Modulation transfer function evaluation of cone beam computed and microcomputed tomography by using slanted edge phantom

S. Bence
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引用次数: 1

Abstract

Modulation transfer function (MTF) is a well known and widely accepted method for evaluating the spatial resolution of a digital radiographic imaging system. In the present study our aim was to evaluate the MTF obtained from CBCT and micro-CT images. A cylinder shaped phantom designed for slanted-edge method was scanned by a CBCT device at a 100 µm isometric voxel size and by a micro-CT device at a 20 µm isometric voxel size, simultaneously. The MTF curves were calculated and the mean spatial resolutions at 10% MTF were 3.33 + 0.29 lp/mm in the case of CBCT images and 13.35 + 2.47 lp/mm in the case of micro-CT images. The values showed a strong positive correlation regarding the CBCT and the micro-CT spatial resolution values, respectively. Our results suggests that CBCT imaging devices with a voxel size of 100 µm or below might aid the validation of fine anatomical structures and allowing the opportunity for reliable micromorphometric examinations
斜边影对锥束计算机和微计算机断层成像的调制传递函数评价
调制传递函数(MTF)是一种众所周知且被广泛接受的评估数字射线成像系统空间分辨率的方法。在本研究中,我们的目的是评估从CBCT和微ct图像中获得的MTF。采用100µm等距体素尺寸的CBCT装置和20µm等距体素尺寸的micro-CT装置同时扫描用于斜边法的圆柱形体。计算MTF曲线,10% MTF时CBCT图像的平均空间分辨率为3.33 + 0.29 lp/mm, micro-CT图像的平均空间分辨率为13.35 + 2.47 lp/mm。CBCT和micro-CT的空间分辨率值分别呈较强的正相关。我们的研究结果表明,体素尺寸为100µm或以下的CBCT成像设备可能有助于精细解剖结构的验证,并为可靠的微形态测量检查提供机会
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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