BIOL 1082 Study Guide - Midterm Guide: Axon Hillock, Threshold Potential, Action Potential

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22 May 2018
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Exam 4 Review
Extended Response/ AP/GP
Inside of neuron is more negative than outside= due to differences in concentrations
Movement of Na drives AP
AP generated at axon hillock
Na/K pump-maintains concentration gradient
Ion channels= leaky to K set RMP
Na/K pump only correct difference in ion gradients
AP Steps:
o AP flows down axon from presynaptic neuron to synaptic cleft
o AP- nerve impulse
Depolarizing= Na and Ca influx into cell
Voltage gated NA channels
o Release of NT-chemical
o NT Diffuses across synaptic cleft (space between pre-and post)
o NT binds to ligand gated channel
o Change in shape
o Channel is open
o Na diffuses into postsynaptic cell= AP carried
Steps (again)
1. RMP- leaky K channels always open (in or out)
Voltage gated Na are closed=deactivated
Voltage gated K are closed
Stimulus into dendritego over threshold potential
2. Depolarization
Voltage gated Na are open- activated
Na in (amount based on frequency of stimulus into cell)
3. Peak-AP
Na inactivation gates close
Voltage gated K open
4. Hyperpolarization
Voltage gated K open
Equal number of voltage gated K open as Na closed
Efflux of K
Inside of cell more negative
5. Refractory Period
Voltage gated K channels closed
Leaky K open (always)
Graded potentials- Receptor, EPSP, IPSP
o Not all or none
o Summed
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Document Summary

Inside of neuron is more negative than outside= due to differences in concentrations: movement of na drives ap, ap generated at axon hillock, na/k pump-maintains concentration gradient, na/k pump only correct difference in ion gradients, ap steps: Rmp- leaky k channels always open (in or out: voltage gated na are closed=deactivated, voltage gated k are closed, stimulus into dendrite go over threshold potential, 2. Depolarization: voltage gated na are open- activated, na in (amount based on frequency of stimulus into cell, 3. Peak-ap: na inactivation gates close, voltage gated k open, 4. Hyperpolarization: voltage gated k open, equal number of voltage gated k open as na closed, efflux of k. Ipsp- hyperpolarization, k efflux, cl influx: states of voltage gated channel, deactivated, activated- flow of na into channel. Inactivated- closed: types of glial cells-function, non-neuronal. Vision: rods- dim illumination- rhodopsin"s, cones-red, green, blue phot toxins, dark current, opposite of ap, cgmp is high- acts as 2nd messenger.

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