Title
Direct Estimation of Pharmacokinetic Parameters from DCE-MRI using Deep CNN with Forward Physical Model Loss.
Abstract
Dynamic contrast-enhanced (DCE) MRI is an evolving imaging technique that provides a quantitative measure of pharmacokinetic (PK) parameters in body tissues, in which series of T1-weighted images are collected following the administration of a paramagnetic contrast agent. Unfortunately, in many applications, conventional clinical DCE-MRI suffers from low spatiotemporal resolution and insufficient volume coverage. In this paper, we propose a novel deep learning based approach to directly estimate the PK parameters from undersampled DCE-MRI data. Specifically, we design a custom loss function where we incorporate a forward physical model that relates the PK parameters to corrupted image-time series obtained due to subsampling in k-space. This allows the network to directly exploit the knowledge of true contrast agent kinetics in the training phase, and hence provide more accurate restoration of PK parameters. Experiments on clinical brain DCE datasets demonstrate the efficacy of our approach in terms of fidelity of PK parameter reconstruction and significantly faster parameter inference compared to a model-based iterative reconstruction method.
Year
DOI
Venue
2018
10.1007/978-3-030-00928-1_5
Lecture Notes in Computer Science
DocType
Volume
ISSN
Conference
11070
0302-9743
Citations 
PageRank 
References 
1
0.36
3
Authors
8
Name
Order
Citations
PageRank
Cagdas Ulas163.31
Giles Tetteh2123.61
Michael J. Thrippleton310.36
p a armitage4418.39
Stephen Makin532.44
Joanna M. Wardlaw610817.52
Mike E. Davies71664120.39
Bjoern H. Menze8103280.31