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Dual-energy Computed Tomography of the Head: A Phantom Study Assessing Axial Dose Distribution, Eye Lens Dose, and Image Noise Level

机译:头的双能计算机断层扫描:评估轴向剂量分布,眼透镜剂量和图像噪声水平的幻像研究

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The aim of this study was to propose a calibration method for small dosimeters to measure absorbed doses during dual-source dual-energy computed tomography (DECT) and to compare the axial dose distribution, eye lens dose, and image noise level between DE and standard, single-energy (SE) head CT angiography. Three DE (100/Snl40 kVp 80/Snl40 kVp, and 140/80 kVp) and one SE (120 kVp) acquisitions were performed using a second-generation dual-source CT device and a female head phantom, with an equivalent volumetric CT dose index. The axial absorbed dose distribution at the orbital level and the absorbed doses for the eye lens were measured using radiophotoluminescent glass dosimeters. CT attenuation numbers were obtained in the DE composite images and the SE images of the phantom at the orbital level. The doses absorbed at the orbital level and in the eye lens were lower and standard deviations for the CT attenuation numbers were slightly higher in the DE acquisitions than those in the SE acquisition. The anterior surface dose was especially higher in the SE acquisition than that in the DE acquisitions. Thus, DE head CT angiography can be performed with a radiation dose lower than that required for a standard SE head CT angiography, with a slight increase in the image noise level. The 100/Sn140 kVp acquisition revealed the most balanced axial dose distribution. In addition, our proposed method was effective for calibrating small dosimeters to measure absorbed doses in DECT.
机译:这项研究的目的是提出一种用于小剂量计的校准方法,以测量双源双能计算机断层扫描(DECT)期间的吸收剂量,并比较DE和标准品之间的轴向剂量分布,眼镜片剂量和图像噪声水平,单能(SE)头颅CT血管造影。使用第二代双源CT设备和女性头部幻影进行了三次DE(100 / Snl40 kVp 80 / Snl40 kVp和140/80 kVp)和一个SE(120 kVp)采集,并具有等效的体积CT剂量指数。使用放射光致发光玻璃剂量计测量在轨道水平处的轴向吸收剂量分布和眼镜片的吸收剂量。在轨道水平的体模的DE合成图像和SE图像中获得了CT衰减数。在DE采集中,在眼眶晶状体和眼晶状体中吸收的剂量较低,而CT衰减数的标准偏差则比SE采集中的稍高。 SE采集中的前表面剂量特别高于DE采集中的前表面剂量。因此,可以用比标准SE头CT血管造影所需的辐射剂量低的放射剂量进行DE头CT血管造影,而图像噪声水平会略有增加。 100 / Sn140 kVp采集显示出最平衡的轴向剂量分布。此外,我们提出的方法对于校准小剂量计以测量DECT中的吸收剂量是有效的。

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