LEADER 03140nam 22004573u 450 001 9910463720003321 005 20210107170009.0 035 $a(CKB)2670000000531645 035 $a(EBL)511444 035 $a(OCoLC)370729324 035 $a(MiAaPQ)EBC511444 035 $a(EXLCZ)992670000000531645 100 $a20140224d2010|||| u|| | 101 0 $aeng 135 $aur|n|---||||| 200 10$aBiosolids Engineering and Management$b[electronic resource] 210 $aDordrecht $cSpringer$d2010 215 $a1 online resource (353 p.) 225 1 $aContemporary Neuroscience 300 $aDescription based upon print version of record. 311 $a1-62703-884-1 327 $aMolecular Mechanisms of Neurotransmitter Release; Preface; Contents; Contributors; Chapter 1: The Architecture of the Presynaptic Release Site; Chapter 2: Multiple Modes of Fusion and Retrieval at the Calyx of Held Synapse; Chapter 3: Roles of SNARE Proteins in Synaptic Vesicle Fusion; Chapter 4: Roles and Sources of Calcium in Synaptic Exocytosis; Chapter 5: Regulation of Presynaptic Calcium Channels; Chapter 6: Synaptotagmin: Transducing Ca2+-Binding to Vesicle Fusion; Chapter 7: Functional Interactions Among the SNARE Regulators UNC-13, Tomosyn, and UNC-18 327 $aChapter 8: Roles of the ELKS/CAST Family and SAD Kinase in Neurotransmitter ReleaseChapter 9: The Role of Potassium Channels in the Regulation of Neurotransmitter Release; Chapter 10: Modulation of Neurotransmitter Release and Presynaptic Plasticity by Protein Phosphorylation; Chapter 11: Synaptic Vesicle Endocytosis; Chapter 12: Lipids and Secretory Vesicle Exocytosis; Chapter 13: Neurotransmitter Reuptake and Synaptic Vesicle Refilling; Chapter 14: Regulation of Neurotransmitter Release by Presynaptic Receptors 327 $aChapter 15: Transsynaptic Regulation of Presynaptic Release Machinery in Central Synapses by Cell Adhesion MoleculesChapter 16: Differential Regulation of Small Clear Vesicles and Large Dense-Core Vesicles; Index 330 $aWithin the complex neuronal network of the nervous system, neuron-to-neuron communication occurs mainly through chemical synapses, where the presynaptic nerve terminal releases neurotransmitters which control the function of postsynaptic neurons by acting on postsynaptic receptors. Recent decades have brought ground-breaking new developments and a wealth of knowledge to this field. In 'Molecular Mechanisms of Neurotransmitter Release', leading experts provide concise, up-to-date information on all major molecular mechanisms involved, with complete background information and figures and diagram 410 0$aContemporary Neuroscience 606 $aSewage -- Purification 606 $aSewage sludge 608 $aElectronic books. 615 4$aSewage -- Purification. 615 4$aSewage sludge. 676 $a573.854 676 $a628.3/64 700 $aWang$b Zhao-Wen$0956490 801 0$bAU-PeEL 801 1$bAU-PeEL 801 2$bAU-PeEL 906 $aBOOK 912 $a9910463720003321 996 $aBiosolids Engineering and Management$92165751 997 $aUNINA