Record ID | marc_ithaca_college/ic_marc.mrc:186369536:2352 |
Source | Ithaca College Library |
Download Link | /show-records/marc_ithaca_college/ic_marc.mrc:186369536:2352?format=raw |
LEADER: 02352cam a22003374a 45e0
001 284227
005 20021217145819.0
008 020411s2001 caua b 001 0 eng
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035 $a47063542
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050 00 $aQP356.2$b.H364 2001
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100 1 $aHammond, C.$q(Constance)
245 10 $aCellular and molecular neurobiology /$cC. Hammond.
250 $a2nd ed.
260 $aSan Diego :$bAcademic Press,$cc2001.
300 $axxiii, 493 p. :$bill. ;$c28 cm. +$e1 computer optical disc (4 3/4 in.)
504 $aIncludes bibliographical references and index.
538 $aSystem requirements: Macintosh or Multimedia PC with Windows.
505 0 $aCh. 1. Neurons -- Ch. 2. Neuron-glial cell cooperation -- Ch. 3. Ionic fluxes across the neuronal plasma membrane -- Ch. 4. Basic properties of excitable cells at rest -- Ch. 5. The voltage-gated channels of Na⁺ action potentials -- Ch. 6. The voltage-gated channels of Ca²⁺ action potentials: generalization -- Ch. 7. The chemical synapses -- Ch. 8. Neurotransmitter release -- Ch. 9. The ionotropic nicotinic acetylcholine receptors -- Ch. 10. The ionotropic GABA [subscript A] receptor -- Ch. 11. The ionotropic glutamate receptors -- Ch. 12. Ionotropic mechanoreceptors: the mechanosensitive channels -- Ch. 13. The metabotropic GABA [subscript B]receptors -- Ch. 14. The metabotropic glutamate receptors -- Ch. 15. The metabotropic olfactory receptors -- Ch. 16. Somato-dendritic processing of postsynaptic potentials. I: Passive properties of dendrites -- Ch. 17. Subliminal voltage-gated currents of the somato-dendritic membrane -- Ch. 18. Somato-dendritic processing of postsynaptic potentials. II. Role of subliminal depolarizing voltage-gated currents -- Ch. 19. Somato-dendritic processing of postsynaptic potentials. III. Role of high-voltage-activated depolarizing currents -- Ch. 20. Firing patterns of neurons -- Ch. 21. Synaptic plasticity -- Ch. 22. The adult hippocampal network -- Ch. 23. Maturation of the hippocampal network.
650 0 $aMolecular neurobiology.
650 0 $aNeurons.
994 $aE0$bXIM