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人类生长与体重动态:一个综合系统模型。

Human growth and body weight dynamics: an integrative systems model.

作者信息

Rahmandad Hazhir

机构信息

Industrial and Systems Engineering Department, Virginia Tech, Falls Church, Virginia, United States of America; Sloan School of Management, Massachusetts Institute of Technology, Cambridge, Massachusetts, United States of America.

出版信息

PLoS One. 2014 Dec 5;9(12):e114609. doi: 10.1371/journal.pone.0114609. eCollection 2014.

Abstract

Quantifying human weight and height dynamics due to growth, aging, and energy balance can inform clinical practice and policy analysis. This paper presents the first mechanism-based model spanning full individual life and capturing changes in body weight, composition and height. Integrating previous empirical and modeling findings and validated against several additional empirical studies, the model replicates key trends in human growth including A) Changes in energy requirements from birth to old ages. B) Short and long-term dynamics of body weight and composition. C) Stunted growth with chronic malnutrition and potential for catch up growth. From obesity policy analysis to treating malnutrition and tracking growth trajectories, the model can address diverse policy questions. For example I find that even without further rise in obesity, the gap between healthy and actual Body Mass Indexes (BMIs) has embedded, for different population groups, a surplus of 14%-24% in energy intake which will be a source of significant inertia in obesity trends. In another analysis, energy deficit percentage needed to reduce BMI by one unit is found to be relatively constant across ages. Accompanying documented and freely available simulation model facilitates diverse applications customized to different sub-populations.

摘要

量化因生长、衰老和能量平衡导致的人体体重和身高动态变化,可为临床实践和政策分析提供依据。本文提出了首个基于机制的模型,该模型涵盖个体整个生命周期,并能捕捉体重、身体成分和身高的变化。该模型整合了先前的实证和建模结果,并通过多项额外的实证研究进行了验证,它再现了人类生长的关键趋势,包括:A)从出生到老年能量需求的变化。B)体重和身体成分的短期和长期动态变化。C)慢性营养不良导致的生长发育迟缓以及追赶生长的潜力。从肥胖政策分析到治疗营养不良和跟踪生长轨迹,该模型可以解决各种政策问题。例如,我发现,即使肥胖率没有进一步上升,不同人群的健康体重指数(BMI)与实际BMI之间的差距也已导致能量摄入过剩14%-24%,这将成为肥胖趋势中显著的惯性来源。在另一项分析中,发现将BMI降低一个单位所需的能量 deficit 百分比在各年龄段相对恒定。随附的有文档记录且可免费获取的模拟模型便于针对不同亚人群定制各种应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4c5c/4257729/555b54714f1a/pone.0114609.g001.jpg

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