Computational Diffusion MRI: 16th International Workshop, CDMRI 2025, Held in Conjunction with MICCAI 2025, Daejeon, South Korea, September 27, 2025, Proceedings

Author:   Maxime Chamberland ,  Yuqian Chen ,  Patryk Filipiak ,  Tom Hendriks
Publisher:   Springer Nature Switzerland AG
ISBN:  

9783032128362


Pages:   94
Publication Date:   27 December 2025
Format:   Paperback
Availability:   Not yet available   Availability explained
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Computational Diffusion MRI: 16th International Workshop, CDMRI 2025, Held in Conjunction with MICCAI 2025, Daejeon, South Korea, September 27, 2025, Proceedings


Overview

This book constitutes the proceedings of the 16th International Workshop, CDMRI 2025, held in conjunction with MICCAI 2025, the 28th International Conference on Medical Image Computing and Computer-Assisted Intervention. The workshop took place in Daejeon, South Korea, on September 27, 2025. The 8 full papers presented in this book were carefully reviewed and selected from 10 submissions. They focus on all aspects of diffusion MRI acquisition, analysis, and application, bringing us closer to reliable clinical tools.  

Full Product Details

Author:   Maxime Chamberland ,  Yuqian Chen ,  Patryk Filipiak ,  Tom Hendriks
Publisher:   Springer Nature Switzerland AG
Imprint:   Springer Nature Switzerland AG
ISBN:  

9783032128362


ISBN 10:   3032128366
Pages:   94
Publication Date:   27 December 2025
Audience:   Professional and scholarly ,  College/higher education ,  Professional & Vocational ,  Postgraduate, Research & Scholarly
Format:   Paperback
Publisher's Status:   Forthcoming
Availability:   Not yet available   Availability explained
This item is yet to be released. You can pre-order this item and we will dispatch it to you upon its release.

Table of Contents

.- From Fiber Tracts to Tumor Spread: Biophysical Modeling of Butterfly Glioma Growth Using Diffusion Tensor Imaging. .- Biophysical modeling of Intra-Voxel Incoherent Motion (IVIM) MRI based on realistic cerebral microvascular anatomy and dynamics in mouse and human brain. .- Progressive axonal degeneration in white matter pathways traversing peritumoral penumbra in frontotemporal glioma. .- Streamline Signature Net (SSN): Efficient White Matter Pathway Recognition for Bundles Parcellation Using Path Signature. .- Streamline Density Normalization: A Robust Approach to Mitigate Bundle Variability in Multi-Site Diffusion MRI. .- Quantifying Parameter Estimation Difficulty of dMRI Models by Submanifold Geometry in Signal Space. .- Susceptibility Distortion Correction of Diffusion MRI with a single Phase-Encoding Direction. .- Fully Automated Segmentation of Fiber Bundles in Anatomic Tracing Data.

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