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高精度准确测定 CT 点扩散函数。

Accurate determination of CT point-spread-function with high precision.

机构信息

Niigata University and Dental Hospital, Niigata, Japan.

出版信息

J Appl Clin Med Phys. 2013 Jul 8;14(4):3905. doi: 10.1120/jacmp.v14i4.3905.

Abstract

The measurement of modulation transfer functions (MTFs) in computed tomography (CT) is often performed by scanning a point source phantom such as a thin wire or a microbead. In these methods the region of interest (ROI) is generally placed on the scanned image to crop the point source response. The aim of the present study was to examine the effect of ROI size on MTF measurement, and to optimize the ROI size. Using a 4 multidetector-row CT, MTFs were measured by the wire and bead methods for three types of reconstruction kernels designated as 'smooth', 'standard', and 'edge-enhancement' kernels. The size of a square ROI was changed from 30 to 50 pixels (approximately 2.9 to 4.9 mm). The accuracies of the MTFs were evaluated using the verification method. The MTFs measured by the wire and bead methods were dependent on ROI size, particularly in MTF measurement for the 'edge-enhancement' kernel. MTF accuracy evaluated by the verification method changed with ROI size, and we were able to determine the optimum ROI size for each method (wire/bead) and for each kernel. Using these optimal ROI sizes, the MTF obtained by the wire method was in strong agreement with the MTF obtained by the bead method in each kernel. Our data demonstrate that the difficulties in obtaining accurate MTFs for some kernels such as edge-enhancement can be overcome by incorporating the verification method into the wire and bead methods, allowing optimization of the ROI size to accurately determine the MTF.

摘要

在计算机断层扫描(CT)中,调制传递函数(MTF)的测量通常通过扫描点源体模(如细线或微珠)来完成。在这些方法中,感兴趣区域(ROI)通常放置在扫描图像上以裁剪点源响应。本研究的目的是检查 ROI 大小对 MTF 测量的影响,并优化 ROI 大小。使用 4 排多探测器 CT,通过线和珠方法测量三种重建核(指定为“平滑”、“标准”和“边缘增强”核)的 MTF。正方形 ROI 的大小从 30 像素变化到 50 像素(约 2.9 毫米到 4.9 毫米)。使用验证方法评估 MTF 的准确性。线和珠方法测量的 MTF 取决于 ROI 大小,特别是在“边缘增强”核的 MTF 测量中。验证方法评估的 MTF 准确性随 ROI 大小而变化,我们能够为每种方法(线/珠)和每种核确定最佳 ROI 大小。使用这些最佳 ROI 大小,线方法获得的 MTF 与每种核的珠方法获得的 MTF 非常吻合。我们的数据表明,通过将验证方法纳入线和珠方法中,可以克服某些核(如边缘增强)获得准确 MTF 的困难,通过优化 ROI 大小来准确确定 MTF。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d067/5714539/a68815224799/ACM2-14-216-g001.jpg

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