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肝硬化中的肝细胞结节:CT评估的最新技术(灌注CT/容积螺旋穿梭扫描/双能CT等)。

Hepatocellular nodules in liver cirrhosis: state of the art CT evaluation (perfusion CT/volume helical shuttle scan/dual-energy CT, etc.).

作者信息

Okada Masahiro, Kim Tonsok, Murakami Takamichi

机构信息

Department of Radiology, Kinki University School of Medicine, Ohno-Higashi, Osaka-Sayama, Japan.

出版信息

Abdom Imaging. 2011 Jun;36(3):273-81. doi: 10.1007/s00261-011-9684-2.

Abstract

The purpose of this article is to explain the role of advanced liver CT imaging, including perfusion CT, dual-energy CT, and volume helical shuttle (VHS) scanning, with regard to its clinical applications. Perfusion CT is a promising method for calculating hepatic blood flow and portal blood flow, including microcirculation, using a color-encoded display of parameters obtained from the liver time-density curve, with iodine contrast agent. Tumor angiogenesis and assessment of the response to antiangiogenesis treatment (e.g., Sorafenib) can be analyzed by perfusion CT of the liver. VHS scan has very high temporal resolution due to the reciprocating movement employed during scanning, enabling the acquisition of 24 scans of the whole liver in the arterial dominant phase during a 40-s breath hold, and a reduction in radiation dose. Dual-energy CT enables differentiation of materials and tissues based on their CT density values, using two different energy spectra. This method includes a low tube voltage CT technique that increases the contrast enhancement of vascular structures while simultaneously reducing radiation dose. Images obtained at the preferred settings of low tube voltage and high tube current, with dose reduction in the hepatic arterial phase, are useful for detecting hypervascular hepatocellular carcinoma.

摘要

本文旨在解释先进肝脏CT成像技术,包括灌注CT、双能CT和容积螺旋穿梭(VHS)扫描在临床应用中的作用。灌注CT是一种很有前景的方法,可通过使用从肝脏时间-密度曲线获得的参数的彩色编码显示,结合碘造影剂来计算肝血流量和门静脉血流量,包括微循环。肝脏灌注CT可用于分析肿瘤血管生成以及评估对抗血管生成治疗(如索拉非尼)的反应。由于扫描过程中采用的往复运动,VHS扫描具有非常高的时间分辨率,能够在40秒屏气期间在动脉主导期对全肝进行24次扫描,并降低辐射剂量。双能CT利用两种不同的能谱,根据材料和组织的CT密度值对其进行区分。该方法包括一种低管电压CT技术,可增强血管结构的对比增强,同时降低辐射剂量。在低管电压和高管电流的优选设置下获得的图像,在肝动脉期降低剂量,有助于检测富血供肝细胞癌。

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