AREGU November 46/5
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چکیده
Concannon, Patrick W., V. Daniel Castracane, Richard E. Rawson, and Bud C. Tennant. Circannual changes in free thyroxine, prolactin, testes, and relative food intake in woodchucks, Marmota monax. Am. J. Physiol. 277 (Regulatory Integrative Comp. Physiol. 46): R1401–R1409, 1999.— Woodchucks (n 5 12–14/group) with circannual cycles entrained to northern versus southern hemisphere photoperiods were assessed monthly for 16 mo. Changes in serum total triiodothyronine (TT3), free thyroxine (T4), total thyroxine (TT4), and prolactin were determined in a subset of five animals per group. Metabolic hormone results were examined in relation to changes in body weight, food intake, and serum testosterone (n 5 12–14/group). Seasonal changes in each parameter were similar in both groups as were nadir and peak TT3 (162 6 6 and 392 6 12 ng/ml, respectively), free T4 (19 6 2 and 86 6 7 ng/ml, repectively), TT4 (3.2 6 0.2 and 8.0 6 0.5 ng/ml, respectively), and prolactin (0.6 6 0.1 and 14 6 2 ng/ml, respectively). In late winter and early spring, simultaneous increases in both free T4 and prolactin were associated with 1) a large increase in food intake, 2) a decline in body weight to nadir values, 3) a corresponding negative energy balance, 4) a peak and decline in serum testosterone, and 5) a modest increase in TT4 and large decline in serum TT3. Low levels of free T4 and prolactin were observed in summer when energy balance was very positive. The results demonstrate that, in woodchucks, serum T4 and prolactin undergo seasonal changes during annual cycles entrained by photoperiod. The results suggest that changes in free T4, acting as a calorigenic hormone, and changes in both T4 and prolactin, potentially acting as lipolytic, antilipogenic, and/or orectic hormones, are likely involved in the mechanisms underlying the corresponding seasonal changes in food intake, fat metabolism, and energy balance in this species. Their potential roles in gonadal regression and recrudescence are less clear.
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AREGU November 46/5
Moran, Timothy H., Susan Knipp, and Gary J. Schwartz. Gastric and duodenal features of meals mediate controls of liquid gastric emptying during fill in rhesus monkeys. Am. J. Physiol. 277 (Regulatory Integrative Comp. Physiol. 46): R1282–R1290, 1999.—To study the dynamics of liquid gastric emptying in rhesus monkeys under conditions that simulated gastric fill during a meal, we measured the gas...
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Manfridi, Alfredo, Dario Brambilla, and Mauro Mancia. Stimulation of NMDA and AMPA receptors in the rat nucleus basalis of Meynert affects sleep. Am. J. Physiol. 277 (Regulatory Integrative Comp. Physiol. 46): R1488–R1492, 1999.—The nucleus basalis of Meynert (NBM), a heterogeneous area in the basal forebrain involved in the modulation of sleep and wakefulness, is rich in glutamate receptors, a...
متن کاملAREGU November 46/5
Smolich, Joseph J., and Murray D. Esler. Total body catecholamine kinetics before and after birth in spontaneously hypoxemic fetal lambs. Am. J. Physiol. 277 (Regulatory Integrative Comp. Physiol. 46): R1313–R1320, 1999.—To study the effect of fetal hypoxemia on perinatal norepinephrine and epinephrine total body kinetics, 13 near-term fetal lambs were instrumented with vascular catheters under...
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[PDF] [Full Text] [Abstract] , March 6, 2002; 205 (8): 1179-1188. J. Exp. Biol. M. Grosell and C. M. Wood Copper uptake across rainbow trout gills: mechanisms of apical entry [PDF] [Full Text] [Abstract] , January 1, 2003; 206 (1): 11-23. J. Exp. Biol. N. R. Bury, P. A. Walker and C. N. Glover Nutritive metal uptake in teleost fish [PDF] [Full Text] [Abstract] , July 1, 2004; 287 (1): R23...
متن کاملAREGU November 46/5
Hwa, Joyce J., Melanie B. Witten, Patricia Williams, Lorraine Ghibaudi, Jun Gao, Brian G. Salisbury, Deborra Mullins, Fozia Hamud, Catherine D. Strader, and Eric M. Parker. Activation of the NPY Y5 receptor regulates both feeding and energy expenditure. Am. J. Physiol. 277 (Regulatory Integrative Comp. Physiol. 46): R1428–R1434, 1999.—Intracerebroventricular (ICV) administration of neuropeptide...
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