An Interventional Magnetic Resonance Imaging Technique for the Molecular Characterization of Intraprostatic Dynamic Contrast Enhancement

The biological characterization of an individual patient's tumor by noninvasive imaging will have an important role in cancer care and clinical research if the molecular processes that underlie the image data are known. Spatial heterogeneity in the dynamics of magnetic resonance imaging contras...

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Main Authors: Cynthia Ménard, Robert C. Susil, Peter Choyke, Jonathan Coleman, Robert Grubb, Ahmed Gharib, Axel Krieger, Peter Guion, David Thomasson, Karen Ullman, Sandeep Gupta, Virginia Espina, Lance Liotta, Emanuel Petricoin, Gabor Fitchtinger, Louis L. Whitcomb, Ergin Atalar, C. Norman Coleman, Kevin Camphausen
Format: Article
Language:English
Published: SAGE Publishing 2005-01-01
Series:Molecular Imaging
Online Access:https://doi.org/10.1162/15353500200504181
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author Cynthia Ménard
Robert C. Susil
Peter Choyke
Jonathan Coleman
Robert Grubb
Ahmed Gharib
Axel Krieger
Peter Guion
David Thomasson
Karen Ullman
Sandeep Gupta
Virginia Espina
Lance Liotta
Emanuel Petricoin
Gabor Fitchtinger
Louis L. Whitcomb
Ergin Atalar
C. Norman Coleman
Kevin Camphausen
author_facet Cynthia Ménard
Robert C. Susil
Peter Choyke
Jonathan Coleman
Robert Grubb
Ahmed Gharib
Axel Krieger
Peter Guion
David Thomasson
Karen Ullman
Sandeep Gupta
Virginia Espina
Lance Liotta
Emanuel Petricoin
Gabor Fitchtinger
Louis L. Whitcomb
Ergin Atalar
C. Norman Coleman
Kevin Camphausen
author_sort Cynthia Ménard
collection DOAJ
description The biological characterization of an individual patient's tumor by noninvasive imaging will have an important role in cancer care and clinical research if the molecular processes that underlie the image data are known. Spatial heterogeneity in the dynamics of magnetic resonance imaging contrast enhancement (DCE-MRI) is hypothesized to reflect variations in tumor angiogenesis. Here we demonstrate the feasibility of precisely colocalizing DCE-MRI data with the genomic and proteomic profiles of underlying biopsy tissue using a novel MRI-guided biopsy technique in patients with prostate cancer.
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publisher SAGE Publishing
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series Molecular Imaging
spelling doaj-art-fcc0f23f5f8040dca07bd3cf844626f22025-01-02T22:38:07ZengSAGE PublishingMolecular Imaging1536-01212005-01-01410.1162/1535350020050418110.1162_15353500200504181An Interventional Magnetic Resonance Imaging Technique for the Molecular Characterization of Intraprostatic Dynamic Contrast EnhancementCynthia Ménard0Robert C. Susil1Peter Choyke2Jonathan Coleman3Robert Grubb4Ahmed Gharib5Axel Krieger6Peter Guion7David Thomasson8Karen Ullman9Sandeep Gupta10Virginia Espina11Lance Liotta12Emanuel Petricoin13Gabor Fitchtinger14Louis L. Whitcomb15Ergin Atalar16C. Norman Coleman17Kevin Camphausen18University of TorontoJohns Hopkins UniversityNIH/DHHSNIH/DHHSNIH/DHHSNIH/DHHSJohns Hopkins UniversityNIH/DHHSNIH/DHHSNIH/DHHSGE Healthcare TechnologiesNIH/DHHSNIH/DHHSFood and Drug AdministrationJohns Hopkins UniversityJohns Hopkins UniversityJohns Hopkins UniversityNIH/DHHSNIH/DHHSThe biological characterization of an individual patient's tumor by noninvasive imaging will have an important role in cancer care and clinical research if the molecular processes that underlie the image data are known. Spatial heterogeneity in the dynamics of magnetic resonance imaging contrast enhancement (DCE-MRI) is hypothesized to reflect variations in tumor angiogenesis. Here we demonstrate the feasibility of precisely colocalizing DCE-MRI data with the genomic and proteomic profiles of underlying biopsy tissue using a novel MRI-guided biopsy technique in patients with prostate cancer.https://doi.org/10.1162/15353500200504181
spellingShingle Cynthia Ménard
Robert C. Susil
Peter Choyke
Jonathan Coleman
Robert Grubb
Ahmed Gharib
Axel Krieger
Peter Guion
David Thomasson
Karen Ullman
Sandeep Gupta
Virginia Espina
Lance Liotta
Emanuel Petricoin
Gabor Fitchtinger
Louis L. Whitcomb
Ergin Atalar
C. Norman Coleman
Kevin Camphausen
An Interventional Magnetic Resonance Imaging Technique for the Molecular Characterization of Intraprostatic Dynamic Contrast Enhancement
Molecular Imaging
title An Interventional Magnetic Resonance Imaging Technique for the Molecular Characterization of Intraprostatic Dynamic Contrast Enhancement
title_full An Interventional Magnetic Resonance Imaging Technique for the Molecular Characterization of Intraprostatic Dynamic Contrast Enhancement
title_fullStr An Interventional Magnetic Resonance Imaging Technique for the Molecular Characterization of Intraprostatic Dynamic Contrast Enhancement
title_full_unstemmed An Interventional Magnetic Resonance Imaging Technique for the Molecular Characterization of Intraprostatic Dynamic Contrast Enhancement
title_short An Interventional Magnetic Resonance Imaging Technique for the Molecular Characterization of Intraprostatic Dynamic Contrast Enhancement
title_sort interventional magnetic resonance imaging technique for the molecular characterization of intraprostatic dynamic contrast enhancement
url https://doi.org/10.1162/15353500200504181
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