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http://faculty.washington.edu/chudler/neurok.html
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http://gened.emc.maricopa.edu/bio/bio181/biobk/biobooknerv.html
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Neurons and Glia
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Cells have negative resting membrane potentials
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Water is a polar solvent Ions are charged molecules or atoms cation = positive ion anion = negative ion
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Cells are surrounded by a membrane Phospholipid bilayer (separation of charge) Proteins (selective permeability)
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Ionic movement through channels influenced by: diffusion electricity
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Diffusion Ions are driven by the chemical gradient high concentration => low concentration Ions flow until there is no net movement across the membrane (equilibrium)
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Electricity Electrical potential (voltage) force exerted on a charged particle Current movement of electrical charge Electrical conductance ease at which charges can migrate like charges repel !!
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Permeable membrane permits current flow !! No current flow Current flow
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Establishing an equilibrium between the electrical and chemical gradients No net movement of ions
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Ionic equilibrium potential (equilibrium potential if selectively permeable to that ion)
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Cells have negative resting membrane potentials due to an uneven distribution of electric charge across the membrane
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The Action potential The Action Potential: A signal that travels rapidly over distances in the brain. A rapid reversal of the polarity of the neuronal membrane. Currency for information exchange in the nervous system.
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Anatomy of the Action Potential Threshold Rising phase Overshoot Falling Phase Undershoot Refractory Period (duration approximately 1 msec)
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Action potential firing frequency depends on the level of depolarization
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