Surface Expansion Regionalization of the Hippocampus in Early Brain Development
Wang, Y.; Chen, L.; Wu, Z.; Hung, S.-C.; Smith, J. K.; Wang, L.; Li, T.; Lin, W.; Li, G.
Show abstract
The hippocampal formation is implicated in a myriad of crucial functions, particularly centered around memory and emotion, with distinct subdivisions fulfilling specific roles. However, there is no consensus on the spatial organization of these subdivisions, given that the functional connectivity and gene expression-based parcellation along its longitudinal axis differs from the histology-based parcellation along its medial-lateral axis. The dynamic nonuniform surface expansion of the hippocampus during early development reflects the underlying changes of microstructure and functional connectivity, providing important clues on hippocampal subdivisions. Moreover, the thin and convoluted properties bring out the hippocampal maturity largely in the form of expanding surface area. We thus unprecedentedly explore the development-based surface area regionalization and patterns of the hippocampus by leveraging 513 high-quality longitudinal MRI scans during the first two postnatal years. Our findings imply two discrete hippocampal developmental patterns, featuring one pattern of subdivisions along the anterior-posterior axis (head, regions 1 and 5; body, regions 2, 4, 6, and 7; tail, region 3) and the other one along the medial-lateral axis (subiculum, regions 4, 5, and 6; CA fields, regions 1, 2, and 7). Most of the resulting 7 subdivisions exhibit region-specific and nonlinear spatiotemporal surface area expansion patterns with an initial high growth, followed by a transition to low increase. Each subregion displays bilaterally symmetric pattern. The medial portion of the hippocampal head experiences the most rapid surface area expansion. These results provide important references for exploring the fine-grained organization and development of the hippocampus and its intricate cognitions.
Matching journals
The top 8 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- High-resolution mapping and digital atlas of subcortical regions in the macaque monkey based on matched MAP-MRI and histology 93%
- The developing relations between networks of cortical myelin and neurophysiological connectivity 93%
- Multimodal anatomical mapping of subcortical regions in Marmoset monkeys using high-resolution MRI and matched histology with multiple stains. 93%
Similar papers in this journal
- Diffusion-MRI-based regional cortical microstructure at birth for predicting neurodevelopmental outcomes at 2-year-olds 93%
- Cross-species alignment along the chronological axis reveals evolutionary effect on structural development of human brain 93%
- Model-based whole-brain perturbational landscape of neurodegenerative diseases 92%
Similar papers in this journal
- Fluoxetine-induced dematuration of hippocampal neurons and adult cortical neurogenesis in the common marmoset 88%
- Long-read RNA sequencing identifies region- and sex-specific C57BL/6J mouse brain mRNA isoform expression and usage 88%
- Outer layer of Vb neurons in medial entorhinal cortex project to hippocampal dentate gyrus in mice 88%
Similar papers in this journal
- Brain-wide functional networks associated with anatomically- and functionally-defined hippocampal subfields using ultrahigh-resolution fMRI 94%
- Flexible annotation atlas of the mouse brain: combining and dividing brain structures of the Allen Brain Atlas while maintaining anatomical hierarchy 92%
- Impact of meningioma and glioma on whole-brain dynamics 92%
Similar papers in this journal
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.