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Longitudinal detection of retinal alterations by visible and near-infrared optical coherence tomography in a dexamethasone-induced ocular hypertension mouse model

机译:在地塞米松诱发的高眼压小鼠模型中通过可见光和近红外光学相干断层扫描纵向检测视网膜改变

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摘要

The retina, as part of the central nervous system, has distinct anatomical and structural properties for its visual function. Light scattering spectroscopy, while widely used for tissue structural characterization and disease diagnosis, has been relatively unexplored in the living retina. Recently, we have developed a fiber-based visible and near-infrared optical coherence tomography system (vnOCT) for retinal imaging, to uniquely measure a spectroscopic marker (VN ratio) sensitive to nanoscale pathological changes. In the present study, we applied vnOCT in an animal model of glaucoma (dexamethasone-induced ocular hypertension mouse) and tested the capabilities of four optical markers, VN ratio, peripapillary retinal nerve fiber layer (RNFL) thickness, total retinal blood flow, and hemoglobin oxygen saturation ( ), for the detection of retinal ganglion cell (RGC) damage in association with ocular hypertension. We found that RNFL-RGC VN ratio and arteriovenous (A-V) are capable of detecting early retinal alteration in ocular hypertensive eyes, preceding measurable change of RNFL thickness. This study suggests a potential clinical application of vnOCT in early detection of glaucoma.
机译:作为中枢神经系统一部分的视网膜,其视觉功能具有独特的解剖和结构特性。光散射光谱学虽然广泛用于组织结构表征和疾病诊断,但在活的视网膜中尚未得到充分研究。最近,我们开发了用于视网膜成像的基于光纤的可见光和近红外光学相干断层扫描系统(vnOCT),以独特地测量对纳米级病理变化敏感的光谱标记物(VN比)。在本研究中,我们将vnOCT应用于青光眼(地塞米松诱发的高眼压小鼠)的动物模型中,并测试了四个光学标记,VN比率,乳头周围视网膜神经纤维层(RNFL)厚度,总视网膜血流和血红蛋白氧饱和度(),用于检测与高眼压相关的视网膜神经节细胞(RGC)损伤。我们发现RNFL-RGC VN比和动静脉(A-V)能够在可测量的RNFL厚度变化之前检测出眼部高压眼的早期视网膜变化。这项研究表明vnOCT在青光眼的早期检测中的潜在临床应用。

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