Measurement of computed tomography modulation transfer function with a novel polymethyl methacrylate phantom.

IF 2.4 4区 医学 Q3 ENGINEERING, BIOMEDICAL Physical and Engineering Sciences in Medicine Pub Date : 2024-09-09 DOI:10.1007/s13246-024-01468-z
J Svenson, M A Irvine
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Abstract

A novel phantom for measuring the 10% and 50% values of the modulation transfer function (MTF) for computed tomography scanners (CT) was investigated. The phantom was constructed by drilling rows of holes of different sizes and frequencies into a small block of polymethyl methacrylate (PMMA). The MTF at a given frequency was determined from the ratio of the range of Hounsfield units within the rows of holes at different frequencies, and the difference in Hounsfield units between air and PMMA. A MTF curve was plotted from measurements at different frequencies and the 10% and 50% MTF values were obtained from a cubic spline interpolation. The MTF results obtained with the drilled hole phantom method were compared to a conventional method - using a thin wire and Spice-CT ImageJ Plugin- and with identical acquisition and reconstruction parameters. The drilled hole phantom measured the 50% MTF with reasonable accuracy but underestimated the 10% MTF by 8.2% on average. MTF measurements were reproducible for repeated image acquisitions and with different users analysing the images, and the phantom was able to accurately measure the change in MTF when measured on images using different reconstruction kernels. The tool may find application as a cheap, easy to use method for routine QC testing of CT scanners.

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利用新型聚甲基丙烯酸甲酯模型测量计算机断层扫描调制传递函数。
研究了一种用于测量计算机断层扫描(CT)调制传递函数(MTF)10% 和 50% 值的新型模型。该模型是在一小块聚甲基丙烯酸甲酯(PMMA)上钻出一排排不同大小和频率的孔而制成的。特定频率下的 MTF 是根据不同频率下各排孔内的 Hounsfield 单位范围之比以及空气和 PMMA 之间的 Hounsfield 单位差值确定的。根据不同频率下的测量结果绘制 MTF 曲线,并通过三次样条插值获得 10% 和 50% 的 MTF 值。钻孔模型法获得的 MTF 结果与传统方法(使用细线和 Spice-CT ImageJ Plugin)以及相同的采集和重建参数进行了比较。钻孔模型测量 50% MTF 的准确度较高,但平均低估了 10% MTF 8.2%。在重复采集图像和不同用户分析图像的情况下,MTF 测量结果都具有可重复性,而且在使用不同重建核的图像上测量时,模型能够准确测量 MTF 的变化。该工具可作为一种廉价、易用的方法用于 CT 扫描仪的常规质量控制测试。
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CiteScore
8.40
自引率
4.50%
发文量
110
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