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基于测量的从模拟微分干涉对比图像重建的光程长度分布评估。

Measurement-based evaluation of optical pathlength distributions reconstructed from simulated differential interference contrast images.

作者信息

Winter EK, Aten JA

机构信息

Department of Radiotherapy, Academic Medical Center, University of Amsterdam, PO Box 22700, 1100 DE Amsterdam, The Netherlands.

出版信息

J Microsc. 1998 Aug;191(2):170-176. doi: 10.1046/j.1365-2818.1998.00372.x.

Abstract

Recently a method was presented for reconstructing optical pathlength distributions (OPDs) from images of weak phase objects obtained by a conventional differential interference contrast (DIC) microscope. A potential application of this technique is the determination of the mass of biological objects: by integrating the optical pathlength over the projected surface of the image of an object, a measure of the dry mass, i.e. the total mass of all solid constituents present in the object, is obtained. To assess the possibilities of DIC microscopy for this application, simulations were performed on computer-generated DIC images of objects of various sizes, shapes and orientation angles. After reconstructing the OPDs from these images, the integrated optical pathlength of each of the test objects was determined, and compared with the expected results. The parameter settings used in the reconstruction algorithm were found to be very important in obtaining a reliable measurement. Using optimal parameter settings, errors in the integrated OPD could be limited to a few per cent for circular objects within the investigated size range. For non-circular objects, however, the orientation angle of the object relative to the lateral shift was found to influence the measured values. Ellipses with their long axes perpendicular to the shift direction had a significantly higher integrated OPD than ellipses orientated parallel to the shift. By adjusting the reconstruction parameters the effect could be limited, but complete elimination of the artefact was not possible within the parameter range investigated.

摘要

最近提出了一种方法,用于从传统微分干涉对比(DIC)显微镜获取的弱相位物体图像中重建光程长度分布(OPD)。该技术的一个潜在应用是测定生物物体的质量:通过在物体图像的投影表面上对光程长度进行积分,可以获得干质量的度量,即物体中所有固体成分的总质量。为了评估DIC显微镜在该应用中的可能性,对各种尺寸、形状和取向角的物体的计算机生成的DIC图像进行了模拟。从这些图像重建OPD后,确定每个测试物体的积分光程长度,并与预期结果进行比较。发现重建算法中使用的参数设置对于获得可靠的测量非常重要。使用最佳参数设置,对于所研究尺寸范围内的圆形物体,积分OPD中的误差可以限制在百分之几以内。然而,对于非圆形物体,发现物体相对于横向位移的取向角会影响测量值。长轴垂直于位移方向的椭圆的积分OPD明显高于平行于位移方向取向的椭圆。通过调整重建参数,这种影响可以得到限制,但在所研究的参数范围内无法完全消除伪像。

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