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Research Article

Structural analysis of the actions of amphetamine and fenfluramine on food intake and feeding behaviour in animals and in man

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Pages 34-54 | Accepted 19 Oct 1978, Published online: 21 Aug 2008

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C. H. Bowker. (1979) The possible mode of action of fenfluramine in the treatment of diabetes. a review. Current Medical Research and Opinion 6:sup1, pages 203-206.
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Saeedeh Hashemnia, David R Euston & Aaron J Gruber. (2020) Amphetamine reduces reward encoding and stabilizes neural dynamics in rat anterior cingulate cortex. eLife 9.
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Juan C. Brenes & Rainer K.W. Schwarting. (2015) Individual differences in anticipatory activity to food rewards predict cue-induced appetitive 50-kHz calls in rats. Physiology & Behavior 149, pages 107-118.
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Richard W. Foltin. 2013. Animal Models of Eating Disorders. Animal Models of Eating Disorders 97 107 .
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JOSEPH A HIRSCHSCOT GOLDBERGRICHARD J WURTMAN. (1982) Effect of (+)- or (−)-enantiomers of fenfluramine or norfenfluramine on nutrient selection by rats. Journal of Pharmacy and Pharmacology 34:1, pages 18-21.
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Angela P Makris, Craig R Rush, Robert C Frederich & Thomas H Kelly. (2004) Wake-promoting agents with different mechanisms of action: comparison of effects of modafinil and amphetamine on food intake and cardiovascular activity. Appetite 42:2, pages 185-195.
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Richard W. Foltin, Margaret Haney, Sandra D. Comer & Marian W. Fischman. (1996) Effect of fenfluramine on food intake, mood, and performance of humans living in a residential laboratory. Physiology & Behavior 59:2, pages 295-305.
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Richard W. Foltin, Thomas H. Kelly & Marian W. F. (1995) Effect of amphetamine on human macronutrient intake. Physiology & Behavior 58:5, pages 899-907.
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Richard W. Foltin, Thomas H. Kelly & Marian W. Fischman. (1990) The effects of d-amphetamine on food intake of humans living in a residential laboratory. Appetite 15:1, pages 33-45.
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Sarah F. Leibowitz, Gail Shor-Posner, Clarinda Maclow & Joel A. Grinker. (1986) Amphetamine: Effects on meal patterns and macronutrient selection. Brain Research Bulletin 17:5, pages 681-689.
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Patrick Even & Stylianos Nicolaïdis. (1986) Metabolic mechanism of the anorectic and leptogenic effects of the serotonin agonist fenfluramine. Appetite 7, pages 141-163.
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Sarah F. Leibowitz & Gail Shor-Posner. (1986) Brain serotonin and eating behavior. Appetite 7, pages 1-14.
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Neil E. Rowland & Janis Carlton. (1986) Neurobiology of an anorectic drug: Fenfluramine. Progress in Neurobiology 27:1, pages 13-62.
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Nina Hrboticky, Lawrence A. Leiter & G. Harvey Anderson. (1985) Effects of L-tryptophan on short term food intake in lean men. Nutrition Research 5:6, pages 595-607.
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P. H. Robinson, S. A. Checkley & G. F. M. Russell. (2018) Suppression of Eating by Fenfluramine in Patients with Bulimia Nervosa. British Journal of Psychiatry 146:2, pages 169-176.
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Judith Wurtman, Richard Wurtman, Sharon Mark, Rita Tsay, William Gilbert & John Growdon. (1985) D-Fenfluramine selectively suppresses carbohydrate snacking by obese subjects. International Journal of Eating Disorders 4:1, pages 89-99.
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Peter D. Leathwood & David V.M. Ashley. (1983) Strategies of protein selection by weanling and adult rats. Appetite 4:2, pages 97-112.
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Andrew J. Hill & John E. Blundell. (1982) Nutrients and behaviour: Research strategies for the investigation of taste characteristics, food preferences, hunger sensations and eating patterns in man. Journal of Psychiatric Research 17:2, pages 203-212.
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Lynn Spitzer & Judith Rodin. (1981) Human Eating Behavior: a Critical Review of Studies in Normal Weight and Overweight Individuals. Appetite 2:4, pages 293-329.
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John E. Blundell & Colin J. Latham. (1980) Characterisation of adjustments to the structure of feeding behaviour following pharmacological treatment: Effects of amphetamine and fenfluramine and the antagonism produced by pimozide and methergoline. Pharmacology Biochemistry and Behavior 12:5, pages 717-722.
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