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使用人体血流模型在双能计算机断层扫描中通过稀释注射验证剂量降低效果

Verification of the Dose Reduction Effect via Diluted Injection in Dual-Energy Computed Tomography Using a Human Blood Flow Phantom.

作者信息

Tomita Hironobu, Shibata Koichi

机构信息

Graduate School of Healthcare Science, Suzuka University of Medical Science, 1001-1, Kishioka-cho, Suzuka, Mie 510-0293, Japan.

Department of Radiology, Saiseikai Kawaguchi General Hospital, 5-11-5, Nishikawaguchi, Kawaguchi, Saitama 332-0021, Japan.

出版信息

Radiol Res Pract. 2019 Apr 1;2019:3512126. doi: 10.1155/2019/3512126. eCollection 2019.

Abstract

PURPOSE

We sought to examine the possibility of reducing the contrast medium dosage in dual-energy imaging using a saline-mixed injection with a virtual monochromatic energy method of dual-source computed tomography (CT).

METHODS

An X-ray CT (SOMATOM Definition Flash: Siemens, Nurnberg, Germany) was employed. The mixing ratio of contrast medium and saline was gradually changed by 10%, followed by a mixed injection into a dynamic blood flow phantom (Nemoto Kyorindo, Japan) which is a hemodynamic simulation phantom to obtain time-enhancement curves (TECs). Exactly 64 TECs were prepared for each mixing ratio by changing the energy from 40 to 75 keV for monoenergetic imaging. The relationship between the image standard deviation (SD) and the energy of the virtual monochromatic image was determined. Combinations of the mixing ratio and energy (keV), which can maintain high CT numbers and low image SDs for 3D imaging, were tested, and the reduction rate of the contrast medium was calculated.

RESULTS

The TECs for the mixed injection method changed linearly with the dilution rates. The mixing ratios were strongly correlated with the maximum CT number of the TEC (R = 0.98). Contrast CT numbers and image SDs increased by approximately 20% and 25%, respectively, as the energy decreased by 5 keV. The optimal conditions for reducing the contrast medium dose were a mixing ratio of 6:4 and 55 keV of energy.

CONCLUSION

The virtual monochromatic energy method reduced the contrast medium dosage by up to 40% for three-dimensional CT-angio (3DCTA) tests.

摘要

目的

我们试图研究通过双源计算机断层扫描(CT)的虚拟单色能量法进行盐水混合注射来降低双能量成像中造影剂剂量的可能性。

方法

使用一台X射线CT(SOMATOM Definition Flash,西门子,德国纽伦堡)。造影剂与盐水的混合比例以10%的幅度逐渐变化,然后将混合液注入作为血流动力学模拟体模的动态血流体模(日本Nemoto Kyorindo)中,以获取时间增强曲线(TEC)。通过将单能成像的能量从40 keV改变到75 keV,为每个混合比例精确制备64条TEC。确定图像标准差(SD)与虚拟单色图像能量之间的关系。测试了能够在三维成像中保持高CT值和低图像标准差的混合比例与能量(keV)的组合,并计算造影剂的减少率。

结果

混合注射法的TEC随稀释率呈线性变化。混合比例与TEC的最大CT值高度相关(R = 0.98)。随着能量降低5 keV,对比CT值和图像标准差分别增加约20%和25%。降低造影剂剂量的最佳条件是混合比例为6:4且能量为55 keV。

结论

虚拟单色能量法在三维CT血管造影(3DCTA)检查中可将造影剂剂量降低多达40%。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b3f0/6463575/1b320b3590b0/RRP2019-3512126.001.jpg

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