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The role of diffusion and perfusion weighted imaging in the differential diagnosis of cerebral tumors: a review and future perspectives

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Auteur
Svolos, P.; Kousi, E.; Kapsalaki, E.; Theodorou, K.; Fezoulidis, I.; Kappas, C.; Tsougos, I.
Date
2014
DOI
10.1186/1470-7330-14-20
Sujet
Diffusion weighted imaging
Diffusion tensor imaging
Dynamic-susceptibility contrast imaging
Brain tumors
Differential
diagnosis
HIGH-GRADE GLIOMAS
MAGNETIC-RESONANCE-SPECTROSCOPY
INTRACRANIAL MASS
LESIONS
BLOOD-VOLUME MEASUREMENTS
WHITE-MATTER ANATOMY
CONTRAST-ENHANCED MR
BRAIN-TUMORS
GLIOBLASTOMA-MULTIFORME
FRACTIONAL
ANISOTROPY
TENSOR MRI
Oncology
Radiology, Nuclear Medicine & Medical Imaging
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Résumé
The role of conventional Magnetic Resonance Imaging (MRI) in the detection of cerebral tumors has been well established. However its excellent soft tissue visualization and variety of imaging sequences are in many cases non-specific for the assessment of brain tumor grading. Hence, advanced MRI techniques, like Diffusion-Weighted Imaging (DWI), Diffusion Tensor Imaging (DTI) and Dynamic-Susceptibility Contrast Imaging (DSCI), which are based on different contrast principles, have been used in the clinical routine to improve diagnostic accuracy. The variety of quantitative information derived from these techniques provides significant structural and functional information in a cellular level, highlighting aspects of the underlying brain pathophysiology. The present work, reviews physical principles and recent results obtained using DWI/DTI and DSCI, in tumor characterization and grading of the most common cerebral neoplasms, and discusses how the available MR quantitative data can be utilized through advanced methods of analysis, in order to optimize clinical decision making.
URI
http://hdl.handle.net/11615/33479
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