The auditory environment drives superior temporal sulcus depth in the neonatal period
Published inBrain structure & function, vol. 230, no. 9, 177
Publication date2025-11-11
First online date2025-11-11
Abstract
Keywords
- Brain
- Infant
- Language
- Learning
- Music
- Noise
- Plasticity
- Prematurity
- Humans
- Temporal Lobe / growth & development
- Temporal Lobe / diagnostic imaging
- Temporal Lobe / physiology
- Temporal Lobe / anatomy & histology
- Infant, Newborn
- Female
- Male
- Acoustic Stimulation
- Auditory Perception / physiology
- Magnetic Resonance Imaging
- Gestational Age
- Connectome
- Infant, Premature
Affiliation entities
Research groups
Funding
- NIMH NIH HHS [K01 MH122735]
- Agence Nationale de la Recherche [ANR-23-IAIIU-0010]
- NINDS NIH HHS [K02 NS089852]
- NIMH NIH HHS [K23 MH105179]
- NICHD NIH HHS [R01 HD057098]
- NIMH NIH HHS [R37 MH113570]
- Swiss National Science Foundation - Development of Emotion and Cognition in Preterm Born Cohorts: Neurostructural and Neurofunctional Correlates from Birth to Early Adolescence [135817]
- Swiss National Science Foundation - Building the path to resilience in preterm infants: a neuroimaging investigation of the impact of multisensory and neurocognitive interventions [163084]
Citation (ISO format)
BENJAMIN, Lucas et al. The auditory environment drives superior temporal sulcus depth in the neonatal period. In: Brain structure & function, 2025, vol. 230, n° 9, p. 177. doi: 10.1007/s00429-025-03034-z
Main files (1)
Article (Published version)
Identifiers
- PID : unige:195439
- DOI : 10.1007/s00429-025-03034-z
- PMID : 41217527
- PMCID : PMC12605579
Journal ISSN1863-2653
