Title :
Nonrigid volume registration using second-order MRF model
Author :
Kwon, Dongjin ; Yun, Il Dong ; Pohl, Kilian M. ; Davatzikos, Christos ; Lee, Sang Uk
Abstract :
In this paper, we introduce a nonrigid registration method using a Markov Random Field (MRF) energy model with second-order smoothness priors. The registration determines an optimal labeling of the MRF energy model where the label corresponds to a 3D displacement vector. In the MRF energy model, spatial relationships are constructed between nodes using second-order smoothness priors. This model improves limitations of first-order spatial priors which cannot fully incorporate the natural smoothness of deformations. Specifically, the second-order smoothness priors can generate desired smoother displacement vector fields and do not suffer from fronto-parallel effects commonly occurred in first-order priors. The usage of second-order priors in the energy model enables this method to produce more accurate registration results. In the experiments, we will show comparative results using uni- and multi-modal Brain MRI volumes.
Keywords :
Markov processes; biomechanics; biomedical MRI; brain; deformation; image registration; medical image processing; neurophysiology; Markov random field energy model; deformations; first-order priors; fronto-parallel effects; multimodal brain MRI volumes; nonrigid registration method; nonrigid volume registration; second-order MRF model; second-order smoothness proirs; unimodal brain MRI volumes; Accuracy; Brain modeling; Computational modeling; Magnetic resonance imaging; Message passing; Solid modeling; Vectors; MRF Energy Model; Nonrigid Volume Registration; Second-Order Smoothness Prior;
Conference_Titel :
Biomedical Imaging (ISBI), 2012 9th IEEE International Symposium on
Conference_Location :
Barcelona
Print_ISBN :
978-1-4577-1857-1
DOI :
10.1109/ISBI.2012.6235646