Tanimoto Naoyuki, Sothilingam Vithiyanjali, Kondo Mineo, Biel Martin, Humphries Peter, Seeliger Mathias W
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.
Sci Rep. 2015 Jun 1;5:10731. doi: 10.1038/srep10731.
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.
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。