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Analyzing the effect of absorption and refractive index on image formation in high numerical aperture transmission microscopy of single cells

机译:在单细胞高数值孔径透射显微镜中分析吸收率和折射率对图像形成的影响

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Transmission bright-field microscopy is the clinical mainstay for disease diagnosis where image contrast is provided by absorptive and refractive index differences between tissue and the surrounding media. Different microscopy techniques often assume one of the two contrast mechanisms is negligible as a means to better understand the tissue scattering processes. This particular work provides better understanding of the role of refractive index and absorption within Optical Projection Tomographic Microscopy (OPTM) through the development of a generalized computational model based upon the Finite-Difference Time-Domain method. The model mimics OPTM by simulating axial scanning of the objective focal plane through the cell to produce projection images. These projection images, acquired from circumferential positions around the cell, are reconstructed into isometric three-dimensional images using the filtered backprojection normally employed in Computed Tomography (CT). The model provides a platform to analyze all aspects of bright-field microscopes, such as the degree of refractive index matching and the numerical aperture, which can be varied from air-immersion to high NA oil-immersion. In this preliminary work, the model is used to understand the effects of absorption and refraction on image formation using micro-shells and idealized nuclei. Analysis of absorption and refractive index separately provides the opportunity to better assess their role together as a complex refractive index for improved interpretation of bright-field scattering, essential for OPTM image reconstruction. This simulation, as well as ones in the future looking at other effects, will be used to optimize OPTM imaging parameters and triage efforts to further improve the overall system design.
机译:透射明场显微镜是疾病诊断的临床支柱,通过组织与周围介质之间的吸收率和折射率差异提供图像对比度。不同的显微镜技术通常认为两种对比机制之一可以忽略不计,以更好地了解组织散射过程。通过开发基于有限差分时域方法的通用计算模型,这项特殊工作可以更好地理解折射率和吸收在光学投影断层扫描显微镜(OPTM)中的作用。该模型通过模拟物镜通过细胞的焦平面轴向扫描以产生投影图像来模拟OPTM。从细胞周围位置获取的这些投影图像使用通常在计算机断层扫描(CT)中使用的已过滤反投影重建为等距三维图像。该模型提供了一个平台,可以分析明视野显微镜的各个方面,例如折射率匹配度和数值孔径,可以从空气浸入到高NA油浸进行变化。在这项初步工作中,该模型用于了解使用微壳和理想化核的吸收和折射对图像形成的影响。吸收率和折射率的分析分别提供了机会,可以更好地一起评估它们作为复数折射率的作用,从而改善对亮场散射的解释,这对于OPTM图像重建至关重要。这种模拟以及将来将在其他模拟中使用的模拟,将用于优化OPTM成像参数和分类工作,以进一步改善整体系统设计。

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