Exploring how AI serves as a testbed for consciousness theories through the innovative Dual-Resolution Framework combining Information Theory of Individuality and Moment-to-Moment theory.
Explore the fascinating world of olfactory cyclic nucleotide-gated ion channels and how genetic engineering is revolutionizing our understanding of smell.
Explore the latest breakthroughs in Alzheimer's research as scientists uncover the complex role of amyloid-beta proteins and their different forms in disease progression.
Explore the fascinating science, culture, and art of sleep - from biological mechanisms to cultural practices and cutting-edge research.
Explore MIT's groundbreaking research in brain-inspired AI, neuromorphic computing, and AI-driven scientific discovery platforms that are revolutionizing artificial intelligence.
Discover how Plamondon's Kinematic Theory reveals the mathematical language behind smooth, skilled movements and velocity coding in the brain.
Explore MIT's groundbreaking research bridging neuroscience and AI, from brain-inspired computing to educational applications and sustainable AI development.
Explore the neuroscience and psychology behind book reviews - why we're influenced by ratings, emotional anecdotes, and social proof when evaluating literature.
Exploring how information transfer speed fundamentally shapes computation in both technological systems and biological brains, with implications for future computing paradigms.
Explore the evolution of visual motion detection from biological systems to artificial intelligence models, including recent paradigm shifts and experimental findings.