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Structural Characterization of Edematous Corneas by Forward and Backward Second Harmonic Generation Imaging

机译:向前和向后二次谐波产生成像对水肿角膜的结构表征

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摘要

The purpose of this study was to image and quantify the structural changes of corneal edema by second harmonic generation (SHG) microscopy. Bovine cornea was used as an experimental model to characterize structural alterations in edematous corneas. Forward SHG and backward SHG signals were simultaneously collected from normal and edematous bovine corneas to reveal the morphological differences between them. In edematous cornea, both an uneven expansion in the lamellar interspacing and an increased lamellar thickness in the posterior stroma (depth > 200 μm) were identified, whereas the anterior stroma, composed of interwoven collagen architecture, remained unaffected. Our findings of heterogeneous structural alteration at the microscopic scale in edematous corneas suggest that the strength of collagen cross-linking is heterogeneous in the corneal stroma. In addition, we found that qualitative backward SHG collagen fiber imaging and depth-dependent signal decay can be used to detect and diagnose corneal edema. Our work demonstrates that SHG imaging can provide morphological information for the investigation of corneal edema biophysics, and may be applied in the evaluation of advancing corneal edema in vivo.
机译:这项研究的目的是通过二次谐波(SHG)显微镜成像并量化角膜水肿的结构变化。牛角膜被用作表征水肿性角膜结构改变的实验模型。同时从正常和水肿的牛角膜收集正向SHG和反向SHG信号,以揭示它们之间的形态差异。在水肿性角膜中,既可以观察到层间间隔的不均匀扩张,也可以观察到后基质(深度> 200μm)中的层厚度增加,而由交织的胶原蛋白结构构成的前基质仍然不受影响。我们在水肿性角膜的微观尺度上发现异质结构改变的结果表明,胶原交联的强度在角膜基质中是异质的。此外,我们发现定性向后SHG胶原纤维成像和深度依赖信号衰减可用于检测和诊断角膜水肿。我们的工作表明,SHG成像可为角膜水肿生物物理学的研究提供形态学信息,并可用于评估体内角膜水肿的进展。

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