A Comparative Analysis of MRI Automated Segmentation of Subcortical Brain Volumes in a Large Dataset of Elderly Subjects

被引:0
作者
Jaime Gomez-Ramirez
Javier Quilis-Sancho
Miguel A. Fernandez-Blazquez
机构
[1] Centro de Alzheimer Fundación Reina Sofía,Instituto de Salud Carlos III
来源
Neuroinformatics | 2022年 / 20卷
关键词
Brain imaging; magnetic resonance imaging; Segmentation; FreeSurfer; FSL;
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学科分类号
摘要
In this study, we perform a comparative analysis of automated image segmentation of subcortical structures in the elderly brain. Manual segmentation is very time-consuming and automated methods are gaining importance as a clinical tool for diagnosis. The two most commonly used software libraries for brain segmentation -FreeSurfer and FSL- are put to work in a large dataset of 4,028 magnetic resonance imaging (MRI) scans collected for this study. We find a lack of linear correlation between the segmentation volume estimates obtained from FreeSurfer and FSL. On the other hand, FreeSurfer volume estimates tend to be larger thanFSL estimates of the areas putamen, thalamus, amygdala, caudate, pallidum, hippocampus, and accumbens. The characterization of the performance of brain segmentation algorithms in large datasets as the one presented here is a necessary step towards partially or fully automated end-to-end neuroimaging workflow both in clinical and research settings.
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页码:63 / 72
页数:9
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[1]  
Andravizou A(2019)Brain atrophy in multiple sclerosis: mechanisms, clinical relevance and treatment options Autoimmunity Highlights 10 7-754
[2]  
Dardiotis E(2019)Contribution of normal aging to brain atrophy in ms Neurology-Neuroimmunology Neuroinflammation 6 e616-91
[3]  
Artemiadis A(2007)Gray matter atrophy in parkinson disease with dementia and dementia with lewy bodies Neurology 69 747-833
[4]  
Sokratous M(2005)The impact of the nih public access policy on literature informatics Neuroinformatics 3 81-24
[5]  
Siokas V(2008)Trajectories of brain loss in aging and the development of cognitive impairment Neurology 70 828-194
[6]  
Tsouris Z(2003)Assessment of consistency in contouring of normal-tissue anatomic structures Journal of Applied Clinical Medical Physics 4 17-176
[7]  
Aloizou A-M(1999)Cortical surface-based analysis: i. Segmentation and surface reconstruction NeuroImage 9 179-50
[8]  
Nikolaidis I(1993)Improved localizadon of cortical activity by combining eeg and meg with mri cortical surface reconstruction: a linear approach Journal of Cognitive Neuroscience 5 162-980
[9]  
Bakirtzis C(2015)Structural imaging of hippocampal subfields in healthy aging and Alzheimer’s disease Neuroscience 309 29-15
[10]  
Tsivgoulis G(2006)An automated labeling system for subdividing the human cerebral cortex on mri scans into gyral based regions of interest NeuroImage 31 968-1711