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© 2018

T1-Mapping in Myocardial Disease

Principles and Applications

  • Phillip C. Yang
Book

Table of contents

  1. Front Matter
    Pages i-x
  2. Joëlle K. Barral, Matthias G. Friedrich, Nikola Stikov
    Pages 1-14
  3. Michael Salerno, Christopher M. Kramer
    Pages 15-25
  4. Jennifer H. Jordan, W. Gregory Hundley
    Pages 27-43
  5. Róisín B. Morgan, Michael Jerosch-Herold, Raymond Y. Kwong
    Pages 45-59
  6. Russell J. Everett, David E. Newby, Marc R. Dweck
    Pages 61-75
  7. Yoko Kato, Mohammad R. Ostovaneh, Bharath Ambale-Venkatesh, Joao Lima
    Pages 87-100

About this book

Introduction

This book details the advances in cardiac MRI that have enabled quantitative tissue characterization of the myocardium using myocardial and blood T1 measurements, which have enabled reliable detection of diffuse pathological processes in both the cardiomyocytes and the interstitial cells of the myocardium. Evaluation of the native myocardial and interstitial fibrosis, and measurement of the extracellular volume fraction has allowed an unprecedented opportunity to elucidate the pathology, diagnosis and prognosis of cardiovascular disease.  

T1-Mapping in Myocardial Disease: Principles and Applications reviews a wide spectrum of significant cardiovascular disease and provides relevant guidance for the clinical implementation of this innovative technique. The specific topics covered include principles of T1-mapping in cardiovascular disease and the role of T1-mapping in hypertensive heart disease and hypertrophic cardiomyopathy, cardiotoxicity from cancer treatment, cardiacfibrosis, left ventricular hypertrophy in aortic stenosis, peri-infarct injury in ischemic cardiomyopathy, and stem cell therapy. This comprehensive coverage of the utility of T1-mapping in cardiovascular diseases will greatly appeal to the entire cardiovascular medicine and imaging communities.

 



Keywords

T1-Map Cardiac MRI Ischemic and non-ischemic cardiomyopathy Myocardial fibrosis Extra-cellular and Intra-cellular volume Myocardial viability

Editors and affiliations

  • Phillip C. Yang
    • 1
  1. 1.School of MedicineStanford University School of MedicineStanfordUSA

About the editors

Phillip C. Yang is an Associate Professor of Medicine (Cardiovascular Medicine) at the Stanford University School of Medicine. He directs the Cellular and Molecular Imaging Lab (Yang Lab) and Stanford Cardiothoracic MRI Program. Dr. Yang received degrees from Stanford University and Yale University School of Medicine, and completed post-graduate training at UCLA and Stanford University Medical Centers. Dr. Yang is a physician-scientist whose research interest focuses on clinical translation of the fundamental molecular and cellular processes of myocardial restoration. His research employs novel in vivo multi-modality molecular and cellular imaging technology to translate the basic innovation in small molecules. Dr. Yang is currently a PI on the NIH/NHLBI funded CCTRN UM1 grant, which is designed to conduct multi-center clinical trial on novel biological therapy. In addition, he is a PI on 3 NIH research grants, 1 CIRM grant, and leads 3 stem cell clinical trials. He hopes to pioneer the Cardiovascular Regeneration Program at Stanford. Dr. Yang has been the recipient of several prestigious awards including NIH Career Development Award, NIH Career Enhancement Award, and NIH Patient Oriented Research.

Bibliographic information

  • Book Title T1-Mapping in Myocardial Disease
  • Book Subtitle Principles and Applications
  • Editors Phillip C. Yang
  • DOI https://doi.org/10.1007/978-3-319-91110-6
  • Copyright Information Springer International Publishing AG, part of Springer Nature 2018
  • Publisher Name Springer, Cham
  • eBook Packages Medicine Medicine (R0)
  • Hardcover ISBN 978-3-319-91109-0
  • Softcover ISBN 978-3-030-08180-5
  • eBook ISBN 978-3-319-91110-6
  • Edition Number 1
  • Number of Pages X, 113
  • Number of Illustrations 6 b/w illustrations, 41 illustrations in colour
  • Topics Cardiology
    Diagnostic Radiology
  • Buy this book on publisher's site