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首页> 外文期刊>Investigative ophthalmology & visual science >Transretinal ERG in Studying Mouse Rod Phototransduction: Comparison With Local ERG Across the Rod Outer Segments
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Transretinal ERG in Studying Mouse Rod Phototransduction: Comparison With Local ERG Across the Rod Outer Segments

机译:经视网膜ERG在研究小鼠视杆光转导中:与跨视杆外段的局部ERG的比较

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Purpose: Electroretinography (ERG) is the gold standard in clinical examinations of retinal function. Corneal ERG is widely used for diagnostics, but ERG components from the inner retina complicate quantitative investigations of the phototransduction cascade. Transretinal ERG (TERG) recorded ex vivo enables pharmacologic isolation of signals generated by photoreceptor cells, establishing an appealing electrophysiologic method for diverse studies of phototransduction. Pharmacologically isolated TERG, however, contains components arising in the photoreceptor inner segments. Here, we compared simultaneously recorded TERG and local ERG across the outer segment layer (LERG-OS) to determine how consistently TERG reflects changes in the rod outer segment current signaling. Methods: Recordings were made from dark-adapted, isolated C57BL/6J mouse retinas superfused with HEPES or bicarbonate buffered solution containing 2-mM aspartate or 20-??M DL-2-amino-4-phosphonobutyric acid to block synaptic transmission, and 50-??M BaCl2 to block the M??ller cell component. TERG responses were recorded with macroelectrodes on both sides of the retina while responses across different retinal layers were recorded with microelectrodes. Results: The time-to-peak and the dominant time constant values were slightly smaller and the half-saturating stimulus was somewhat stronger in TERG compared with LERG-OS. No differences in light adaptation data were observed between the methods. LERG responses recorded across the whole photoreceptor layer were similar to those by TERG. Conclusions: TERG photoreceptor responses correspond well with the LERG-OS responses. The main differences are the nose component and slightly faster response kinetics observed by TERG. We conclude that TERG can be used for reliable quantitative investigation of phototransduction.
机译:目的:视网膜电图(ERG)是视网膜功能临床检查的金标准。角膜ERG被广泛用于诊断,但是来自内视网膜的ERG组件使光转导级联的定量研究变得复杂。体外记录的视网膜视网膜ERG(TERG)可以对感光细胞产生的信号进行药理学分离,从而建立了一种吸引人的电生理方法,可用于各种光转导研究。然而,药理分离的TERG包含在感光器内部片段中产生的成分。在这里,我们比较了同时记录的TERG和跨外段层(LERG-OS)的本地ERG,以确定TERG如何一致地反映杆外段电流信号的变化。方法:从黑暗适应的分离的C57BL / 6J小鼠视网膜上记录下来,将其与HEPES或碳酸氢盐缓冲液(含2-mM天冬氨酸或20-ΔMDL-2-氨基-4-膦丁酸)融合以阻止突触传递,并50-?? M BaCl2阻断M ?? ller细胞成分。用视网膜两侧的大电极记录TERG反应,而用微电极记录不同视网膜层的反应。结果:与LERG-OS相比,TERG的达到峰值时间和主导时间常数值稍小,半饱和刺激强度更大。两种方法之间未观察到光适应数据的差异。记录在整个感光层上的LERG响应与TERG相似。结论:TERG感光反应与LERG-OS反应良好。主要区别在于鼻子成分和TERG观察到的响应动力学稍快。我们得出的结论是,TERG可用于可靠的光导定量研究。

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