When an axon of cell A is near enough to excite cell B and repeatedly or persistently takes part in...

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Transcript of When an axon of cell A is near enough to excite cell B and repeatedly or persistently takes part in...

Page 1: When an axon of cell A is near enough to excite cell B and repeatedly or persistently takes part in firing it, some growth process or metabolic change.
Page 2: When an axon of cell A is near enough to excite cell B and repeatedly or persistently takes part in firing it, some growth process or metabolic change.

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QuickTime™ e undecompressore TIFF (Non compresso)

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When an axon of cell A is near enough to excite cell B and repeatedly or persistently takes part in firing it, some growth process or metabolic change takes place in one or both cells such that A's efficiency, as one of the cells firing B, is increased

D. Hebb

Page 3: When an axon of cell A is near enough to excite cell B and repeatedly or persistently takes part in firing it, some growth process or metabolic change.

Mediazione rapporti neurone-capillari

Regolazione metabolica

Page 4: When an axon of cell A is near enough to excite cell B and repeatedly or persistently takes part in firing it, some growth process or metabolic change.

Regolazione flusso ematico (1)

Page 5: When an axon of cell A is near enough to excite cell B and repeatedly or persistently takes part in firing it, some growth process or metabolic change.

Regolazione flusso ematico (2)

Page 6: When an axon of cell A is near enough to excite cell B and repeatedly or persistently takes part in firing it, some growth process or metabolic change.

Sequestro (regolazione) del mediatore dallo spazio sinaptico

Page 7: When an axon of cell A is near enough to excite cell B and repeatedly or persistently takes part in firing it, some growth process or metabolic change.

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Sifonaggio del K+

EK = RT/ZF ln (K+)e/(K+)i; Vm = Ek Vm = 61 log P(K+)e + P(Na+)e + P(Cl-)i / P(K+)i + P(Na+)i + P(Cl-)e

Page 8: When an axon of cell A is near enough to excite cell B and repeatedly or persistently takes part in firing it, some growth process or metabolic change.
Page 9: When an axon of cell A is near enough to excite cell B and repeatedly or persistently takes part in firing it, some growth process or metabolic change.
Page 10: When an axon of cell A is near enough to excite cell B and repeatedly or persistently takes part in firing it, some growth process or metabolic change.
Page 11: When an axon of cell A is near enough to excite cell B and repeatedly or persistently takes part in firing it, some growth process or metabolic change.

Rather than simple switches, neurons are complex information processing systems

Page 12: When an axon of cell A is near enough to excite cell B and repeatedly or persistently takes part in firing it, some growth process or metabolic change.
Page 13: When an axon of cell A is near enough to excite cell B and repeatedly or persistently takes part in firing it, some growth process or metabolic change.
Page 14: When an axon of cell A is near enough to excite cell B and repeatedly or persistently takes part in firing it, some growth process or metabolic change.
Page 15: When an axon of cell A is near enough to excite cell B and repeatedly or persistently takes part in firing it, some growth process or metabolic change.
Page 16: When an axon of cell A is near enough to excite cell B and repeatedly or persistently takes part in firing it, some growth process or metabolic change.

m

Page 17: When an axon of cell A is near enough to excite cell B and repeatedly or persistently takes part in firing it, some growth process or metabolic change.
Page 18: When an axon of cell A is near enough to excite cell B and repeatedly or persistently takes part in firing it, some growth process or metabolic change.
Page 19: When an axon of cell A is near enough to excite cell B and repeatedly or persistently takes part in firing it, some growth process or metabolic change.
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Page 21: When an axon of cell A is near enough to excite cell B and repeatedly or persistently takes part in firing it, some growth process or metabolic change.

Diagram illustrating the kinetics of slow axonal transport, as revealed by radioisotopic pulse labelling. A)Radioactive amino acids injected into the vicinity of the neuronal cell body produce a transient pulse of newly synthesized radioactive proteins, which b,c )move together along the axon by axonal transport. After a time interval ranging from hours to months, the animal is killed, the nerve is excised and sliced into segments, and each segment is analysed biochemically to identify the radioactive proteins. The pulse-labelled proteins form an asymmetrical wave (red) that spreads as it moves along the axon.