Record ID | harvard_bibliographic_metadata/ab.bib.12.20150123.full.mrc:606524686:2455 |
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LEADER: 02455cam a22004334a 4500
001 012737986-X
005 20110428083435.0
008 010411s2001 enkaf b 001 0 eng
010 $a 2001031407
020 $a0198524250 (alk. paper)
035 0 $aocm46731224
040 $aDLC$cDLC$dDLC
042 $apcc
050 00 $aQP383$b.D47 2001
060 00 $aW1$bMO569QW v.49 2001
060 10 $aWL 312$bD476t 2001
082 00 $a612.8/21$221
100 1 $aDestexhe, Alain.
245 10 $aThalamocortical assemblies :$bhow ion channels, single neurons, and large-scale networks organize sleep oscillations /$cAlain Destexhe and Terrence J. Sejnowski.
260 $aOxford ;$aNew York :$bOxford University Press,$cc2001.
300 $axix, 452 p., [8] p. of plates :$bill. (some col.) ;$c24 cm.
490 1 $aMonographs of the Physiological Society ;$v49
504 $aIncludes bibliographical references (p. [406]-442) and index.
505 00 $g1.$tIntroduction --$g2.$tBiophysical models of the membrane potential and ionic currents --$g3.$tElectrophysiological properties of thalamic relay neurons --$g4.$tElectrophysiological properties of thalamic reticular neurons --$g5.$tBiophysical models of synaptic interactions --$g6.$tSpindle oscillations in thalamic circuits --$g7.$tSpindle oscillations in the thalamocortical system --$g8.$tThalamocortical mechanisms for spike-and-wave epileptic seizures --$g9.$tA physiological role for sleep oscillations --$gApp. A.$tIonic bases of the membrane potential --$gApp. B.$tOptimized algorithms for simulating synaptic currents.
520 $aThis book reviews the molecular components and ionic mechanisms underlying sleep oscillations, including the properties of ion channels, synaptic receptors and the patterns of interconnectivity among thalamic and cortical neurons. These properties have been used to build detailed computational models of thalamocortical assemblies and their collective behavior.
650 0 $aCerebral cortex.
650 0 $aThalamus.
650 0 $aSleep.
650 0 $aElectroencephalography.
650 12 $aThalamus$xphysiology.
650 22 $aCerebral Cortex$xphysiology.
650 22 $aElectroencephalography.
650 22 $aNeural Pathways$xphysiology.
650 22 $aSleep$xphysiology.
700 1 $aSejnowski, Terrence J.$q(Terrence Joseph)
830 0 $aMonographs of the Physiological Society ;$v49.
899 $a415_565869
988 $a20110408
906 $0DLC