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Titlebook: Neural Regulation in the Vertebrate Endocrine System; Neuroendocrine Regul P. D. Prasada Rao,Richard E. Peter Book 1999 Kluwer Academic / P

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Functional Autonomy of the Adenohypophysis,is largely dependent upon its intact anatomical connection with the brain. Generally, ectopic transplantation of the pituitary gland results in reversible functional impairments, which are restored to normal by its retransplantation beneath the median eminence (ME). On the other hand, it has also be
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Brain Regulation of Growth Hormone Secretion and Food Intake in Fish,d without adequate food intake. A question to be answered in fish is whether there is any connection between the regulation of food intake and the brain neuroendocrine — GH — insulin-like growth factor axis. An additional question of relevance to aquaculture is whether the brain neuroendocrine — GH
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GHRH, primarily responsible for stimulating pituitary somatotrophs (.). Indeed, the hypersecretion of GHRH results in excessive GH secretion and acromegaly (.), whereas a GHRH deficiency impairs GH release and can result in dwarfism (.). It is, however, uncertain if GHRH is a physiologically important GH
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Opioidergic Regulation of Luteinizing Hormone Secretion and Gonadal Steroidogenesis in Male Rat,ver since their discovery in mid-seventies, they have aroused special interest not only because of their key roles in different domains of physiology, but because they have belied all norms and fundamentals of our knowledge of hormones and their action. They have compelled endocrinologists to rethin
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