Exploring how biological inspiration is revolutionizing robotics through neuro-autonomous systems that mimic animal locomotion.
How scientists are blending century-old lab techniques with cutting-edge AI to eliminate toxicity in peptide therapeutics
Exploring how dynamic fluctuations in heme proteins control oxygen binding and release in hemoglobin and myoglobin.
Exploring how data mining and interpretation techniques are transforming bioinformatics and accelerating biological discoveries.
Exploring how collaborative computing frameworks are transforming scientific research through distributed computing, edge-cloud synergy, and real-time collaboration.
How the Desideratum study revolutionized epidemiology by creating a validation system for observational research methods using known medical cause-effect relationships.
Explore how enhanced molecular dynamics methods are transforming drug discovery through atomic-level simulations and AI integration.
Exploring the revolutionary frontier of Genetic Circuit Design Automation (GCDA) where biology meets computer-aided design, promising to turbocharge the creation of living machines.
Explore how open source bioimage informatics tools from University of Dundee are transforming cellular microscopy research.
Discover how Fourier-wavelet analysis reveals evolutionary signatures in Japanese cranial base morphology across 2,000 years of history.