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Titlebook: Insecticide Biochemistry and Physiology; C. F. Wilkinson Book 1976 Springer Science+Business Media New York 1976 Oxidation.biochemistry.ch

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The Biochemical and Physiological Basis of Selective Toxicityied to poison the other to its own advantage. Certainly the biological world is now full of poisoners and potential victims in a chemical warfare of a subtlety and virulence which man, fortunately, has not yet equaled. The potent natural neurotoxins described by Shankland in Chapter 6 are eloquent t
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Biochemistry and Physiology of Resistancensively, that it is hardly possible to do justice to the subject in a single chapter. It has therefore been necessary to restrict this chapter to the mechanisms underlying the better-known cases of resistance. Even with this restriction, only examples have been given in many cases and the treatment
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Teratogenic, Mutagenic, and Carcinogenic Effects of Insecticides, pesticides, food additives, and drugs. Because of their ubiquity, persistence, presence and/or concentration in food chains, and toxicological properties, insecticides constitute a major group of potential environmental hazards to mammalian species, including man.
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Teratogenic, Mutagenic, and Carcinogenic Effects of Insecticides, pesticides, food additives, and drugs. Because of their ubiquity, persistence, presence and/or concentration in food chains, and toxicological properties, insecticides constitute a major group of potential environmental hazards to mammalian species, including man.
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The Nervous System: Comparative Physiology and Pharmacologyry to this, by far the largest part of the insecticides manufactured are neurotoxic. This applies generally to the carbamates, organophosphates, and chlorinated hydrocarbons. On a decreasing scale of toxicity, however, these compounds begin where the venoms leave off, i.e., in the range of mg/kg.
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