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用于重建三维样本的微分干涉对比显微镜计算模型。

Computational model of DIC microscopy for reconstructing 3-D specimens.

作者信息

Kagalwala F, Lanni F, Kanade T

机构信息

Robotics Institute, Carnegie Mellon University, Pittsburgh, USA.

出版信息

Methods Inf Med. 2000 Jun;39(2):105-9.

Abstract

Differential Interference Contrast (DIC) microscopy is a powerful visualization tool used to study live biological cells. Its use, however, has been limited to qualitative observations. The inherent non-linear relation between the object properties and the image intensity makes quantitative analysis difficult. As a first step towards measuring optical properties of objects from DIC images, we develop a model for the image formation process using methods consistent with energy conservation laws. We verify our model by comparing real image data of manufactured specimens to simulated images of virtual objects. As the next step, we plan to use this model to reconstruct the three-dimensional properties of unknown specimens.

摘要

微分干涉差(DIC)显微镜是一种用于研究活生物细胞的强大可视化工具。然而,其应用一直局限于定性观察。物体特性与图像强度之间固有的非线性关系使得定量分析变得困难。作为从DIC图像测量物体光学特性的第一步,我们使用与能量守恒定律一致的方法开发了一个图像形成过程模型。我们通过将制造标本的真实图像数据与虚拟物体的模拟图像进行比较来验证我们的模型。下一步,我们计划使用这个模型来重建未知标本的三维特性。

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