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人体体重变化的动态过程。

The dynamics of human body weight change.

作者信息

Chow Carson C, Hall Kevin D

机构信息

Laboratory of Biological Modeling, National Institute of Diabetes and Digestive and Kidney Diseases, National Institutes of Health, Bethesda, Maryland, United States of America.

出版信息

PLoS Comput Biol. 2008 Mar 28;4(3):e1000045. doi: 10.1371/journal.pcbi.1000045.

Abstract

An imbalance between energy intake and energy expenditure will lead to a change in body weight (mass) and body composition (fat and lean masses). A quantitative understanding of the processes involved, which currently remains lacking, will be useful in determining the etiology and treatment of obesity and other conditions resulting from prolonged energy imbalance. Here, we show that a mathematical model of the macronutrient flux balances can capture the long-term dynamics of human weight change; all previous models are special cases of this model. We show that the generic dynamic behavior of body composition for a clamped diet can be divided into two classes. In the first class, the body composition and mass are determined uniquely. In the second class, the body composition can exist at an infinite number of possible states. Surprisingly, perturbations of dietary energy intake or energy expenditure can give identical responses in both model classes, and existing data are insufficient to distinguish between these two possibilities. Nevertheless, this distinction has important implications for the efficacy of clinical interventions that alter body composition and mass.

摘要

能量摄入与能量消耗之间的不平衡会导致体重(质量)和身体成分(脂肪和瘦体重)的变化。目前仍缺乏对相关过程的定量理解,这对于确定肥胖及其他因长期能量失衡导致的病症的病因和治疗方法将是有用的。在此,我们表明,常量营养素通量平衡的数学模型能够捕捉人类体重变化的长期动态;之前所有的模型都是该模型的特殊情况。我们表明,对于固定饮食,身体成分的一般动态行为可分为两类。在第一类中,身体成分和质量是唯一确定的。在第二类中,身体成分可以存在于无限多个可能的状态。令人惊讶的是,饮食能量摄入或能量消耗的扰动在这两类模型中都能给出相同的响应,并且现有数据不足以区分这两种可能性。然而,这种区分对于改变身体成分和质量的临床干预效果具有重要意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/870c/2266991/966257aef3a9/pcbi.1000045.g001.jpg

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