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Fundamentals of Neuroscience, Part 1: The Electrical Properties of the Neuron
Organic Chemistry 1
Mountains 101
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The biology of glial cells — astrocytes, microglia, and oligodendrocytes — and their roles in supporting, protecting, and modulating neurons.
Explore brain and spinal cord anatomy through visual breakdowns of CNS structures, regions, and clinical applications for comprehensive neuroanatomy understanding.
Dive into central nervous system physiology covering neurons, nerve fibers, neuroglia, receptors, synapses, reflexes, spinal tracts, and pain pathways in this comprehensive medical study guide.
Discover how chronic inflammation impacts dementia risk and progression, while learning practical lifestyle changes and dietary modifications to protect brain health and reduce inflammation.
Explore neural engineering's advancements in understanding complex neurological disorders through brain-in-a-dish technology, intracellular sensors, and interdisciplinary collaboration.
Explore nervous system fundamentals from neuron structure to brain function through detailed anatomy and physiology lectures covering action potentials and synapses.
Discover how glia, once dismissed as brain "glue," may hold keys to understanding neurological diseases through groundbreaking research that challenges traditional neuroscience.
Explore different types of glial cells in the nervous system, their functions, and importance in neuroanatomy. Gain essential knowledge for USMLE preparation and neurology studies.
Explore neuroinflammation and microglia's role in brain immunity. Learn about microglial activation, functions, and involvement in neurological conditions. Gain insights into potential therapeutic applications.
Explore the nervous system's structure and function, including neurons, peripheral and central systems, and neuroglia. Gain insights into this vital bodily network.
Explore how C9orf72 deficiency affects microglia, leading to neuroinflammation and potential neurodegeneration in ALS/FTD, with implications for various neurodegenerative disorders.
Explore a novel awake closed-head injury model for studying mild traumatic brain injury, its effects on synaptic plasticity, and implications for learning and memory processes.
Explore SARS-CoV-2's neurological impact through aged non-human primate studies. Gain insights into brain effects, risk factors, and implications for patient care and follow-up treatment.
Explore SARS-CoV-2's neuropathology through spatial biology. Discover infected brain barrier cells, interferon-gamma signaling in hiPSC-derived BCECs, and gene expression analysis using spatial transcriptomics in FFPE tissue sections.
Explore how human stem cell models revolutionize neurological disease research and accelerate drug discovery for neurodegenerative conditions like Alzheimer's disease.
Explore cutting-edge iPSC-derived human microglia models and automated assays to advance neuroinflammation research and drug discovery for neurodegenerative diseases.
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