Correlative assessment of tumor microcirculation using contrast‐enhanced perfusion MRI and intravoxel incoherent motion diffusion‐weighted MRI: is there a link between them?

盒内非相干运动 灌注 微循环 核医学 磁共振成像 核磁共振 白质 化学 胶质瘤 血管通透性 磁共振弥散成像 医学 病理 放射科 物理 癌症研究
作者
Sotirios Bisdas,Christian Braun,Marco Skardelly,Jens Schittenhelm,Tze Hern Teo,Choon Hua Thng,Uwe Klose,Tong San Koh
出处
期刊:NMR in Biomedicine [Wiley]
卷期号:27 (10): 1184-1191 被引量:55
标识
DOI:10.1002/nbm.3172
摘要

The purpose of this study was to correlate intravoxel incoherent motion (IVIM) imaging with classical perfusion‐weighted MRI metrics in human gliomas. Parametric images for slow diffusion coefficient ( D ), fast diffusion coefficient ( D *), and fractional perfusion‐related volume ( f ) in patients with high‐grade gliomas were generated. Maps of F p (plasma flow), v p (vascular plasma volume), PS (permeability surface–area product), v e (extravascular, extracellular volume), E (extraction ratio), k e (influx ratio into the interstitium), and t c (vascular transit time) from dynamic contrast‐enhanced (DCE) and dynamic susceptibility contrast‐enhanced (DSC) MRI were also generated. A region‐of‐interest analysis on the contralateral healthy white matter and on the tumor areas was performed and the extracted parameter values were tested for any significant differences among tumor grades or any correlations. Only f could be significantly correlated to DSC‐derived v p and t c in healthy brain tissue. Concerning the tumor regions, F p was significantly positively correlated with D * and inversely correlated with f in DSC measurements. The D *, f , and f × D * values in the WHO grade III gliomas were non‐significantly different from those in the grade IV gliomas. There was a trend to significant negative correlations between f and PS as well as between f × D * and k e in DCE experiments. Presumably due to different theoretical background, tracer properties and modeling of the tumor vasculature in the IVIM theory, there is no clearly evident link between D *, f and DSC‐ and DCE‐derived metrics. Copyright © 2014 John Wiley & Sons, Ltd.
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