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Characterizing the resolvability of real superluminescent diode sources for application to optical coherence tomography using a low coherence interferometry model

机译:使用低相干干涉测量模型表征用于光学相干断层扫描的实际超发光二极管源的可分辨性

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摘要

The axial resolution is a critical parameter in determining whether optical coherent tomography (OCT) can be used to resolve specific features in a sample image. Typically, measures of resolution have been attributed to the light source characteristics only, including the coherence length and the point spread function (PSF) width of the OCT light sources. The need to cost effectively visualize the generated PSF and OCT cross-correlated interferogram (A-scan) using many OCT light sources have led to the extrinsic evolution of the OCT simulation model presented. This research indicated that empirical resolution in vivo, as well as depending on the light source\u27s spectral characteristics, is also strongly dependent on the optical characteristics of the tissue, including surface reflection. This research showed that this reflection could be digitally removed from the A-scan of an epithelial model, enhancing the stratum depth resolution limit (SDRL) of the subsurface tissue. Specifically, the A-scan portion above the surface, the front surface interferogram, could be digitally subtracted, rather than deconvolved, from the subsurface part of each A-scan. This front surface interferogram subtraction resulted in considerably reduced empirical SDRLs being much closer to the superluminescent diodes\u27 resolution limits, compared to the untreated A-scan results.
机译:轴向分辨率是确定光学相干断层扫描(OCT)是否可用于解析样本图像中特定特征的关键参数。通常,分辨率的度量仅归因于光源特性,包括OCT光源的相干长度和点扩展函数(PSF)宽度。使用许多OCT光源有效地可视化生成的PSF和OCT交叉相关干涉图(A扫描)的需求导致了所提出的OCT仿真模型的外部发展。这项研究表明,体内的经验分辨率以及取决于光源的光谱特性,也强烈取决于组织的光学特性,包括表面反射。这项研究表明,这种反射可以从上皮模型的A扫描中以数字方式消除,从而增强了地下组织的层深度分辨率极限(SDRL)。具体而言,可以从每个A扫描的次表面部分以数字方式减去而不是进行反卷积,从而减去表面上方的A扫描部分,即前表面干涉图。与未经处理的A扫描结果相比,这种前表面干涉图相减导致大大降低了经验SDRL,更接近于超发光二极管的分辨率极限。

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