Title: Sensitization and Classical Conditioning in Invertebrate Models
1 10/18/2005 Sensitization and Classical
Conditioning in Invertebrate Models  Aplysia
Californica  Habituation Circuitry Molecular
Mechanism  Sensitization Circuitry Molecul
ar Mechanism  Classical Conditioning Circuitry
Molecular Mechanism Â
2Donald Hebb When an axon of cell A excites cell
B and repeatedly or persistently takes part in
firing it, some growth processes or metabolic
change takes place in one or both cells so that
As efficiency as one of the cells firing B is
increased. Paraphrase Synaptic connections are
strengthened when the presynaptic and the
postsynaptic neurons are active simultaneously.
Paraphrase II Neurons that fire together, wire
together
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5Fig. 36-1
Kandel Fig 36-1
6Circuitry Diagram
7Fig. 36-1
8Short-term vs Long Term
9Kandel Fig. 36-2
10Fig. 36-6
11Difference Between Habituation and Adaptation
Mechanism of Habituation? Distributed synaptic
plasticity.
12Sensitization
13Fig. 36-4
14Kandel Fig. 36-3A
15Signal Transduction Pathway
16Kandel 36-3B
17Kandel Fig 36-6
18Kandel Fig. 36-5
19In-class Exercises
20Classical Conditioning
21Kandel Fig. 36-7B
22Kandel Fig. 36-7A
23Kandel Fig. 36-8
24Kandel Fig. 36-5
25In-class Exercises