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In vivo confocal imaging of fast intrinsic optical signals correlated with frog retinal activation

机译:与青蛙视网膜激活相关的快速固有光信号的体内共聚焦成像

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摘要

Using freshly isolated animal retinas, we have conducted a series of experiments to test fast intrinsic optical signals (IOSs) that have time courses comparable to electrophysiological kinetics. In this Letter, we demonstrate the feasibility of in vivo imaging of fast IOSs in intact frogs. A rapid line-scan confocal ophthalmoscope was constructed to achieve high-speed IOS recording. By rejecting out-of-focus background light, the line-scan confocal imager provided the resolution to differentiate individual photoreceptors in vivo. Rapid confocal imaging disclosed robust IOSs with time courses comparable to retinal electroretinogram kinetics. High-resolution IOS images revealed both positive (increasing) and negative (decreasing) light responses, with subcellular complexity.
机译:我们使用新鲜分离的动物视网膜进行了一系列实验,以测试快速内在光信号(IOS),其时程可与电生理动力学相媲美。在这封信中,我们证明了对完整的青蛙中的快速IOS进行体内成像的可行性。构建了快速线扫描共焦检眼镜,以实现高速IOS记录。通过拒绝离焦的背景光,线扫描共聚焦成像仪提供了分辨体内单个感光体的分辨率。快速共聚焦成像揭示了鲁棒的IOS,其时程可与视网膜视网膜电图动力学相比。高分辨率的IOS图像显示了正(增加)和负(减少)光响应,以及亚细胞复杂性。

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