Ok, so we now have a pretty solid understanding of neuronal structure, as well as the action potential and synapses, so we understand how information gets from one neuron to the next. But that's just the tip of the iceberg. How are neurons organized? When we zoom out, what patterns do small groups of neurons take on, and what does that mean for the brain's ability to process information? Let's take a look at neuronal pools now! Watch the whole Biopsychology playlist: http://bit.ly/ProfDaveBiopsych General Chemistry Tutorials: http://bit.ly/ProfDaveGenChem Organic Chemistry Tutorials: http://bit.ly/ProfDaveOrgChem Biochemistry Tutorials: http://bit.ly/ProfDaveBiochem Biology/Genetics Tutorials: http://bit.ly/ProfDaveBio Anatomy & Physiology Tutorials: http://bit.ly/ProfDaveAnatPhys Microbiology/Infectious Diseases Tutorials: http://bit.ly/ProfDaveMicrobio Pharmacology Tutorials: http://bit.ly/ProfDavePharma History of Drugs Videos: http://bit.ly/ProfDaveHistoryDrugs Immunology Tutorials: http://bit.ly/ProfDaveImmuno EMAIL► ProfessorDaveExplains@gmail.com PATREON► http://patreon.com/ProfessorDaveExplains Check out "Is This Wi-Fi Organic?", my book on disarming pseudoscience! Amazon: https://amzn.to/2HtNpVH Bookshop: https://bit.ly/39cKADM Barnes and Noble: https://bit.ly/3pUjmrn Book Depository: http://bit.ly/3aOVDlT

neuronal poolsneural processingbiopsychologyneuronsaction potentialneural integrationsynapsedischarge zonefacilitated zonedepolarizationcircuittransistordiverging circuitconverging circuitreverberating circuitparallel after-discharge circuitserial processingparallel processing