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Computer simulations and models for the performance characteristics of spectrally equivalent X-ray beams in medical diagnostic radiology

机译:医学诊断放射学中等效光谱X射线束性能特征的计算机模拟和模型

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摘要

In order to achieve uniformity in radiological imaging, it is recommended that the concept of equivalence in shape (quality) and size (quantity) of clinical Xray beams should be used for carrying out the comparative evaluation of image and patient dose. When used under the same irradiation geometry, X-ray beams that are strictly or relatively equivalent in terms of shape and size will produce identical or relatively identical image quality and patient dose. Simple mathematical models and software program EQSPECT.FOR were developed for the comparative evaluation of the performance characteristics in terms of contrast (C), contrast to noise ratio (CNR) and figure-of-merit (FOM = CNR2/DOSE) for spectrally equivalent beams transmitted through filter materials referred to as conventional and k-edged. At the same value of operating potential (kVp), results show that spectrally equivalent beam transmitted through conventional filter with higher atomic number (Z-value) in comparison with that transmitted through conventional filter with lower Z-value resulted in the same value of C and FOM. However, in comparison with the spectrally equivalent beam transmitted through filter of lower Z-value, the beam through filter of higher Z-value produced higher value of CNR and DOSE at equal tube loading (mAs) and kVp. Under the condition of equivalence of spectrum, at scaled (or reduced) tube loading and same kVp, filter materials of higher Z-value can produce the same values of C, CNR, DOSE and FOM as filter materials of lower Z-value. Unlike the case of comparison of spectrally equivalent beam transmitted through one conventional filter and that through another conventional filter, it is not possible to derive simple mathematical formulations for the relative performance of spectrally equivalent beam transmitted through a given conventional filter material and that through kedge filter material.
机译:为了实现放射成像的均匀性,建议将临床X射线束的形状(质量)和大小(数量)相等的概念用于图像和患者剂量的比较评估。当在相同的照射几何形状下使用时,形状或大小严格或相对相等的X射线束将产生相同或相对相同的图像质量和患者剂量。开发了简单的数学模型和软件程序EQSPECT.FOR以比较评估在频谱等效方面的对比度(C),对比度与噪声比(CNR)和品质因数(FOM = CNR2 / DOSE)光束通过称为常规和k边形的滤光材料传输。在相同的工作电势(kVp)值下,结果表明,通过具有较高原子序数(Z值)的常规滤波器传输的光谱等效光束与通过具有较低Z值的常规滤波器传输的光谱等效光束导致C值相同和FOM。但是,与通过较低Z值的滤波器传输的光谱等效光束相比,通过较高Z值的滤波器的光束在相等的管负载(mAs)和kVp时产生较高的CNR和DOSE值。在频谱相等的条件下,在按比例缩放(或减小)的管负载和相同的kVp下,具有较高Z值的过滤器材料可以产生与具有较低Z值的过滤器相同的C,CNR,DOSE和FOM值。与比较通过一个常规滤光片透射的光谱等效光束和通过另一常规滤光片透射的光谱等效光束的情况不同,对于通过给定的常规滤光材料和通过楔形滤光片透射的光谱等效光束的相对性能,不可能得出简单的数学公式材料。

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    Okunade, Akintunde A.;

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  • 年度 2007
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  • 正文语种 en
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