Cortical and white matter myelination proceed in concert during early infancy

S Stephanie Zika K Kelly Chang A Altan Orhon J John Kruper C Christina Tyagi X Xiaoqian Yan S Sarah Tung K Kalanit Grill-Spector A Ariel Rokem (Institute on Human Development and Disability, University of Washington) M Mareike Grotheer

Abstract

Abstract The infant brain undergoes rapid myelination that is critical for healthy brain function. This development has been characterized for gray and white matter independently, but the link between gray and white matter myelination remains unexplored. To close this knowledge gap, we evaluated two complementary myelin-sensitive imaging metrics: Large-scale (N = 273) T1w/T2w and quantitative (N = 21) R1 data. Automated software was employed to identify 26 white matter bundles and map their cortical terminations, before evaluating T1w/T2w and R1 development shortly after birth. Here we show that for both metrics mean values as well as developmental slopes are correlated across tissues. The synchrony of brain T1w/T2w is impacted by postmenstrual age and prematurity, whereas inter-individual differences in this synchrony predict motor outcomes at 17 − 25 months of age. As T1w/T2w and R1 are associated with myelin content, our results reveal an intricate relationship between gray and white matter myelination.

Article Details

Volume / Issue Vol. 17, Issue 1
Published June 17, 2026
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (10)

S

Stephanie Zika

K

Kelly Chang

A

Altan Orhon

J

John Kruper

C

Christina Tyagi

X

Xiaoqian Yan

S

Sarah Tung

K

Kalanit Grill-Spector

A

Ariel Rokem

Institute on Human Development and Disability, University of Washington

M

Mareike Grotheer