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Dual-Energy CT in Children: Imaging Algorithms and Clinical Applications

机译:儿童双能CT:成像算法和临床应用

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Dual-energy CT enables the simultaneous acquisition of CT images at two different x-ray energy spectra. By acquiring high-and low-energy spectral data, dual-energy CT can provide unique qualitative and quantitative information about tissue composition, allowing differentiation of multiple materials including iodinated contrast agents. The two dual-energy CT postprocessing techniques that best exploit the advantages of dual-energy CT in children are the material-decomposition images (which include virtual nonenhanced, iodine, perfused lung blood volume, lung vessel, automated bone removal, and renal stone characterization images) and virtual monoenergetic images. Clinical applications include assessment of the arterial system, lung perfusion, neoplasm, bowel diseases, renal calculi, tumor response to treatment, and metal implants. Of importance, the radiation exposure level of dual-energy CT is equivalent to or less than that of conventional single-energy CT. In this review, the authors discuss the basic principles of the dual-energy CT technologies and postprocessing techniques and review current clinical applications in the pediatric chest and abdomen. (c) RSNA, 2019
机译:双能CT使得能够在两个不同的X射线能谱下同时采集CT图像。通过获取高且低能量光谱数据,双能CT可以提供有关组织组成的独特定性和定量信息,允许多种材料的分化,包括碘化造影剂。最佳利用双能CT在儿童中的优点的两种双能CT后处理技术是材料分解图像(包括虚拟非兴奋,碘,灌注肺血容量,肺容器,自动骨移除和肾脏石材表征图像)和虚拟单齿性图像。临床应用包括评估动脉系统,肺灌注,肿瘤,肠疾病,肾结石,肿瘤对治疗和金属植入物的反应。重要性,双能CT的辐射曝光水平等同于或小于传统单能CT。在本次审查中,作者讨论了双能CT技术和后处理技术的基本原则,并审查了儿科胸部和腹部的当前临床应用。 (c)2019年rsna

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