/-), no rod photoreceptor function; mGluR6(-/-), no ON-bipolar cell function) were examined. The Cnga3(-/-) flicker ERG was similar to the WT flicker ERG at very low stimulus frequencies, whereas ERGs were comparable between WT and rho(-/-) mice at 5 Hz and above. Between 5 and 15 Hz, ERGs in mGluR6(-/-) mice differed in configuration and amplitude from those in WT and rho(-/-) mice; in contrast, response amplitudes above 15 Hz were comparable among WT, rho(-/-) and mGluR6(-/-) mice. In summary, we found three frequency ranges with these conditions that are dominated by activity in the rod pathways (below 5 Hz), cone ON-pathway (between 5 and 15 Hz), and cone OFF-pathway (above 15 Hz) that enables a quick overview of the functionality of the major bipolar cell pathways.

摘要

在传统记录条件下,小鼠全视野视网膜电图(ERG)主要由光感受器和去极化(ON-)双极细胞的反应主导,而超极化(OFF-)双极细胞的反应则不明显。在此,我们研究了一种用于小鼠的新型ERG检测方案,该方案使用高达30Hz的不同频率的闪烁刺激,对主要的ON-和OFF-双极细胞通路进行功能评估。检测了野生型(WT)和功能特异性转基因小鼠(Cnga3(-/-),无视锥光感受器功能;rho(-/-),无视杆光感受器功能;mGluR6(-/-),无ON-双极细胞功能)。在非常低的刺激频率下,Cnga3(-/-)的闪烁ERG与WT的闪烁ERG相似,而在5Hz及以上时,WT和rho(-/-)小鼠的ERG相当。在5至15Hz之间,mGluR6(-/-)小鼠的ERG在形态和幅度上与WT和rho(-/-)小鼠不同;相反,在15Hz以上,WT、rho(-/-)和mGluR6(-/-)小鼠的反应幅度相当。总之,我们发现在这些条件下有三个频率范围,分别由视杆通路(低于5Hz)、视锥ON通路(5至15Hz之间)和视锥OFF通路(高于15Hz)的活动主导,这使得能够快速概述主要双极细胞通路的功能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c552/5377071/1434f87b6ed6/srep10731-f1.jpg

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