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视网膜闪烁刺激激活的快速内在光学信号的高时空分辨率成像。

High spatiotemporal resolution imaging of fast intrinsic optical signals activated by retinal flicker stimulation.

作者信息

Li Yang-Guo, Zhang Qiu-Xiang, Liu Lei, Amthor Franklin R, Yao Xin-Cheng

机构信息

Department of Biomedical Engineering, University of Alabama at Birmingham, Birmingham, AL 35294, USA.

出版信息

Opt Express. 2010 Mar 29;18(7):7210-8. doi: 10.1364/OE.18.007210.

Abstract

High resolution monitoring of stimulus-evoked retinal neural activities is important for understanding retinal neural mechanisms, and can be a powerful tool for retinal disease diagnosis and treatment outcome evaluation. Fast intrinsic optical signals (IOSs), which have the time courses comparable to that of electrophysiological activities in the retina, hold the promise for high resolution imaging of retinal neural activities. However, application of fast IOS imaging has been hindered by the contamination of slow, high magnitude optical responses associated with transient hemodynamic and metabolic changes. In this paper we demonstrate the feasibility of separating fast retinal IOSs from slow optical responses by combining flicker stimulation and dynamic (temporal) differential image processing. A near infrared flood-illumination microscope equipped with a high-speed (1000 Hz) digital camera was used to conduct concurrent optical imaging and ERG measurement of isolated frog retinas. High spatiotemporal resolution imaging revealed that fast IOSs could follow flicker frequency up to at least 6 Hz. Comparable time courses of fast IOSs and ERG kinetics provide evidence that fast IOSs are originated from stimulus activated retinal neurons.

摘要

对刺激诱发的视网膜神经活动进行高分辨率监测对于理解视网膜神经机制很重要,并且可以成为视网膜疾病诊断和治疗效果评估的有力工具。快速内在光学信号(IOSs),其时间进程与视网膜中的电生理活动相当,有望用于视网膜神经活动的高分辨率成像。然而,快速IOS成像的应用受到与瞬态血流动力学和代谢变化相关的缓慢、高强度光学响应的干扰。在本文中,我们通过结合闪烁刺激和动态(时间)差分图像处理,证明了从缓慢光学响应中分离快速视网膜IOSs的可行性。配备高速(1000 Hz)数码相机的近红外泛光显微镜用于对分离的青蛙视网膜进行同步光学成像和ERG测量。高时空分辨率成像显示,快速IOSs可以跟随高达至少6 Hz的闪烁频率。快速IOSs和ERG动力学的可比时间进程提供了证据,表明快速IOSs源自刺激激活的视网膜神经元。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b085/3404860/a00c4f1024ae/oe-18-7-7210-g001.jpg

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