Discover how the peaks and valleys of your brain process information differently and what this reveals about human cognition and neurological disorders.
Discover how integrated proteomics and protein co-expression network analysis are revealing novel epileptogenic mechanisms in mesial temporal lobe epilepsy.
Discover how altered protein networks in the prefrontal cortex and amygdala of suicide victims are transforming our understanding of suicide's biological underpinnings.
Discover how your brain uses molecular scissors to prune neural connections, making room for new memories through hippocampal cortactin reduction and calpain inhibition.
Explore the fascinating mechanisms of memory formation through genetic and electrophysiological research, revealing how our brains encode, consolidate and store memories.
Discover how the rabies virus disrupts brain communication at the molecular level without destroying neurons, leading to fatal neurological disease.
Discover the fascinating world of synaptic plasticity and how your brain grows new connections through learning and experience.
Explore how connexin and pannexin signaling pathways create sophisticated communication networks that shape brain function and pathology.
Explore the fascinating field of neuroimmune pharmacology through the lens of the 23rd SNIP conference, where neuroscience and immunology converge to revolutionize brain medicine.
Exploring how transmembrane agrin reorganizes the cytoskeleton in neurons and non-neuronal cells, with implications for neuroscience and medicine.