Effect of satiation on brain activity in obese and lean women

被引:151
作者
Gautier, JF
Del Parigi, A
Chen, KW
Salbe, AD
Bandy, D
Pratley, RE
Ravussin, E
Reiman, EM
Tataranni, PA
机构
[1] NIDDKD, Clin Diabet & Nutr Sect, NIH, Phoenix, AZ 85016 USA
[2] Hop St Louis, Dept Endocrinol, Paris, France
[3] Good Samaritan Reg Med Ctr, Positron Emiss Tomog Ctr, Phoenix, AZ USA
[4] Pennington Biomed Res Ctr, Baton Rouge, LA USA
[5] Univ Arizona, Dept Psychiat, Tucson, AZ USA
来源
OBESITY RESEARCH | 2001年 / 9卷 / 11期
关键词
brain; functional imaging; positron emission tomography; magnetic resonance imaging; satiation;
D O I
10.1038/oby.2001.92
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
Objective: To investigate the response of the brains of women to the ingestion of a meal. Research Methods and Procedures: We used measures of regional cerebral blood flow (rCBF), a marker of neuronal activity, by positron emission tomography to describe the functional anatomy of satiation, i.e., the response to a liquid meal in the context of extreme hunger (36-hour fast) in 10 lean (BMI less than or equal to 25 kg/m(2); 32 +/- 10 years old, 61 +/- 7 kg; mean +/- SD) and 12 obese (BMI greater than or equal to 35 kg/m(2); 30 +/- 7 years old, 110 +/- 14 kg) women. Results: In lean and obese women, satiation produced significant increases in rCBF in the vicinity of the prefrontal cortex (p < 0.005). Satiation also produced significant decreases in rCBF in several regions including the thalamus, insular cortex, parahippocampal gyrus, temporal cortex, and cerebellum (in lean and obese women), and hypothalamus, cingulate, nucleus accumbens, and amygdala (in obese women only; all p < 0.005). Compared with lean women, obese women had significantly greater increases in rCBF in the ventral prefrontal cortex and had significantly greater decreases in the paralimbic areas and in areas of the frontal and temporal cortex. Discussion: This study indicates that satiation elicits differential brain responses in obese and lean women. It also lends additional support to the hypothesis that the paralimbic areas participate in a central orexigenic network modulated by the prefrontal cortex through feedback loops.
引用
收藏
页码:676 / 684
页数:9
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