- Ultra-high-field 7 T fMRI was used to segment amygdala nuclei
- Fronto-amygdala functional connections develop along distinct trajectories
- Age-related connections relate to affective and cognitive control
- Amygdala nuclei exhibit developmental and functional specialization
- Ultra-high-field 7 T fMRI was used to segment amygdala nuclei
- Fronto-amygdala functional connections develop along distinct trajectories
- Age-related connections relate to affective and cognitive control
- Amygdala nuclei exhibit developmental and functional specialization
🔹 Synaptic pruning mechanisms
🔹 Neural signal dimensionality
🔹 Longitudinal effects on cognition
🔹 Synaptic pruning mechanisms
🔹 Neural signal dimensionality
🔹 Longitudinal effects on cognition
✅ Increase information complexity in neural coding
✅ Support better cognitive flexibility & memory
✅ Reduce variability in motor & executive tasks
Adolescence is when the brain optimizes for efficiency over redundancy!
✅ Increase information complexity in neural coding
✅ Support better cognitive flexibility & memory
✅ Reduce variability in motor & executive tasks
Adolescence is when the brain optimizes for efficiency over redundancy!
🔹 Cingulo-opercular network (CON) → stabilizing goal-directed actions
🔹 Somatomotor networks → refining movement control
🔹 Frontoparietal networks → supporting executive function
🔹 Cingulo-opercular network (CON) → stabilizing goal-directed actions
🔹 Somatomotor networks → refining movement control
🔹 Frontoparietal networks → supporting executive function
🔹 Synaptic pruning & refining neural connections
🔹 Increased signal fidelity & computational capacity
🔹 More efficient cognitive processing
🔹 Synaptic pruning & refining neural connections
🔹 Increased signal fidelity & computational capacity
🔹 More efficient cognitive processing
🔹 Local functional connectivity decreases
🔹 Brain circuits become more specialized
🔹 Coding capacity & efficiency increase
This supports the shift toward adult-like cognition.
🔹 Local functional connectivity decreases
🔹 Brain circuits become more specialized
🔹 Coding capacity & efficiency increase
This supports the shift toward adult-like cognition.