Explore the fascinating advances in decapod crustacean research, from sentience studies to behavioral experiments revealing their hidden intelligence.
Explore the fascinating dual nature of Rho kinases - their vital functions in normal physiology and their destructive potential in disease states.
Discover how hydrogen bond dynamics enable unprecedented control over conductivity and magnetism in organic molecular crystals through deuterium isotope effects.
Discover how plants adapt to climate change through physiological mechanisms, phenotypic plasticity, and innovative scientific research.
Explore the fascinating chemistry of copper(II) carboxylate complexes - their vibrant colors, magnetic properties, applications, and significance in science and technology.
Explore how multiscale modeling bridges atomic and macroscopic scales to accelerate materials design in aerospace, electronics, and energy applications.
Exploring how electrical conduction in the neuronal cytoskeleton may explain the biophysics of consciousness
Exploring the forgotten biology of chalones - tissue-specific growth inhibitors that may hold keys to regenerative medicine and therapeutic development.
Discover how compressed sensing is transforming atomic-scale simulations, enabling faster and more efficient computational modeling of materials and molecules.
Explore the remarkable capabilities of infrared heterodyne spectroscopy, a quantum-limited technique revolutionizing how we study celestial atmospheres and cosmic phenomena.