Prenatal development has stable and consistent effects on the human brain throughout the lifespan
Walhovd, K. B.; Krogsrud, S. K.; Amlien, I. K.; Sorensen, O.; Wang, Y.; Brathen, A. C. S.; Overbye, K.; Kransberg, J.; Mowinckel, A. M.; Magnussen, F.; Herud, M.; Haberg, A. K.; Fjell, A. M.; Vidal-Pineiro, D.
Show abstract
Human fetal development has been associated with brain health at later stages. It is unknown whether growth in utero, as indexed by birth weight (BW), relates consistently to lifespan brain characteristics and changes, and to what extent these influences are of a genetic or environmental nature. Here we show remarkably stable and life-long positive associations between BW and cortical surface area and volume across and within developmental, aging and lifespan longitudinal samples (N = 5794, 4-82 years of age, w/ 386 monozygotic twins, followed for up to 8.3 years w/12,088 brain MRIs). In contrast, no consistent effect of BW on brain changes was observed. Partly environmental effects were indicated by analysis of twin BW discordance. In conclusion, the influence of prenatal growth on cortical topography is stable and reliable through the lifespan. This early life factor appears to influence the brain by association of brain reserve, rather than brain maintenance. Thus, fetal influences appear omnipresent in the spacetime of the human brain throughout the human lifespan. Optimizing fetal growth may increase brain reserve for life, also in aging.
Matching journals
The top 5 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Discovering the shared biology of cognitive traits determined by genetic overlap 94%
- Brain perivascular space imaging across the human lifespan 94%
- The midpoint of cortical thinning between late childhood and early adulthood differs between individuals and brain regions: Evidence from longitudinal modelling in a 12-wave neuroimaging sample 94%
Similar papers in this journal
Similar papers in this journal
- Three major dimensions of human brain cortical ageing in relation to cognitive decline across the 8th decade of life. 95%
- Gene dosage effects of 22q11.2 copy number variants on in-vivo measures of white matter axonal density and dispersion 94%
- Replicability of Structural Brain Alterations Associated with General Psychopathology: Evidence from a Population-Representative Birth Cohort 93%
Similar papers in this journal
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.