Computational Diffusion MRI

MICCAI Workshop, Athens, Greece, October 2016

Nonfiction, Science & Nature, Mathematics, Graphic Methods, Applied, Science
Cover of the book Computational Diffusion MRI by , Springer International Publishing
View on Amazon View on AbeBooks View on Kobo View on B.Depository View on eBay View on Walmart
Author: ISBN: 9783319541303
Publisher: Springer International Publishing Publication: May 11, 2017
Imprint: Springer Language: English
Author:
ISBN: 9783319541303
Publisher: Springer International Publishing
Publication: May 11, 2017
Imprint: Springer
Language: English

This volume offers a valuable starting point for anyone interested in learning computational diffusion MRI and mathematical methods for brain connectivity, while also sharing new perspectives and insights on the latest research challenges for those currently working in the field.

Over the last decade, interest in diffusion MRI has virtually exploded. The technique provides unique insights into the microstructure of living tissue and enables in-vivo connectivity mapping of the brain. Computational techniques are key to the continued success and development of diffusion MRI and to its widespread transfer into the clinic, while new processing methods are essential to addressing issues at each stage of the diffusion MRI pipeline: acquisition, reconstruction, modeling and model fitting, image processing, fiber tracking, connectivity mapping, visualization, group studies and inference.

These papers from the 2016 MICCAI Workshop “Computational Diffusion MRI” – which was intended to provide a snapshot of the latest developments within the highly active and growing field of diffusion MR – cover a wide range of topics, from fundamental theoretical work on mathematical modeling, to the development and evaluation of robust algorithms and applications in neuroscientific studies and clinical practice. The contributions include rigorous mathematical derivations, a wealth of rich, full-color visualizations, and biologically or clinically relevant results. As such, they will be of interest to researchers and practitioners in the fields of computer science, MR physics, and applied mathematics. 

View on Amazon View on AbeBooks View on Kobo View on B.Depository View on eBay View on Walmart

This volume offers a valuable starting point for anyone interested in learning computational diffusion MRI and mathematical methods for brain connectivity, while also sharing new perspectives and insights on the latest research challenges for those currently working in the field.

Over the last decade, interest in diffusion MRI has virtually exploded. The technique provides unique insights into the microstructure of living tissue and enables in-vivo connectivity mapping of the brain. Computational techniques are key to the continued success and development of diffusion MRI and to its widespread transfer into the clinic, while new processing methods are essential to addressing issues at each stage of the diffusion MRI pipeline: acquisition, reconstruction, modeling and model fitting, image processing, fiber tracking, connectivity mapping, visualization, group studies and inference.

These papers from the 2016 MICCAI Workshop “Computational Diffusion MRI” – which was intended to provide a snapshot of the latest developments within the highly active and growing field of diffusion MR – cover a wide range of topics, from fundamental theoretical work on mathematical modeling, to the development and evaluation of robust algorithms and applications in neuroscientific studies and clinical practice. The contributions include rigorous mathematical derivations, a wealth of rich, full-color visualizations, and biologically or clinically relevant results. As such, they will be of interest to researchers and practitioners in the fields of computer science, MR physics, and applied mathematics. 

More books from Springer International Publishing

Cover of the book Geomathematics: Theoretical Foundations, Applications and Future Developments by
Cover of the book Applications of Computer Algebra by
Cover of the book Research Perspectives on Work and the Transition to Motherhood by
Cover of the book Hybrid Dynamical Systems by
Cover of the book The Stars of Galileo Galilei and the Universal Knowledge of Athanasius Kircher by
Cover of the book Artificial General Intelligence by
Cover of the book Representing Scientific Knowledge by
Cover of the book Programming with Actors by
Cover of the book Future Network Systems and Security by
Cover of the book Positron Emission Tomography with Computed Tomography (PET/CT) by
Cover of the book Understanding Smart Cities: A Tool for Smart Government or an Industrial Trick? by
Cover of the book Recent Advances in Retinoblastoma Treatment by
Cover of the book Nutritional Antioxidant Therapies: Treatments and Perspectives by
Cover of the book Introduction to Wind Energy Systems by
Cover of the book Thyroid Nodules by
We use our own "cookies" and third party cookies to improve services and to see statistical information. By using this website, you agree to our Privacy Policy