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Fully Automatic Segmentation of the Hippocampus and the Amygdala from MRI Using Hybrid Prior Knowledge.

, , , , , , , and . MICCAI (1), volume 4791 of Lecture Notes in Computer Science, page 875-882. Springer, (2007)

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Joined Segmentation of Cortical Surface and Brain Volume in MRI Using a Homotopic Deformable Cellular Model., , and . 3DIM, page 240-251. IEEE Computer Society, (1999)Better Conditioning the MEG/EEG Inverse Problem: The Multivariate Source Prelocalization Approach., , , , and . ISBI, page 1361-1364. IEEE, (2004)Improving quantification of functional networks with EEG inverse problem: Evidence from a decoding point of view., , and . NeuroImage, 55 (4): 1536-1547 (2011)Multidimensional classification of hippocampal shape features discriminates Alzheimer's disease and mild cognitive impairment from normal aging., , , , , , , , , and 2 other author(s). CoRR, (2017)3D Reconstruction of Vessel Lumen from Very Few Angiograms by Dynamic Contours Using a Stochastic Approach., , , and . Graphical Models, 62 (2): 105-127 (2000)A New Approach to the MEG/EEG Inverse Problem for the Recovery of Cortical Phase-Synchrony., , and . IPMI, volume 2082 of Lecture Notes in Computer Science, page 272-285. Springer, (2001)Cellular Complexes: A Tool for 3D Homotopic Segmentation in Brain Images., , and . ICIP (3), page 832-836. (1998)A cellular model for multi-objects multi-dimensional homotopic deformations., , and . Pattern Recognition, 34 (9): 1785-1798 (2001)opologically controlled segmentation of 3D magnetic resonance images of the head by using morphological operators., , , , , and . Pattern Recognition, 36 (10): 2463-2478 (2003)Anatomical data fusion for quantitative reconstruction in cardiac tomoscintigraphy using active contours of the organs of the thorax., , and . ICIP (2), page 733-736. (1996)