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Titlebook: GABA Outside the CNS; Sándor L. Erdö Conference proceedings 1992 Springer-Verlag Berlin Heidelberg 1992 CNS.GABA.Gamma-Amino-Buttersäure.H

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Wie kommt man auf Quaternionen?ibitory transmitter. In fact, in recent years more attention has been paid to the localization and identification of GABA receptor sites at the peripheral level than at the central level. We now know that in the peripheral tissues there are two types of GABA receptors. The GABA. receptor responds to
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GABAergic Neurons in the Myenteric Plexus GABA. Many of these properties have come to be regarded as ubiquitous features of neural cells that are unrelated to the existence of conventional GABAergic synaptic transmission (for reviews see [9,25]). More recently, however, firm evidence has emerged that conventional GABAergic neurons are inde
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The GABAergic Innervation of Paravertebral Sympathetic Gangliapathetic ganglia, so-called small intensively fluorescent (SIF) cells which produce catecholamines [18]. Some of the peptides (e.g., metenkephalin [19]) and catecholamines inhibit ganglionic transmission.
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GABAergic Action on Cholinergic Axon Terminals in the Superior Cervical Gangliondemonstrate GABA-positive fibers [12, 31, 45] and GABA-positive cells [44] in the SCG. What is the morphological basis of the GABAergic interaction with cholinergic nerve fibers? How does GABA affect the release of ACh from cholinergic axon terminals? What kind of GABA receptors play a role in the G
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book provide many examples for thediversefunctions of this amino acid in the periphery asneurotransmitter, hormone, humoral or even trophic factorfrom the autonomic ganglia to the endocrine stomach andpancreas, from the tubular epithelium of the kidney to thespermatozoa.978-3-642-76917-7978-3-642-76915-3
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Sustaining Your Sales Transformation,pathetic ganglia, so-called small intensively fluorescent (SIF) cells which produce catecholamines [18]. Some of the peptides (e.g., metenkephalin [19]) and catecholamines inhibit ganglionic transmission.
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