体素
胶质瘤
细胞外
动态对比度
磁共振成像
示踪剂
核医学
动态增强MRI
对比度(视觉)
核磁共振
数学
生物医学工程
材料科学
化学
物理
计算机科学
医学
人工智能
放射科
生物化学
癌症研究
核物理学
作者
Prativa Sahoo,R.K.S. Rathore,Rishi Awasthi,Bhaswati Roy,Sanjay Kumar Verma,Divya Rathore,Sanjay Behari,Mazhar Husain,Nuzhat Husain,Chandra M. Pandey,Sudipta Mohakud,Rakesh K. Gupta
摘要
To modify the generalized tracer kinetic model (GTKM) by introducing an additional tissue uptake leakage compartment in extracellular extravascular space (LTKM). In addition, an implicit determination of voxel-wise local arterial input function (AIF) Cp (t) was performed to see whether these changes help in better discrimination between low- and high-grade glioma using dynamic contrast-enhanced (DCE) magnetic resonance imaging (MRI).The modified model (LTKM) was explored and fitted to the concentration-time curve C(t) of each voxel, in which the local AIF Cp (t) could be estimated by a time invariant convolution approximation based on a separately measured global AIF Ca (t). A comparative study of tracer kinetic analysis was performed on 184 glioma patients using DCE-MRI data on 1.5T and 3T MRI systems.The LTKM analysis provided more accurate pharmacokinetic parameters as evidenced by their relative constancy with respect to the length of concentration-time curve used. In addition, LTKM with local AIF resulted in improved discrimination between low-grade and high-grade gliomas.LTKM with local AIF provides more accurate estimation of physiological parameters and improves discrimination between low-grade and high-grade gliomas as compared with GTKM.
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