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Diffusion-Weighted MRI in the Body: Applications and Challenges in Oncology

American Journal of Roentgenology · 2007 · Vol. 188(6) · pp. 1622–1635
Dow‐Mu KohDavid J. Collins

Abstract

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.

MRI in cancer diagnosisAdvanced Neuroimaging Techniques and ApplicationsAdvanced MRI Techniques and ApplicationsMedicineDiffusion MRIRadiologyMedical physicsScope (computer science)Cancer imagingMagnetic resonance imagingNuclear medicineCancerComputer science

MeSH terms

AdultHumansImage EnhancementImage Interpretation, Computer-AssistedMaleMedical OncologyNeoplasmsPrognosisDiffusion Magnetic Resonance ImagingWhole Body Imaging
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