nanoHUB-U Bioelectricity L1.5: The Nervous System - Nernst Equation
nanoHUB-U Bioelectricity L1.1: The Nervous System - Basic Organization of CNS & PNS
nanoHUB-U Bioelectricity L1.2: The Nervous System - Simple Neural Circuits
nanoHUB-U Bioelectricity L5.1: Applications of Bioelectricity - Parkinson's Disease
nanoHUB-U Biodesign L5.1: Cellular Devices - Intro to Living Biohybrids
nanoHUB-U Bioelectricity L1.3: The Nervous System - Electrical Signals in Cells
nanoHUB-U Bioelectricity L5.3: Applications of Bioelectricity - Drug Addiction
nanoHUB-U Bioelectricity L5.5: Applications of Bioelectricity - Optogenetics
nanoHUB-U Bioelectricity L1.4: The Nervous System - Resting Potential of Neuron Membranes
nanoHUB-U Fundamentals of AFM L1.5: Tip-Surface Interactions (Non-Contact) - Keesom Force
nanoHUB-U Bioelectricity L4.1: Hodgkin-Huxley Model - Alan Hodgkin and Andrew Huxley
nanoHUB-U Bioelectricity L2.5: Chemical Basis - Neurotransmitters and Pathology
nanoHUB-U Bioelectricity L3.5: Biological Conductors - Time-dependent Solutions
nanoHUB-U Bioelectricity L3.1: Biological Conductors - Electrical Variables in Cells
nanoHUB-U Bioelectricity L5.4: Applications of Bioelectricity - Targeted Muscle Reinnervation
nanoHUB-U Bioelectricity L5.2: Applications of Bioelectricity - Epilepsy
nanoHUB-U Introduction to Bioelectricity: Scientific Overview
nanoHUB-U Biodesign L1.1: Introduction - Cells by the Numbers
nanoHUB-U Bioelectricity L4.5: Hodgkin-Huxley Model - Further Insights from Hodgkin-Huxley