Literature DB >> 26541411

Application of standards and models in body composition analysis.

Manfred J Müller1, Wiebke Braun1, Maryam Pourhassan1, Corinna Geisler1, Anja Bosy-Westphal2.   

Abstract

The aim of this review is to extend present concepts of body composition and to integrate it into physiology. In vivo body composition analysis (BCA) has a sound theoretical and methodological basis. Present methods used for BCA are reliable and valid. Individual data on body components, organs and tissues are included into different models, e.g. a 2-, 3-, 4- or multi-component model. Today the so-called 4-compartment model as well as whole body MRI (or computed tomography) scans are considered as gold standards of BCA. In practice the use of the appropriate method depends on the question of interest and the accuracy needed to address it. Body composition data are descriptive and used for normative analyses (e.g. generating normal values, centiles and cut offs). Advanced models of BCA go beyond description and normative approaches. The concept of functional body composition (FBC) takes into account the relationships between individual body components, organs and tissues and related metabolic and physical functions. FBC can be further extended to the model of healthy body composition (HBC) based on horizontal (i.e. structural) and vertical (e.g. metabolism and its neuroendocrine control) relationships between individual components as well as between component and body functions using mathematical modelling with a hierarchical multi-level multi-scale approach at the software level. HBC integrates into whole body systems of cardiovascular, respiratory, hepatic and renal functions. To conclude BCA is a prerequisite for detailed phenotyping of individuals providing a sound basis for in depth biomedical research and clinical decision making.

Entities:  

Keywords:  4-Compartment model; ADP air displacement plethysmography; BCA body composition analysis; CT computed tomography; DXA dual X-ray-absorptiometry; FBC functional body composition; FFM fat free mass; FM fat mass; Fat free mass; Fat mass; HBC healthy body composition; LST lean soft tissue; MRI; SM skeletal muscle; VAT visceral adipose tissue

Mesh:

Year:  2015        PMID: 26541411     DOI: 10.1017/S0029665115004206

Source DB:  PubMed          Journal:  Proc Nutr Soc        ISSN: 0029-6651            Impact factor:   6.297


  18 in total

Review 1.  From a "Metabolomics fashion" to a sound application of metabolomics in research on human nutrition.

Authors:  Manfred J Müller; Anja Bosy-Westphal
Journal:  Eur J Clin Nutr       Date:  2020-10-21       Impact factor: 4.016

Review 2.  Effect of Over- and Underfeeding on Body Composition and Related Metabolic Functions in Humans.

Authors:  Manfred James Müller; Anja Bosy-Westphal
Journal:  Curr Diab Rep       Date:  2019-11-04       Impact factor: 4.810

Review 3.  Human energy expenditure: advances in organ-tissue prediction models.

Authors:  S B Heymsfield; C M Peterson; B Bourgeois; D M Thomas; D Gallagher; B Strauss; M J Müller; A Bosy-Westphal
Journal:  Obes Rev       Date:  2018-07-23       Impact factor: 9.213

Review 4.  What Is a 2021 Reference Body?

Authors:  Manfred J Müller; Anja Bosy-Westphal; Wiebke Braun; Michael C Wong; John A Shepherd; Steven B Heymsfield
Journal:  Nutrients       Date:  2022-04-06       Impact factor: 5.717

Review 5.  Adipose tissue measurement in clinical research for obesity, type 2 diabetes and NAFLD/NASH.

Authors:  Adrian Vilalta; Julio A Gutiérrez; SuZanne Chaves; Moisés Hernández; Silvia Urbina; Marcus Hompesch
Journal:  Endocrinol Diabetes Metab       Date:  2022-04-06

6.  Establishment of normative biometric data for body composition based on computed tomography in a North American cohort.

Authors:  P J Navin; M R Moynagh; E J Atkinson; P Tirumanisetty; N K LeBrasseur; A Kumar; S Khosla; N Takahashi
Journal:  Clin Nutr       Date:  2020-10-29       Impact factor: 7.643

Review 7.  Being a scientist.

Authors:  Manfred J Müller
Journal:  Eur J Clin Nutr       Date:  2022-02-01       Impact factor: 4.884

8.  Association of body composition assessed by bioelectrical impedance analysis with metabolic risk factor clustering among middle-aged Chinese.

Authors:  Linfeng Zhang; Zengwu Wang; Zuo Chen; Xin Wang; Manlu Zhu
Journal:  Prev Med Rep       Date:  2017-03-23

9.  Resting metabolic rate of obese patients under very low calorie ketogenic diet.

Authors:  Diego Gomez-Arbelaez; Ana B Crujeiras; Ana I Castro; Miguel A Martinez-Olmos; Ana Canton; Lucia Ordoñez-Mayan; Ignacio Sajoux; Cristobal Galban; Diego Bellido; Felipe F Casanueva
Journal:  Nutr Metab (Lond)       Date:  2018-02-17       Impact factor: 4.169

10.  Stress-Related Changes in Body Form: Results from the Whitehall II Study.

Authors:  Britta Kubera; Claudine Leonhard; Andreas Rößler; Achim Peters
Journal:  Obesity (Silver Spring)       Date:  2017-08-02       Impact factor: 5.002

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