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首页> 外文期刊>AJR: American Journal of Roentgenology : Including Diagnostic Radiology, Radiation Oncology, Nuclear Medicine, Ultrasonography and Related Basic Sciences >Dual-source dual-energy CT with additional tin filtration: Dose and image quality evaluation in phantoms and in vivo.
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Dual-source dual-energy CT with additional tin filtration: Dose and image quality evaluation in phantoms and in vivo.

机译:具有附加锡过滤功能的双源双能CT:幻象和体内的剂量和图像质量评估。

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OBJECTIVE: The objective of this study was to investigate the effect on radiation dose and image quality of the use of additional spectral filtration for dual-energy CT using dual-source CT (DSCT). MATERIALS AND METHODS: A commercial DSCT scanner was modified by adding tin filtration to the high-kV tube, and radiation output and noise were measured in water phantoms. Dose values for equivalent image noise were compared between the dual-energy mode with and without tin filtration and the single-energy mode. To evaluate dual-energy CT material discrimination, the material-specific dual-energy ratio for calcium and that for iodine were determined using images of anthropomorphic phantoms. Data were additionally acquired from imaging a 38-kg pig and an 87-kg pig, and the noise of the linearly mixed images and virtual noncontrast images was compared between dual-energy modes. Finally, abdominal dual-energy CT images of two patients of similar sizes undergoing clinically indicated CT were compared. RESULTS: Adding tin filtration to the high-kV tube improved the dual-energy contrast between iodine and calcium as much as 290%. Data from our animal study showed that tin filtration had no effect on noise in the dual-energy CT mixed images but decreased noise by as much as 30% in the virtual noncontrast images. Virtual noncontrast images of patients acquired using 100 and 140 kV with added tin filtration had improved image quality relative to those generated using 80 and 140 kV without tin filtration. CONCLUSION: Tin filtration of the high-kV tube of a DSCT scanner increases the ability of dual-energy CT to discriminate between calcium and iodine without increasing dose relative to single-energy CT. Furthermore, the use of 100- and 140-kV tube potentials allows improved dual-energy CT imaging of large patients.
机译:目的:本研究的目的是研究使用双源CT(DSCT)的双能CT附加光谱滤镜对辐射剂量和图像质量的影响。材料与方法:对商用DSCT扫描仪进行了改进,在高kV管中增加了锡过滤,并在水体模中测量了辐射输出和噪声。在具有和不具有锡过滤的双能模式和单能模式之间比较了等效图像噪声的剂量值。为了评估双能CT材料的辨别力,使用拟人模型的图像确定了钙和碘的材料特定双能比。此外,还从38千克猪和87千克猪的成像中获取了数据,并在双能模式之间比较了线性混合图像和虚拟非对比度图像的噪声。最后,比较了两个相似大小的接受临床指征的CT的患者的腹部双能CT图像。结果:在高kV管中增加了锡过滤,碘和钙的双能对比提高了290%。来自我们动物研究的数据表明,锡过滤对双能CT混合图像中的噪声没有影响,但在虚拟非对比图像中可将噪声降低多达30%。与使用不带锡过滤的80和140 kV产生的图像相比,使用100和140 kV加上锡过滤的患者获得的虚拟非对比图像具有更高的图像质量。结论:DSCT扫描仪的高kV管的锡过滤增加了双能CT区分钙和碘的能力,而相对于单能CT却没有增加剂量。此外,使用100 kV和140 kV的电子管电势可以改善大型患者的双能CT成像。

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