Handbook of NeuroendocrinologyGeorge Fink, Donald W. Pfaff, Jon Levine Academic Press, 31 ago 2011 - 894 pagine Neuroendocrinology, the discipline concerned with how the nervous system controls hormonal secretion and how hormones control the brain, is pivotal to physiology and medicine. Neuroendocrinology has disclosed and underpins fundamental physiological, molecular biological and genetic principles such as the regulation of gene transcription and translation, the mechanisms of chemical neurotransmission and intracellular and systemic feedback control systems. Reproduction, growth, stress, aggression, metabolism, birth, feeding and drinking and blood pressure are some of the bodily functions that are triggered and/or controlled by neuroendocrine systems. In turn, neuroendocrine dysfunction due to genetic or other deficits can lead, for example, to infertility, impotence, precocious or delayed puberty, defective or excessive growth, obesity and anorexia, Cushing's Syndrome, hypertension or thyroid disorders. These as well as neuroendocrine tumors are some of the themes covered in the 36 chapters of the Handbook. Drafted by internationally acknowledged experts in the field, the Handbook chapters feature detailed up-to-date bibliographies as well as "how do we know?" call out sections that highlight the experimental or technical foundations for major concepts, principles, or methodological advances in each area. Aimed at senior undergraduate and graduate students, post-doctoral fellows and faculty in neuroscience, medicine, endocrinology, psychiatry, psychology and cognate disciplines, the Handbook of Neuroendocrinology satisfies an unmet need that will prove useful at the laboratory bench as well as in the office. - The most comprehensive up-to-date source covering basic principles, neural regulation, hormone/brain function and behavior, and neuroendocrine pathology - "How do we know?" callout sections highlight core concepts - Heavily illustrated with over 350 figures, 4-color throughout |
Sommario
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Part II Neural Regulation of Endocrine Systems | 95 |
Part III Hormones Brain Function and Behavior | 329 |
Part IV Neuroendocrine Pathology | 595 |
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acid ACTH action activity adrenal amygdala androgen angiotensin arcuate binding Biol Brain Res cells chronic circadian Clin Endocrinol Metab corticosterone corticotropin-releasing cortisol decreased dendritic dopamine effects endocrine Endocrinology estradiol estrogen factor Fink G function GABA gene expression GH secretion ghrelin GHRH glucocorticoid GnRH GnRH neurons GnRH receptor GnRH release gonadal gonadotropin gonadotropin-releasing hormone GPCRs hippocampus hormone receptor hormone release hormone secretion human hypothalamic increase inhibition inhibitory insulin intake interactions kisspeptin leptin levels ligand luteinizing hormone male mechanisms median eminence mediated metabolic mice modulation mouse mRNA Natl Acad Sci negative feedback neural neuroendocrine Neuroendocrinology neurons neuropeptide Neurosci nucleus oxytocin paraventricular nucleus pathways peptide Physiol physiological pituitary gland plasma Proc Natl Acad prolactin protein puberty pulsatile pulse regulation releasing hormone reproductive response rhesus monkeys rhythms role sexual behavior signaling sleep steroids stimulation stress studies surge testosterone thyroid hormone tion vasopressin vertebrate
