Discover how HiCOMB technology is transforming microbiology research by enabling high-throughput observation of microbial evolution at single-cell resolution.
Exploring how our brains integrate visual cognition, proprioception, and motor control to create a unified experience of reality.
Explore how AlphaFold revolutionized protein structure prediction, its groundbreaking methodology, and transformative impact on biological research.
Exploring the frontier of cognitive computational neuroscience and the quest to engineer a thinking brain through Semantic Pointer Architecture (SPA).
Explore how MIT's researchers are bridging neuroscience and AI to unlock the secrets of intelligence and build smarter machines.
Discover how a groundbreaking hybrid model combines deep learning and statistical methods to identify dominant amino acid patterns in proteins, with applications in cancer research.
Breakthrough research using mass spectrometry to map HLA class I epitope binding across 95 alleles, enabling more accurate predictions for vaccines and cancer immunotherapy.
Exploring how digital transformation is revolutionizing biosciences through AI, big data, and computational modeling in the Future Professors Programme.
Exploring how computational biomodeling creates digital twins of biological systems to accelerate scientific discovery and medical breakthroughs.
Exploring the revolutionary world of Heterogeneous Functional Materials and their transformative impact on future technologies.