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Depth sectioning of attenuation

机译:衰减的深度剖分

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摘要

We derive an approach for imaging attenuative sample parameters with a confocal scanning system. The technique employs computational processing to form the estimate in a pixel-by-pixel manner from measurements at the Fourier plane, rather than detecting a focused point at a pinhole. While conventional imaging system analysis and design assumes an independent scatterer at each point in the sample, attenuation must be treated with a tomographic approach. We show that a simple estimator may be derived that requires minimal computation and compare it to the conventional pinhole estimate. The method can potentially be used to image attenuation parameters and occlusion with incoherent detection, as well as refractive index variation with coherent detection, and could potentially allow for video rate imaging due to its computational simplicity. We further consider the application to the problem of an unknown gain or phase value, such as in the measurement of phase with a gradient sensor. And we propose a technique to mitigate the effect by computationally imaging off-focus planes. The principles are demonstrated with numerical simulations in two dimensions.
机译:我们推导了一种使用共聚焦扫描系统成像衰减样本参数的方法。该技术采用计算处理来从傅立叶平面上的测量以逐像素的方式形成估算值,而不是在针孔处检测到焦点。尽管常规的成像系统分析和设计在样品的每个点都假设有独立的散射体,但必须使用层析成像方法来处理衰减。我们表明,可以推导简单的估计器,该估计器需要最少的计算,并将其与常规针孔估计进行比较。该方法可以潜在地用于通过非相干检测来对衰减参数和遮挡进行成像,以及通过相干检测来对折射率变化进行成像,并且由于其计算简单性,该方法可能潜在地允许视频速率成像。我们进一步考虑将其应用于未知增益或相位值的问题,例如在使用梯度传感器测量相位时。并且我们提出了一种通过对离焦平面进行计算成像来减轻影响的技术。通过二维数值模拟证明了这些原理。

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