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Titlebook: Neurosecretion and Neuroendocrine Activity; Evolution, Structure W. Bargmann,A. Oksche,B. Scharrer Conference proceedings 1978 Springer-Ver

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Molecular Evolution of Neurohypophyseal Hormones and Neurophysinsews were held about the number of molecules responsible for these activities. According to the unitary conception, defended by ABEL, MAC ARTHUR, and later by VAN DYKE, a single protein displayed all these biologic properties; this so-called “mother-molecule” would be extracted from the gland under m
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Evolution of the Neurosecretory System in Crustacea, reproduction, sexual differentiation, ontogenetic development, and adaptive change of coloration in Crustacea with different levels of organization. The NSS coordinates intercommunication of different functions. Being functionally plastic, it influences the responses of animals to varying factors
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Pattern of Neuroendocrine Cell Complexes (Subunits) in Hypothalamic Nuclei: Neurobiological and Phylf cluster-like aggregations of differing neuroendocrine elements (OKSCHE et al., 1974). In further studies this concept of anatomical subunits was extended to parvocellular and magnocellular nuclei of the anterior hypothalamus (OKSCHE and FARNER, 1974; OKSCHE, 1976). It appears to be consistent with
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Evolution of Perisympathetic Organs and Insect Phylogenyn the nervous ganglia (GRILLOT et al., 1971; RAABE et al., 1973). Nevertheless, they always correspond to neurosecretory cells of the ventral nerve cord and are associated with the ventral visceral nervous system. Their diversity requires a definition of morphologic types. These have been classified
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