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To try everything Brilliant has to offer—free—for a full 30 days, visit https://brilliant.org/ArtemKirsanov . You’ll also get 20% off an annual premium subscription ===== My name is Artem, I'm a neuroscience PhD student at Harvard University. 🌎 Website and Social links: https://kirsanov.ai/ 📥 "Receptive Field" neuro-newsletter: https://artemkirsanov.substack.com/ ✨ Support me on Patreon to get access to Discord community: https://patreon.com/artemkirsanov ===== In this video, we explore the Nobel Prize-winning Hodgkin-Huxley model, the foundational equation of computational neuroscience that reveals how neurons generate electrical signals. We break down the biophysical principles of neural computation, from membrane voltage to ion channels, showing how mathematical equations capture the elegant dance of charged particles that enables information processing. 🕒 OUTLINE: 00:00 Introduction 01:28 Membrane Voltage 04:56 Action Potential Overview 6:24 Equilibrium potential and driving force 10:11 Voltage-dependent conductance 16:50 Review 20:09 Limitations & Outlook 21:21 Sponsor: Brilliant.org 22:44 Outro 📚 FURTHER READING & REFERENCES: Original 1952 paper: https://pmc.ncbi.nlm.nih.gov/articles/PMC1392413/ Great tutorial by Mark E. Nelson: http://nelson.beckman.illinois.edu/courses/physl317/part1/Lec3_HHsection.pdf ===== This video was sponsored by Brilliant ===== *Disclaimer:* This channel is my personal project. The views and content expressed here are my own and are separate from my research role at Harvard University. #neuroscience #biology #biophysics _Description remastered: February 2026. Links & Bio updated; original context preserved._
