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Philippe Douek
Researcher at University of Lyon
Publications - 207
Citations - 6384
Philippe Douek is an academic researcher from University of Lyon. The author has contributed to research in topics: Magnetic resonance angiography & Angiography. The author has an hindex of 38, co-authored 195 publications receiving 5269 citations. Previous affiliations of Philippe Douek include United States Department of Health and Human Services & National Center for Research Resources.
Papers
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Diffusion MR imaging: clinical applications.
TL;DR: Water self-diffusion, a recently discovered source of contrast on MR images, has already shown promise for some clinical applications and potential applications include diffusion-localized spectroscopy and temperature imaging are suggested.
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Small nodule detection in cirrhotic livers: evaluation with US, spiral CT, and MRI and correlation with pathologic examination of explanted liver.
Agnès Rode,Brigitte Bancel,Philippe Douek,Michèle Chevallier,Valérie Vilgrain,Georges Picaud,Luc Henry,Françoise Berger,Thierry Bizollon,Jean-Louis Gaudin,Christian Ducerf +10 more
TL;DR: Comparison-enhanced MRI is the most sensitive technique for detecting liver nodules and gadolinium enhancement is themost sensitive and specific characteristic of HCC.
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MR color mapping of myelin fiber orientation
TL;DR: The orientation of the white matter tracts was found to be in excellent agreement with known anatomy and myelin fiber orientation mapping may offer a new perspective to evaluate white matter disorders.
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The vulnerable carotid artery plaque: current imaging methods and new perspectives.
TL;DR: A multimodal assessment of plaque vulnerability involving the combination of systemic markers, new imaging methods that target inflammatory and thrombotic components, and the potential of emerging therapies may lead to a new stratification system for atherothrombosis risk and to a better prevention of at HerothromBotic stroke.
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Is water diffusion restricted in human brain white matter? An echo-planar NMR imaging study.
TL;DR: It is found that the dependence of the diffusion coefficient on the diffusion time does not support the model of water restriction by impenetrable barriers, and results imply that water diffuses with a measurable rate across myelin fibers.