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2012年北美放射学年会前列腺影像学最新研究进展 被引量:4
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作者 李亮 冯朝燕 +2 位作者 Jinxiang Yu oguz akin 王良 《磁共振成像》 CAS CSCD 2013年第3期166-171,共6页
第98届北美放射学年会(RSNA 2012)在美国芝加哥召开,该届大会共收录与前列腺相关的论文共58篇,以MRI为主,超声、PET等技术在前列腺中的的论文相对较少。这些论文主要关注于不同成像技术间的组合和优化在前列腺癌诊断与鉴别诊断中的应用... 第98届北美放射学年会(RSNA 2012)在美国芝加哥召开,该届大会共收录与前列腺相关的论文共58篇,以MRI为主,超声、PET等技术在前列腺中的的论文相对较少。这些论文主要关注于不同成像技术间的组合和优化在前列腺癌诊断与鉴别诊断中的应用价值。作者对以上方面的研究进展进行综述,旨在为我国前列腺影像学研究提供新的思路。 展开更多
关键词 前列腺 磁共振成像 超声检查 综述文献
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Dynamic contrast-enhanced magnetic resonance imaging of prostate cancer: A review of current methods and applications 被引量:8
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作者 Yousef Mazaheri oguz akin Hedvig Hricak 《World Journal of Radiology》 CAS 2017年第12期416-425,共10页
In many areas of oncology, dynamic contrast-enhanced magnetic resonance imaging(DCE-MRI) has proven to be a clinically useful, non-invasive functional imaging technique to quantify tumor vasculature and tumor perfusio... In many areas of oncology, dynamic contrast-enhanced magnetic resonance imaging(DCE-MRI) has proven to be a clinically useful, non-invasive functional imaging technique to quantify tumor vasculature and tumor perfusion characteristics. Tumor angiogenesis is an essential process for tumor growth, proliferation, and metastasis. Malignant lesions demonstrate rapid extravasation of contrast from the intravascular space to the capillary bed due to leaky capillaries associated with tumor neovascularity. DCE-MRI has the potential to provide information regarding blood flow, areas of hypoperfusion, and variations in endothelial permeability and microvessel density to aid treatment selection, enable frequent monitoring during treatment and assess response to targeted therapy following treatment. This review will discuss the current status of DCE-MRI in cancer imaging, with a focus on its use in imaging prostate malignancies as well as weaknesses that limit its widespread clinical use. The latest techniques for quantification of DCE-MRI parameters will be reviewed and compared. 展开更多
关键词 Prostate cancer Prostate magnetic resonance imaging Tumor angiogenesis Dynamic contrast-enhanced magnetic resonance imaging Kep = rate constant between extracellular extravascular space and plasma space Ktrans = volume transfer constant
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