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双能 CT:各种肺部疾病的临床应用。

Dual-energy CT: clinical applications in various pulmonary diseases.

机构信息

Department of Radiology, Seoul National University Hospital, 28 Yeongeon-dong, Jongno-gu, Seoul 110-744, Korea.

出版信息

Radiographics. 2010 May;30(3):685-98. doi: 10.1148/rg.303095101.

Abstract

The dual-energy computed tomographic (CT) technique allows the differentiation of materials with large atomic numbers such as iodine and xenon. The basic principle of dual-energy CT is material decomposition based on attenuation differences at different energy levels. By using dual-energy CT angiography for the evaluation of perfusion defects in cases of pulmonary embolism, and using xenon CT for the evaluation of ventilation defects, it may be possible to replace perfusion and ventilation scanning. An iodine map from dual-energy CT can demonstrate the distribution of pulmonary perfusion, whereas xenon ventilation CT can be used to generate a ventilation map. Furthermore, the virtual nonenhanced dual-energy CT technique can be used for the evaluation of pulmonary nodule characteristics without acquisition of true nonenhanced CT images. Knowledge of the applications of dual-energy CT and the typical images produced may lead to wider use of dual-energy CT for pulmonary applications and better interpretation of the results.

摘要

双能量计算机断层扫描(CT)技术可区分碘和氙等具有较大原子数的物质。双能 CT 的基本原理是基于不同能级下的衰减差异进行物质分解。通过使用双能 CT 血管造影术评估肺栓塞中的灌注缺损,并使用氙 CT 评估通气缺损,可能可以替代灌注和通气扫描。双能 CT 的碘图可显示肺灌注的分布,而氙通气 CT 可用于生成通气图。此外,虚拟非增强双能 CT 技术可用于评估肺结节特征,而无需采集真实的非增强 CT 图像。了解双能 CT 的应用和产生的典型图像可能会导致更广泛地将双能 CT 应用于肺部,并更好地解释结果。

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