A longitudinal study of the evolution of the central sulcus’ shape in preterm infants using manifold learning

Publication date

2019-01-01

Authors

de Vareilles, Héloïse
Sun, Zhongyi
Benders, Manon J.N.L.ISNI 0000000388026661
Fischer, Clara
Leroy, François
de Vries, Linda S.ISNI 0000000117704571
Groenendaal, FlorisORCID 0000-0002-9284-1637ISNI 0000000393055993
Rivière, Denis
Dubois, Jessica
Mangin, Jean François

Editors

Wang, Qian
Gomez, Alberto
Hutter, Jana
Gomez, Alberto
Zimmer, Veronika
Hutter, Jana
Robinson, Emma
Christiaens, Daan
Melbourne, Andrew
McLeod, Kristin

Advisors

Supervisors

Document Type

Part of book

Collections

Open Access logo

License

taverne

Abstract

Cortical folding in humans is different for every individual, and is associated with functional specificities. It forms mainly during the last trimester of pregnancy, hence its development lacks description, especially in a longitudinal way. To cope with this issue, this study focused on the evolution of the central sulcus’ variability of 71 preterm infants studied longitudinally with MRI at 30 and 40 weeks (w) postmenstrual age (PMA). Our aim was to investigate the main shape characteristics and whether they are encoded early on or appear closer to term birth. We captured shape dissimilarity between the sulci using a distance matrix after pairwise co-registration using an Iterative Closest Point algorithm. We applied non-linear dimensionality reduction to this matrix using the Isomap algorithm in order to capture the most discriminative shape features among the central sulci. We characterized the three most discriminative features over the group, and found that the sulci evolved consistently from a given feature at 30w PMA to the 40w PMA equivalent feature. We incidentally captured a feature that could coincide with the most discriminative adult feature, both visually and by its asymmetry in left and right sulcal distribution. These results captured the main shape features of the central sulcus in preterm infants and suggest that they are already encoded at 30w PMA.

Keywords

Brain MRI, Central sulcus, Cortical development, Preterm infants, Taverne, Theoretical Computer Science, General Computer Science

Citation

de Vareilles, H, Sun, Z, Benders, M, Fischer, C, Leroy, F, de Vries, L, Groenendaal, F, Rivière, D, Dubois, J & Mangin, J F 2019, A longitudinal study of the evolution of the central sulcus’ shape in preterm infants using manifold learning. in Q Wang, A Gomez, J Hutter, A Gomez, V Zimmer, J Hutter, E Robinson, D Christiaens, A Melbourne, K McLeod, O Zettinig, R Licandro & E A Turk (eds), Smart Ultrasound Imaging and Perinatal, Preterm and Paediatric Image Analysis - 1st International Workshop, SUSI 2019, and 4th International Workshop, PIPPI 2019, Held in Conjunction with MICCAI 2019, Proceedings. Lecture Notes in Computer Science (including subseries Lecture Notes in Artificial Intelligence and Lecture Notes in Bioinformatics), vol. 11798 LNCS, Springer, pp. 143-152, 1st International Workshop on Smart Ultrasound Imaging, SUSI 2019, and the 4th International Workshop on Preterm, Perinatal and Paediatric Image Analysis, PIPPI 2019, held in conjunction with the 22nd International Conference on Medical Imaging and Computer-Assisted Intervention, MICCAI 2019, Shenzhen, China, 17/10/19. https://doi.org/10.1007/978-3-030-32875-7_16, conference