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光学显微镜的一种三维分辨率测量方法。

A 3D Resolution Measure for Optical Microscopy.

作者信息

Chao Jerry, Ram Sripad, Ward E Sally, Ober Raimund J

机构信息

Department of Electrical Engineering, University of Texas at Dallas, Richardson, TX.

出版信息

Proc IEEE Int Symp Biomed Imaging. 2009;5193252:1115. doi: 10.1109/ISBI.2009.5193252.

Abstract

An information-theoretic three-dimensional (3D) resolution measure for the optical microscope is introduced. Based on the Cramer-Rao inequality, this resolution measure specifies a lower bound on the accuracy with which a given distance separating two objects in 3D space can be estimated from the acquired image. Useful in many applications, accurate determination of the distance of separation can, for example, help to characterize the interaction that occurs between two closely spaced biomolecules in a biological cell. In addition to presenting the underlying theory, we show that the resolution measure predicts that, by detecting a sufficient number of photons from an object pair, arbitrarily small distances of separation can be estimated with prespecified accuracy. Furthermore, we illustrate its dependence on properties such as the object pair's 3D spatial orientation. With estimations on simulated images, we show that the maximum likelihood estimator is capable of attaining the accuracy predicted by the resolution measure.

摘要

介绍了一种用于光学显微镜的信息论三维(3D)分辨率测量方法。基于克拉美-罗不等式,该分辨率测量方法规定了从采集的图像中估计三维空间中两个物体之间给定距离的精度下限。在许多应用中都很有用,例如,准确确定分离距离有助于表征生物细胞中两个紧密间隔的生物分子之间发生的相互作用。除了阐述基础理论外,我们还表明,该分辨率测量方法预测,通过从一对物体中检测足够数量的光子,可以以预先指定的精度估计任意小的分离距离。此外,我们说明了它对诸如物体对的三维空间取向等属性的依赖性。通过对模拟图像的估计,我们表明最大似然估计器能够达到分辨率测量方法预测的精度。

相似文献

1
A 3D Resolution Measure for Optical Microscopy.光学显微镜的一种三维分辨率测量方法。
Proc IEEE Int Symp Biomed Imaging. 2009;5193252:1115. doi: 10.1109/ISBI.2009.5193252.
2
A resolution measure for three-dimensional microscopy.一种用于三维显微镜的分辨率测量方法。
Opt Commun. 2009 May 1;282(9):1751-1761. doi: 10.1016/j.optcom.2009.01.062.
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3D RESOLUTION MEASURE FOR MULTIFOCAL PLANE MICROSCOPY.多焦平面显微镜的三维分辨率测量
Proc IEEE Int Symp Biomed Imaging. 2008;4541252:1339-1342. doi: 10.1109/ISBI.2008.4541252.

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