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Optimization of pupil design for point-scanning and line-scanning confocal microscopy

机译:点扫描和线扫描共聚焦显微镜的瞳孔设计优化

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摘要

Both point-scanning and line-scanning confocal microscopes provide resolution and optical sectioning to observe nuclear and cellular detail in human tissues, and are being translated for clinical applications. While traditional point-scanning is truly confocal and offers the best possible optical sectioning and resolution, line-scanning is partially confocal but may offer a relatively simpler and lower-cost alternative for more widespread dissemination into clinical settings. The loss of sectioning and loss of contrast due to scattering in tissue is more rapid and more severe with a line-scan than with a point-scan. However, the sectioning and contrast may be recovered with the use of a divided-pupil. Thus, as part of our efforts to translate confocal microscopy for detection of skin cancer, and to determine the best possible approach for clinical applications, we are now developing a quantitative understanding of imaging performance for a set of scanning and pupil conditions. We report a Fourier-analysis-based computational model of confocal microscopy for six configurations. The six configurations are point-scanning and line-scanning, with full-pupil, half-pupil and divided-pupils. The performance, in terms of on-axis irradiance (signal), resolution and sectioning capabilities, is quantified and compared among these six configurations.
机译:点扫描和线扫描共聚焦显微镜都可以提供分辨率和光学切片,以观察人体组织中的核和细胞细节,并且正在被翻译用于临床。传统的点扫描确实是共焦的,并且可以提供最佳的光学切片和分辨率,而线扫描是部分共焦的,但是可以提供相对更简单,成本更低的替代方法,以更广泛地传播到临床环境中。与点扫描相比,通过线扫描,由于组织中的散射而导致的切片损失和对比度损失更加迅速和严重。但是,可以使用分割瞳孔来恢复切片和对比度。因此,作为我们平移共聚焦显微镜以检测皮肤癌并确定最佳临床应用方法的努力的一部分,我们现在正在对一系列扫描和瞳孔条件下的成像性能进行定量理解。我们报告了共焦显微镜的六种配置基于傅立叶分析的计算模型。六种配置是点扫描和行扫描,分别具有全瞳,半瞳和分瞳。在这六个配置中,对轴向辐射(信号),分辨率和切片能力方面的性能进行了量化和比较。

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