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Review of Clinical Applications for Virtual Monoenergetic Dual-Energy CT

机译:虚拟单体终端双能CT的临床应用综述

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摘要

In this article, the authors discuss the technical background and summarize the current body of literature regarding virtual monoenergetic (VM) images derived from dual-energy CT data, which can be reconstructed between 40 and 200 keV. Substantially improved iodine attenuation at lower kiloelectron volt levels and reduced beam-hardening artifacts at higher kiloelectron volt levels have been demonstrated from all major manufacturers of dual-energy CT units. Improved contrast attenuation with VM imaging at lower kiloelectron volt levels enables better delineation and diagnostic accuracy in the detection of various vascular or oncologic abnormalities. Low-kiloelectron-volt VM imaging may be useful for salvaging CT studies with suboptimal contrast material delivery or providing additional information on the arterial vasculature obtained from venous phase acquisitions. For patients with renal impairment, substantial reductions in the use of iodinated contrast material can be achieved by using lower-energy VM imaging. The authors recommend routine reconstruction of VM images at 50 keV when using dual-energy CT to exploit the increased contrast properties. For reduction of beam-hardening artifacts, VM imaging at 120 keV is useful for the initial assessment. (C) RSNA, 2019
机译:在本文中,作者讨论了技术背景并总结了关于从双能量CT数据导出的虚拟单元素(VM)图像的文献的当前身体,其可以在40到200keV之间重建。在所有主要制造商的双能CT单元的所有主要制造商都证明了在较低千升电压下的碘衰减和更高千电子电压下的梁硬化伪像。利用VM成像在较低千千电电压水平下改善了对比度衰减,使得能够在检测各种血管或肿瘤异常的检测中描绘和诊断准确性。低千千柱电压VM成像可用于递送次优造影材料的CT研究,或者提供关于从静脉期采集获得的动脉脉管系统的额外信息。对于肾损伤的患者,可以通过使用较低能量的VM成像来实现碘化造影材料的使用的大量减少。作者推荐使用双能CT在50 keV下进行常规重建VM图像,以利用增加的对比度。为了减少光束硬化伪影,120keV的VM成像可用于初始评估。 (c)2019年rsna

著录项

  • 来源
    《Radiology》 |2019年第2期|共12页
  • 作者单位

    Med Univ South Carolina Dept Radiol &

    Radiol Sci Div Cardiovasc Imaging 25 Courtenay Dr;

    Univ Hosp Frankfurt Dept Diagnost &

    Intervent Radiol Frankfurt Germany;

    Med Univ South Carolina Dept Radiol &

    Radiol Sci Div Cardiovasc Imaging 25 Courtenay Dr;

    Med Univ South Carolina Dept Radiol &

    Radiol Sci Div Cardiovasc Imaging 25 Courtenay Dr;

    Med Univ South Carolina Dept Radiol &

    Radiol Sci Div Cardiovasc Imaging 25 Courtenay Dr;

    Med Univ South Carolina Dept Radiol &

    Radiol Sci Div Cardiovasc Imaging 25 Courtenay Dr;

    Med Univ South Carolina Dept Radiol &

    Radiol Sci Div Cardiovasc Imaging 25 Courtenay Dr;

    Med Univ South Carolina Dept Radiol &

    Radiol Sci Div Cardiovasc Imaging 25 Courtenay Dr;

    Med Univ South Carolina Dept Radiol &

    Radiol Sci Div Cardiovasc Imaging 25 Courtenay Dr;

    Med Univ South Carolina Dept Radiol &

    Radiol Sci Div Cardiovasc Imaging 25 Courtenay Dr;

    Med Univ South Carolina Dept Radiol &

    Radiol Sci Div Cardiovasc Imaging 25 Courtenay Dr;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 放射医学;
  • 关键词

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