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Multiwavelength confocal laser scanning microscopy of the cornea

机译:角膜的多波长共聚焦激光扫描显微镜

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摘要

Confocal reflectance microscopy has demonstrated the ability to produce in vivo images of corneal tissue with sufficient cellular resolution to diagnose a broad range of corneal conditions. To investigate the spectral behavior of corneal reflectance imaging, a modified laser ophthalmoscope was used. Imaging was performed in vivo on a human cornea as well as ex vivo on porcine and lamb corneae. Various corneal layers were imaged at the wavelengths 488 nm, 518 nm, and 815 nm and compared regarding image quality and differences in the depicted structures. Besides the wavelength- and depth-dependent scattering background, which impairs the image quality, a varying spectral reflectance of certain structures could be observed. Based on the obtained results, this paper emphasizes the importance of choosing the appropriate light source for corneal imaging. For the examination of the epithelial layers and the endothelium, shorter wavelengths should be preferred. In the remaining layers, longer wavelength light has the advantage of less scattering loss and a potentially higher subject compliance.
机译:共聚焦反射显微镜已经证明了具有足够细胞分辨率的角膜组织的体内图像的能力,以诊断广泛的角膜条件。为了研究角膜反射成像的光谱行为,使用了一种改性的激光眼科镜。成像在体内进行人体角膜,以及猪和羊肉角膜的exvivo。在波长488nm,518nm和815nm处成像各种角膜层,并在图中的图像质量和描绘结构中的差异进行比较。除了损害图像质量的波长和深度依赖的散射背景之外,可以观察到某些结构的变化光谱反射率。基于所得的结果,本文强调为角膜成像选择适当光源的重要性。对于检查上皮层和内皮,应优选较短的波长。在剩余的层中,较长的波长光具有较少的散射损失和潜在更高的受试者合规性的优点。

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