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In vivo measurement of retinal neurovascular changes with transcorneal electrical stimulation using optical coherence tomography

机译:使用光学相干断层扫描在体内测量经角膜电刺激的视网膜神经血管变化

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Transcorneal electrical stimulation (TES), which as a noninvasive approach of retinal electrical stimulation, can activate releasing of neurotrophic factors and regenerate injured retinal neurons, has become a potential therapeutic method for retinal diseases. However, the mechanism of TES on the regeneration of retinal neurons has not been completely determined. The purpose of this study was to explore how the depth-resolved intrinsic optical signals (IOSs) and blood flow in cat retina change with TES. In the experiments, the cat retinae were imaged by our custom-designed spectral-domain OCT with a central wavelength of 840nm. OCT scanning and TES were synchronized so as to record images of retina at pre-, during and post-stimulation period, respectively. In each period, the IOSs were then extracted in structure images by registration and segmentation algorithms. And the blood flow was extracted in phase contrast images derived by phase-resolved Doppler OCT method including bulk motion compensation and phase unwrapping. Based on our preliminary results on 5 eyes of 4 cats, we found a significant increase of both positive and negative IOSs in each layer during and after TES compared to those of pre-stimulation and sham stimulation, while the changes of average blood flow before, during and 6 seconds after TES were not obvious. The preliminary results provide experimental data of neurovascular alterations under TES, which will benefit the study of the therapeutic mechanism of TES. But complete understanding of neurovascular response to TES should be further investigated.
机译:经角膜电刺激(TES)作为一种无创性的视网膜电刺激方法,可以激活神经营养因子的释放并再生受损的视网膜神经元,已成为一种潜在的视网膜疾病治疗方法。然而,TES对视网膜神经元再生的机制尚未完全确定。这项研究的目的是探讨猫眼视网膜中深度分辨的固有光信号(IOS)和血流如何随TES改变。在实验中,猫的视网膜是由我们定制设计的光谱域OCT成像的,中心波长为840nm。使OCT扫描和TES同步,以便分别在刺激之前,期间和之后记录视网膜图像。然后在每个时期,通过配准和分割算法将IOS提取到结构图像中。并在通过相位分辨多普勒OCT方法获得的相位对比图像中提取血流,该方法包括整体运动补偿和相位展开。根据我们对4只猫的5只眼的初步研究结果,我们发现,与刺激前和假刺激相比,TES期间和之后每层中的IOS阳性和阴性都显着增加,而之前, TES期间和之后的6秒钟不明显。初步结果提供了TES下神经血管改变的实验数据,将有利于TES治疗机制的研究。但是,应进一步研究对TES的神经血管反应的完全了解。

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