Bipn140 Lect 11 Figs Nov10

Bipn140 Lect 11 Figs Nov10 - BIPN 140: Cellular...

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BIPN 140: Cellular Neurobiology LECTURE #11: Synaptic Plasticity I [Website: http://www.biology.ucsd.edu/classes/bipn140.FA10] INSTRUCTORS Nicholas C. Spitzer (nspitzer@ucsd.edu) arwin K Berg (dberg@ucsd edu) Darwin K. Berg (dberg@ucsd.edu) ANNOUNCEMENTS 1) Prob Set #5 is now posted on the website. 2) Review session: Mon, 11/8, 5-7 pm, 3500 Pacific Hall. ) Second midterm: Here Tues 11/9 5 pm 3) Second midterm: Here, Tues, 11/9, 5 pm.
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Fig 8.1a Forms of short-term synaptic plasticity: synaptic facilitation
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Fig 8.1b Dependence of facilitation on spike interval
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Fig 8.1c Synaptic depression & augmentation
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Fig 8.1d Dependence of synaptic depression on prior transmitter release
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Fig 8.1e Post-Tetanic Potentiation (PTP)
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Fig 8.2 Short-term plasticity at the NMJ
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Fig 8.6 The rodent hippocampus
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Fig 8.7a Long-term potentiation of Schaffer ollateral A1 synapses collateral-CA1 synapses
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ig 8.7b LTP of Schaffer collateral- A1 synapses Fig 8.7b LTP of Schaffer collateral CA1 synapses
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Fig 8.7c LTP of Schaffer collateral-CA1 synapses
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ig 8.7d LTP of Schaffer collateral- A1 synapses Fig 8.7d LTP of Schaffer collateral CA1 synapses
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Fig 8.8 Pairing presynaptic and postsynaptic activity causes LTP
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Fig 8.9 LTP at a CA1 pyramidal neuron receiving inputs from two independent pathways
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Fig 8.10 The NMDA receptor channel can open only during depolarization
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Fig 8.11 Signaling mechanisms underlying LTP
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Synaptic Tagging and Long-Term Potentiation by U Frey & GM Morris Nature 385:533-536 (1997)
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This note was uploaded on 12/09/2010 for the course BIPN BIPN 140 taught by Professor Spitzer during the Spring '07 term at UCSD.

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Bipn140 Lect 11 Figs Nov10 - BIPN 140: Cellular...

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