Biophysics and Biochemistry of Cartilage by NMR and MRI

Author:   Yang Xia (Oakland University, USA) ,  Konstantin Momot (Queensland University of Technology, Australia) ,  Konstantin Momot ,  Peter Basser
Publisher:   Royal Society of Chemistry
Volume:   Volume 8
ISBN:  

9781782621331


Pages:   731
Publication Date:   16 November 2016
Format:   Hardback
Availability:   In Print   Availability explained
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Biophysics and Biochemistry of Cartilage by NMR and MRI


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Author:   Yang Xia (Oakland University, USA) ,  Konstantin Momot (Queensland University of Technology, Australia) ,  Konstantin Momot ,  Peter Basser
Publisher:   Royal Society of Chemistry
Imprint:   Royal Society of Chemistry
Volume:   Volume 8
Dimensions:   Width: 15.60cm , Height: 4.60cm , Length: 23.40cm
Weight:   1.294kg
ISBN:  

9781782621331


ISBN 10:   1782621334
Pages:   731
Publication Date:   16 November 2016
Audience:   Professional and scholarly ,  Professional & Vocational
Format:   Hardback
Publisher's Status:   Active
Availability:   In Print   Availability explained
This item will be ordered in for you from one of our suppliers. Upon receipt, we will promptly dispatch it out to you. For in store availability, please contact us.

Table of Contents

Part One – Introduction: Introduction to Cartilage; Osmotic Properties of Cartilage; Introduction to NMR and MRI; The Magic Angle Effect in NMR and MRI of Cartilage; Part Two – Physical Properties of Cartilage by Relaxation Anisotropy; Experimental NMR and MRI Techniques for Cartilage Research: Physical Properties of Cartilage by Relaxation Anisotropy; Chemical Properties of Cartilage Studied Using Charged Ions; Quantification of Articular Cartilage Microstructure by the Analysis of the Diffusion Tensor; Sodium and Other Exotic Methods in NMR and MRI of Cartilage; Multi-Quantum Filtered NMR and MRI of Cartilage; Solid-State NMR Techniques to Study the Molecular Dynamics in Cartilage; Ultrashort Echo Time Imaging of Articular Cartilage; Low-Field and Field-Cycling NMR and MRI of Cartilage; The Influence of Specimen and Experimental Conditions on NMR and MRI of Cartilage; Part Three – Biomechanical Properties of Cartilage by NMR and MRI; Diffusion MRI and Poroelastic Biomechanics of Articular Cartilage; Combining Multi-Modal MRI and Biomechanical Modeling to Investigate the Response of Cartilage and Chondrocytes to Mechanical Stimuli; Loading-Induced Changes in Cartilage Studied by NMR and MRI; Part Four– Applications and the Future of Cartilage Research by NMR and MRI; The Critical Role of the Imaging Resolution in MRI of Cartilage – The MRI Microscope; Multi-Component Relaxations in MRI of Cartilage; Uni- and Multi-Parametric Magnetic Resonance Analysis of Cartilage; Magnetic Resonance in the Assessment of Tissue Engineered Cartilage; Complementary Imaging in MRI of Cartilage; Quantitative MRI for Detection of Cartilage Damage; Challenges for the Early Detection of Degenerative; Cartilage Changes Using Magnetic Resonance Imaging In vivo in Humans; Ultrahigh-Field Whole-Body MRI for Cartilage Imaging: Technical Challenges

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Universität Leipzig, Germany

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