[Autoregulation of body weight and body composition in man. A systematic approach through models and simulation].

L Girardier
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引用次数: 9

Abstract

The regulation of body weight and its composition in humans is examined from the standpoint of system analysis. It is based upon the hypothesis that the ultimate purpose for modulating body energy stores is to ensure the maximum duration for survival of the individual in the face of calorie deficit. A mathematical model, which is built on this hypothesis, allows quantitative simulation of variations in body weight and composition which occur during cycles of underfeeding/refeeding, and is achieved with the use of three global parameters. One of them controls the partitioning of body energy stores between fat and lean tissues, and the other two are concerned with the control of adaptive thermogenesis. The first of these two parameters for thermogenesis modulates the efficiency of fat storage by a function which is inversely proportional to the level of replenishment of the adipose tissues, and the other one controls regulatory thermogenesis which is a direct function of energy imbalance. These two forms of adaptive thermogenesis operate independently of each other and their amplitude depends upon the nutritional background of the individual. This model can be used as a theoretical framework for integrating numerous data in the literature on physiological processes that are involved in the regulation of body weight and body composition.

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人体体重和身体成分的自动调节。通过模型和仿真的系统方法]。
从系统分析的角度考察了人体体重及其组成的调节。它基于这样一种假设,即调节身体能量储存的最终目的是确保个体在面临卡路里短缺时能够最长时间地生存。建立在这一假设基础上的数学模型,可以定量模拟在喂食不足/再喂食周期中发生的体重和组成变化,并使用三个全局参数来实现。其中一个控制身体能量储存在脂肪和瘦组织之间的分配,另外两个与控制适应性产热有关。这两个产热参数中的第一个参数通过与脂肪组织补充水平成反比的功能调节脂肪储存效率,另一个参数控制调节产热,这是能量不平衡的直接功能。这两种形式的适应性产热作用相互独立,其幅度取决于个体的营养背景。该模型可以作为一个理论框架,整合文献中涉及体重和身体成分调节的生理过程的大量数据。
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