Exploring the neuroscience of consciousness through advanced imaging techniques, revealing how the brain maintains awareness during twilight states like anesthesia and deep sleep.
Exploring how brain rhythms govern movement and perception across mammalian species, from sea lions to humans, and their implications for neurological disorders.
Exploring how biologically constrained recurrent neural networks are decoding the secrets of the primary visual cortex while reshaping machine intelligence.
Groundbreaking research mapping schizophrenia's neurobiology with unprecedented precision—from genetic blueprints to malfunctioning cell types—ushering in targeted therapies.
Exploring the groundbreaking work of Bruce McEwen who revolutionized our understanding of stress and brain plasticity through his concepts of allostasis and neuroplasticity.
Discover how oxytocin reshapes brain communication through physics-inspired mathematics and the Kuramoto model, revealing its role in social cognition.
Explore the fascinating world of psychopharmacology and how neurotransmitters shape our thoughts, emotions, and behaviors in this comprehensive guide.
Discover groundbreaking research on brain aging from UT Dallas' School of Behavioral and Brain Sciences, including the Dallas Lifespan Brain Study findings.
Explore how circadian rhythms govern biological processes from cognition to metabolism, and how this knowledge is revolutionizing medicine.
Exploring cutting-edge science helping unravel TBI's mysteries—from advanced biomarkers to AI-driven therapies—and how these breakthroughs are rewriting survival stories.