Son Taeyoon, Wang Benquan, Thapa Damber, Lu Yiming, Chen Yanjun, Cao Dingcai, Yao Xincheng
Department of Bioengineering, University of Illinois at Chicago, Chicago, IL 60607, USA.
Department of Ophthalmology and Visual Sciences, University of Illinois at Chicago, Chicago, IL 60612, USA.
Biomed Opt Express. 2016 Jul 29;7(8):3151-62. doi: 10.1364/BOE.7.003151. eCollection 2016 Aug 1.
Blood flow changes are highly related to neural activities in the retina. It has been reported that neural activity increases when flickering light stimulation of the retina is used. It is known that blood flow changes with flickering light stimulation can be altered in patients with vascular disease and that measurement of flicker-induced vasodilatation is an easily applied tool for monitoring functional microvascular alterations. However, details of distortions in retinal neurovascular coupling associated with major eye diseases are not well understood due to the limitation of existing techniques. In this study, flickering light stimulation was applied to mouse retinas to investigate stimulus evoked hemodynamic responses in individual retinal layers. A spectral domain optical coherence tomography (OCT) angiography imaging system was developed to provide dynamic mapping of hemodynamic responses in the ganglion cell layer, inner plexiform layer, outer plexiform layer and choroid layer before, during and after flickering light stimulation. Experimental results showed hemodynamic responses with different magnitudes and time courses in individual retinal layers. We anticipate that the dynamic OCT angiography of stimulus evoked hemodynamic responses can greatly foster the study of neurovascular coupling mechanisms in the retina, promising new biomarkers for retinal disease detection and diagnosis.
血流变化与视网膜中的神经活动高度相关。据报道,当使用视网膜闪烁光刺激时,神经活动会增强。众所周知,闪烁光刺激引起的血流变化在血管疾病患者中可能会改变,并且测量闪烁诱导的血管舒张是一种易于应用的监测功能性微血管改变的工具。然而,由于现有技术的局限性,与主要眼病相关的视网膜神经血管耦合畸变的细节尚未得到很好的理解。在本研究中,对小鼠视网膜施加闪烁光刺激,以研究单个视网膜层中刺激诱发的血流动力学反应。开发了一种光谱域光学相干断层扫描(OCT)血管造影成像系统,以提供闪烁光刺激前、中、后神经节细胞层、内网状层、外网状层和脉络膜层血流动力学反应的动态图谱。实验结果显示了单个视网膜层中不同幅度和时间进程的血流动力学反应。我们预计,刺激诱发血流动力学反应的动态OCT血管造影可以极大地促进视网膜神经血管耦合机制的研究,有望为视网膜疾病的检测和诊断提供新的生物标志物。