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一种在傅里叶域中估计真实图像空间分辨率的方法。

A method for estimating spatial resolution of real image in the Fourier domain.

作者信息

Mizutani Ryuta, Saiga Rino, Takekoshi Susumu, Inomoto Chie, Nakamura Naoya, Itokawa Masanari, Arai Makoto, Oshima Kenichi, Takeuchi Akihisa, Uesugi Kentaro, Terada Yasuko, Suzuki Yoshio

机构信息

Department of Applied Biochemistry, School of Engineering, Tokai University, Hiratsuka, Kanagawa, Japan.

Department of Cell Biology, Division of Host Defense Mechanism, Tokai University School of Medicine, Isehara, Kanagawa, Japan.

出版信息

J Microsc. 2015 Jan;261(1):57-66. doi: 10.1111/jmi.12315. Epub 2015 Oct 7.

Abstract

Spatial resolution is a fundamental parameter in structural sciences. In crystallography, the resolution is determined from the detection limit of high-angle diffraction in reciprocal space. In electron microscopy, correlation in the Fourier domain is used for estimating the resolution. In this paper, we report a method for estimating the spatial resolution of real images from a logarithmic intensity plot in the Fourier domain. The logarithmic intensity plots of test images indicated that the full width at half maximum of a Gaussian point spread function can be estimated from the images. The spatial resolution of imaging X-ray microtomography using Fresnel zone-plate optics was also estimated with this method. A cross section of a test object visualized with the imaging microtomography indicated that square-wave patterns up to 120-nm pitch were resolved. The logarithmic intensity plot was calculated from a tomographic cross section of brain tissue. The full width at half maximum of the point spread function estimated from the plot coincided with the resolution determined from the test object. These results indicated that the logarithmic intensity plot in the Fourier domain provides an alternative measure of the spatial resolution without explicitly defining a noise criterion.

摘要

空间分辨率是结构科学中的一个基本参数。在晶体学中,分辨率是根据倒易空间中高角度衍射的检测极限来确定的。在电子显微镜中,傅里叶域中的相关性用于估计分辨率。在本文中,我们报告了一种从傅里叶域中的对数强度图估计真实图像空间分辨率的方法。测试图像的对数强度图表明,可以从图像中估计高斯点扩散函数的半高全宽。使用菲涅耳波带片光学的成像X射线显微断层扫描的空间分辨率也用该方法进行了估计。用成像显微断层扫描可视化的测试对象的横截面表明,分辨出了间距高达120纳米的方波图案。对数强度图是根据脑组织的断层横截面计算出来的。从该图估计的点扩散函数的半高全宽与从测试对象确定的分辨率一致。这些结果表明,傅里叶域中的对数强度图提供了一种空间分辨率的替代测量方法,而无需明确界定噪声标准。

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