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Titlebook: Chemical Signals in Vertebrates 6; Richard L. Doty,Dietland Müller-Schwarze Book 1992 Springer Science+Business Media New York 1992 develo

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Phosphatase Activity of Rat Olfactory and Vomeronasal Epithelial Tissue Martynova, 1980) and have been demonstrated histochemically in the vomeronasal organ of the mouse (Bannister and Cuchieri, 1972; Cuchieri, 1974), golden hamster (Taniguchi, Taniguchi and Mikami, 1986) and buffalo (Saksena and Chandra, 1980). Phosphorylation, transport and receptor functions of this
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Physiology and Pharmacology of the Accessory Olfactory Systemn of puberty, induction of oestrus, and pregnancy block in female mice following exposure to male urinary odours (pheromones) (Keverne, 1983). A considerable body of evidence has accumulated showing that pheromones received via the vomeronasal organ alter activity in tuberoinfundibular (TI) dopamine
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Role of Lipids of Receptor Membranes in Odor Reception (Buck and Axel, 1991). On the other hand, it has been shown that nonolfactory systems such as the turtle trigeminal nerve (Tucker, 1963), the . ganglion, the fly taste nerve, the frog taste cell, and the neuroblastoma cell respond to various odorants (Kashiwayanagi et al., 1984; 1985). These nonolf
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Thalamocortical Mechanisms and Smell: Insight from Amnesiaorts had provided evidence of direct olfactory projections to frontal neocortex in dogs and rabbits (cf. Allison, 1953), this report revolutionized thinking about central olfactory processes by emphasizing the importance of thalamocortical projections in olfaction. Powell et al. (1963), pg. 712, sta
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The Structure of Environmental Odor Signals: From Turbulent Dispersion to Movement through Boundary es. During the journey from the odor source (e.g., food source) to the “receiver” (either receptor appendage, organ, or cell), the chemical signal is influenced by many different dispersal processes including molecular diffusion, bulk advection, boundary layer flows, and impulsive flows created from
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Analysis of the Secretions from the Flank Glands of 3 Shrew Species and their Possible Functions in n, reproduction, parent-offspring interactions, and general social interactions (Brown, 1985). In contrast, social odours and the social organization of insectivores, especially shrews, have been poorly studied, probably because of the secret habits of these animals and the difficulty of maintaining
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https://doi.org/10.1007/978-3-8351-9212-6ing the closed side. Our studies have examined the effects of unilateral naris closure on: 1) morphology of the olfactory epithelium: 2) rate of mitosis of the neuronal stem cells of the epithelium: and 3) expression of the xenobiotic metabolizing enzyme, cytochrome P-450.
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