Author:
Calixto Camilo,Soldatelli Matheus D.,Li Bo,Pierotich Lana,Gholipour Ali,Warfield Simon K.,Karimi Davood
Abstract
AbstractThere is a growing interest in using diffusion MRI to study the white matter tracts and structural connectivity of the fetal brain. Recent progress in data acquisition and processing suggests that this imaging modality has a unique role in elucidating the normal and abnormal patterns of neurodevelopment in utero. However, there have been no efforts to quantify the prevalence of crossing tracts and bottleneck regions, important issues that have been extensively researched for adult brains. In this work, we determined the brain regions with crossing tracts and bottlenecks between 23 and 36 gestational weeks. We performed probabilistic tractography on 59 fetal brain scans and extracted a set of 51 distinct white tracts, which we grouped into 10 major tract bundle groups. We analyzed the results to determine the patterns of tract crossings and bottlenecks. Our results showed that 20-25% of the white matter voxels included two or three crossing tracts. Bottlenecks were more prevalent. Between 75-80% of the voxels were characterized as bottlenecks, with more than 40% of the voxels involving four or more tracts. The results of this study highlight the challenge of fetal brain tractography and structural connectivity assessment and call for innovative image acquisition and analysis methods to mitigate these problems.
Publisher
Cold Spring Harbor Laboratory
Reference95 articles.
1. Structural mri connectome in development: challenges of the changing brain;The British journal of radiology,2014
2. Development of human white matter pathways in utero over the second and third trimester
3. Motion-Robust Diffusion-Weighted Brain MRI Reconstruction Through Slice-Level Registration-Based Motion Tracking
4. Higher order spherical harmonics reconstruction of fetal diffusion mri with intensity correction;IEEE transactions on medical imaging,2019
5. Daan Christiaens , Lucilio Cordero-Grande , Maximilian Pietsch , Jana Hutter , Anthony N Price , Emer J Hughes , Katy Vecchiato , Maria Deprez , A David Edwards , Joseph V Hajnal , et al. Scattered slice shard reconstruction for motion correction in multi-shell diffusion mri. Neuroimage, 225:117437, 2021.