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基于具有快速千伏切换功能的单源双能CT的虚拟单色图像和碘依赖性图像对孤立性肺结节的评估

Assessment of Solitary Pulmonary Nodules Based on Virtual Monochrome Images and Iodine-Dependent Images Using a Single-Source Dual-Energy CT with Fast kVp Switching.

作者信息

Zegadło Arkadiusz, Żabicka Magdalena, Kania-Pudło Marta, Maliborski Artur, Różyk Aleksandra, Sośnicki Witold

机构信息

Department of Radiology, Military Institute of Medicine, Szaserów 128, 04-141 Warsaw, Poland.

Department of General, Oncological, Metabolic and Thoracic Surgery, Military Institute of Medicine, Szaserów 128, 04-141 Warsaw, Poland.

出版信息

J Clin Med. 2020 Aug 4;9(8):2514. doi: 10.3390/jcm9082514.

Abstract

With lung cancer being the most common malignancy diagnosed worldwide, lung nodule assessment has proved to be one of big challenges of modern medicine. The aim of this study was to examine the usefulness of Dual Energy Computed Tomography (DECT) in solitary pulmonary nodule (SPN) assessment. Between January 2017 and June 2018; 65 patients (42 males and 23 females) underwent DECT scans in the late arterial phase (AP) and venous phase (VP). We concluded that imaging at an energy level of 65 keV was the most accurate in detecting malignancy in solitary pulmonary nodules (SPNs) measuring ≤30 mm in diameter on virtual monochromatic maps. Both virtual monochromatic images and iodine concentration maps prove to be highly useful in differentiating benign and malignant pulmonary nodules. As for iodine concentration maps, the analysis of venous phase images resulted in the highest clinical usefulness. To summarize, DECT may be a useful tool in the differentiation of benign and malignant SPNs. A single-phase DECT examination with scans acquired 90 s after contrast media injection is recommended.

摘要

肺癌是全球诊断出的最常见恶性肿瘤,肺结节评估已被证明是现代医学的重大挑战之一。本研究的目的是检验双能计算机断层扫描(DECT)在孤立性肺结节(SPN)评估中的效用。在2017年1月至2018年6月期间;65例患者(42例男性和23例女性)在动脉晚期(AP)和静脉期(VP)接受了DECT扫描。我们得出结论,在虚拟单色图上,65 keV能量水平的成像在检测直径≤30 mm的孤立性肺结节(SPN)中的恶性肿瘤方面最为准确。虚拟单色图像和碘浓度图在鉴别良性和恶性肺结节方面都非常有用。至于碘浓度图,静脉期图像分析的临床效用最高。总之,DECT可能是鉴别良性和恶性SPN的有用工具。建议在注射造影剂90秒后进行单相DECT检查。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d078/7465690/0e1f1a257946/jcm-09-02514-g0A1.jpg

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