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体部扩散加权磁共振成像:肿瘤学中的应用与挑战

Diffusion-weighted MRI in the body: applications and challenges in oncology.

作者信息

Koh Dow-Mu, Collins David J

机构信息

Cancer Research UK Clinical Magnetic Resonance Research Group, Institute of Cancer Research, Sutton, Surrey, United Kingdom.

出版信息

AJR Am J Roentgenol. 2007 Jun;188(6):1622-35. doi: 10.2214/AJR.06.1403.

Abstract

OBJECTIVE

In this article, we present the basic principles of diffusion-weighted imaging (DWI) that can aid radiologists in the qualitative and quantitative interpretation of DW images. However, a detailed discussion of the physics of DWI is beyond the scope of this article. A short discussion ensues on the technical aspects of performing DWI in the body. The emerging applications of DWI for tumor detection, tumor characterization, distinguishing tumor tissue from nontumor tissue, and monitoring and predicting treatment response are highlighted. The challenges to widespread adoption of the technique for cancer imaging in the body are discussed.

CONCLUSION

DWI derives its image contrast from differences in the motion of water molecules between tissues. Such imaging can be performed quickly without the need for the administration of exogenous contrast medium. The technique yields qualitative and quantitative information that reflects changes at a cellular level and provides unique insights about tumor cellularity and the integrity of cell membranes. Recent advances enable the technique to be widely applied for tumor evaluation in the abdomen and pelvis and have led to the development of whole-body DWI.

摘要

目的

在本文中,我们介绍扩散加权成像(DWI)的基本原理,这些原理有助于放射科医生对DW图像进行定性和定量解读。然而,对DWI物理学的详细讨论超出了本文范围。接下来将对在体内进行DWI的技术方面进行简短讨论。重点介绍DWI在肿瘤检测、肿瘤特征描述、区分肿瘤组织与非肿瘤组织以及监测和预测治疗反应方面的新兴应用。还将讨论该技术在体内癌症成像广泛应用中面临的挑战。

结论

DWI的图像对比度源于组织间水分子运动的差异。这种成像无需注射外源性对比剂即可快速完成。该技术可产生定性和定量信息,反映细胞水平的变化,并提供有关肿瘤细胞密度和细胞膜完整性的独特见解。最近的进展使该技术能够广泛应用于腹部和盆腔的肿瘤评估,并推动了全身DWI的发展。

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