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Examination of mechanisms (E-MECHANIC) of exercise-induced weight compensation

Examination of mechanisms (E-MECHANIC) of exercise-induced weight compensation
运动引起的体重补偿机制(E-MECHANIC)的检查
批准号:
8507267
负责人:
Timothy Stephen Church
金额:
$65.92万
依托单位国家:
美国
项目类别:
财政年份:
2010
资助国家:
美国
项目状态:
已结题
起止时间:
2010-07-01 至 2015-06-30

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中文摘要
翻译
描述(由申请人提供):高体重与高血压、血脂异常、炎症、代谢综合征、中风和冠心病风险增加相关。虽然运动通常被认为是减肥的重要工具,但许多研究表明:1)没有饮食干预的运动训练导致的减肥效果远远低于预期的卡路里消耗,这在运动剂量大(每天60分钟)时最为明显,2)对运动的减肥反应非常异质。然而,大多数体重管理指南建议每天锻炼一小时或更长时间,以促进减肥和防止减肥后体重反弹。很明显,有必要确定导致大多数人(但不是所有人)运动未能产生实质性体重减轻的机制,因为更好地理解导致这一现象的机制对于制定应对策略至关重要。主要机制包括运动引起的能量摄入增加,静息代谢率降低,(根据体重变化调整)和非运动活动水平的降低。 E-MECHANIC试验的目的是比较两种运动剂量对能量摄入和体重的影响。运动剂量将反映当前的建议:1)一般健康(约800- 1000千卡/周),2)体重减轻和维持体重减轻(约2000 - 2500千卡/周)。运动组将不提供饮食干预,该研究还包括一个非运动对照组。主要结果变量是能量摄入和预期体重减轻与观察到的体重减轻之间的差异(Wt. Lossdif)。能量摄入将使用两种最先进的方法测量:双标记水和基于实验室的食物摄入测试。选择能量摄入作为主要结局变量和限制运动诱导的体重减轻的最可能的代偿机制,但代谢(根据身体组成变化调整的静息代谢率)和活动水平(不包括结构化运动)的变化也将作为可能的代偿机制和次要结局变量进行评价。最后,为了指导干预措施的发展,以打击补偿,我们将行为表型参与者的特点,谁做,不补偿增加能量摄入。研究结果将为健康和减肥建议提供重要信息,并确定对抗限制运动引起的体重减轻的补偿机制的方法。
英文摘要
DESCRIPTION (provided by applicant): High body weight is associated with increased risk for hypertension, dyslipidemia, inflammation, metabolic syndrome, stroke, and coronary heart disease. While exercise is commonly cited as an important tool for weight reduction, numerous studies have demonstrated that: 1) exercise training without a dietary intervention results in far less weight loss than expected given the expended calories and this is most evident when the exercise dose is large (e 60 minutes per day), and 2) the weight loss response to exercise is very heterogeneous. Nevertheless, most weight management guidelines recommend an hour or more a day of exercise both for promoting weight loss and preventing weight regain after loss. There is clearly a need to identify the mechanisms responsible for the failure of exercise to produce substantial weight loss in most but not all individuals, as having a better understanding of the mechanisms responsible for this phenomenon is critical to developing strategies to counter it. The leading mechanisms include exercise-induced increases in energy intake, decreases in resting metabolic rate (adjusted for change in body mass), and decreases in non- exercise activity levels. The purpose of the E-MECHANIC Trial is to compare the effect of two doses of exercise on energy intake and body weight. The exercise doses will reflect current recommendations for: 1) general health (~800- 1000 kcal/week), and 2) weight loss and maintenance of weight loss (~2000 to 2500 kcal/week). The exercise groups will not be provided with a dietary intervention, and the study also includes a non-exercise control group. The primary outcome variables are energy intake and the discrepancy between expected weight loss and observed weight loss (Wt. Lossdif). Energy intake will be measured using two state-of-the-art methods: doubly labeled water and laboratory-based food intake tests. Energy intake was chosen as the primary outcome variable and the most likely compensatory mechanism that limits exercise-induced weight loss, but change in metabolism (resting metabolic rate adjusted for change in body composition) and activity levels (excluding structured exercise) will also be evaluated as possible compensatory mechanisms and secondary outcome variables. Lastly, in an effort to guide the development of interventions to combat compensation, we will behaviorally phenotype participants to characterize those who do and do not compensate by increasing energy intake. The results of the study will provide important information for health and weight loss recommendations, and identify ways to counter compensatory mechanisms that limit exercise-induced weight loss.
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Examination of mechanisms (E-MECHANIC) of exercise-induced weight compensation
Examination of mechanisms (E-MECHANIC) of exercise-induced weight compensation
Examination of mechanisms (E-MECHANIC) of exercise-induced weight compensation
Examination of mechanisms (E-MECHANIC) of exercise-induced weight compensation
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