Napoli Pietro Emanuele, Nioi Matteo, Mangoni Lorenzo, Gentile Pietro, Braghiroli Mirco, d'Aloja Ernesto, Fossarello Maurizio
Clinica Oculistica, San Giovanni di Dio Hospital, Azienda Ospedaliera Universitaria di Cagliari, 09124 Cagliari, Italy.
Department of Surgical Sciences, Eye Clinic, University of Cagliari, 09124Cagliari, Italy.
J Clin Med. 2020 Mar 2;9(3):668. doi: 10.3390/jcm9030668.
In the last few decades, the ocular surface and the tear film have been noninvasively investigated in vivo, in a three-dimensional, high resolution, and real-time mode, by optical coherence tomography (OCT). Recently, OCT technology has made great strides in improving the acquisition speed and image resolution, thus increasing its impact in daily clinical practice and in the research setting. All these results have been achieved because of a transition from traditional time-domain (TD) to Fourier-domain (FD) technology. FD-OCT devices include a spectrometer in the receiver that analyzes the spectrum of reflected light on the retina or ocular surface and transforms it into information about the depth of the structures according to the Fourier principle. In this review, we summarize and provide the state-of-the-art in FD-OCT imaging of the ocular surface system, addressing specific aspects such as tear film dynamics and epithelial changes under physiologic and pathologic conditions. A theory on the dynamic nature of the tear film has been developed to explain the variations within the individual compartments. Moreover, an integrative model of tear film behavior during the inter-blink period and visual fixation is proposed.
在过去几十年中,光学相干断层扫描(OCT)已能在体内以三维、高分辨率和实时模式对眼表和泪膜进行无创研究。最近,OCT技术在提高采集速度和图像分辨率方面取得了巨大进展,从而增强了其在日常临床实践和研究中的影响力。所有这些成果的取得得益于从传统时域(TD)技术向傅里叶域(FD)技术的转变。FD-OCT设备在接收器中配备了一个光谱仪,该光谱仪根据傅里叶原理分析视网膜或眼表反射光的光谱,并将其转换为有关结构深度的信息。在本综述中,我们总结并介绍了眼表系统FD-OCT成像的最新进展,探讨了诸如泪膜动力学以及生理和病理条件下上皮变化等具体方面。已形成一种关于泪膜动态性质的理论来解释各个部分内的变化。此外,还提出了眨眼间隔期和视觉注视期间泪膜行为的综合模型。