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Titlebook: Circulating Regulatory Factors and Neuroendocrine Function; John C. Porter,Daniela Ježová Book 1990 The Editor(s) (if applicable) and The

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The Tuberoinfundibular Dopaminergic Neurons of the Brain: Hormonal Regulation, the not distant future. Such advances, when they occur, will likely follow the development of new methods or improvement of existing techniques for evaluating various cellular functions, including secretory functions.
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Exchange of Peptides Between the Circulation and the Nervous System: Role of the Blood-Brain Barriend neurotoxins. The role of this regulated exchange may be involved in processes such as analgesia, stress, dementia, and addiction. In this review, we shall emphasize the mechanisms regulating exchange of peptides between the circulation and the CNS and explore some of the implications of this exchange on selected biological functions.
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Regulation of the Sympathetic Nervous System by Circulating Vasopressin,to be changed after electrical stimulation of certain areas in the medulla oblongata (3), the pons, and the midbrain (4), as well as in different parts of the hypothalamus (5,6). Plasma catecholamines were shown to be modulated also by the action of brain catecholamines (7).
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Hormonal Regulation of Testicular Functionslava, it was decided to change the title to .. The reason for the change was that in addition to the suggested, but still unidentified, natriuretic, hormone a number of well known hormones had been described that promoted renal sodium excretion (certain prostaglandins, kinins, dopamine, vasopressin, oxytocin, substance P, ..) (1).
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E. S. E. Hafez,G. R. Cunninghamrain. Great progress was accomplished when it was discovered that adrenal steroids interact with two receptor systems, mineralocorticoid and glucocorticoid receptors, that display different affinities, capacities, specificities, and neuroanatomical localizations in the central nervous system (1–4).
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Regulation of Membrane Na+-K+ ATPase steroid hormones suppress peripheral concentrations of gonadotropins by inhibition of GnRH release into the hypothalamic-hypophysial portal circulation (3) and by direct effects on the pituitary gonadotrophs (4,5).
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