1970Journal of Animal ScienceRequires access

Biological and Technical Sources of Variability in Bovine Carcass Lean Tissue Composition II. Biological Variation in Potassium, Nitrogen and Water

T. G. Lohman, Roger Ball, H. W. Norton

Open publisher page 5 citations

Abstract

The use of whole-body K, N and H2O as quantitative indices of the fat-free body is based on the assumption that each of these constituents is maintained in a relatively constant concentration in the fat-free body. Two further assumptions—that each of these constituents is found predominantly within the lean muscle mass in a relatively constant amount and that amounts found outside this tissue vary in proportion to amounts found within the lean—lead to the conclusion that body K, N and H2O are also indices of lean muscle mass. Much chemical data has been reported emphasizing muscle-to-muscle and tissue-to-tissue differences in potassium content as important sources of error in predicting body composition from 40K. However, it is not necessary for K, N or H2O contents to be the same in each tissue of the fat-free body, or each muscle of the lean muscle mass, for the whole-body constituents to be valuable measures of the fat-free body or of lean muscle mass.

About this research paper

What this paper is about

The use of whole-body K, N and H2O as quantitative indices of the fat-free body is based on the assumption that each of these constituents is maintained in a relatively constant concentration in the fat-free body. Two further assumptions—that each of these constituents is found predominantly within the lean muscle mass in a relatively constant amount and that amounts found outside this tissue vary in proportion to amounts found within the lean—lead to the conclusion that body K, N and H2O are also indices of lean muscle mass. Much chemical data has been reported emphasizing muscle-to-muscle and tissue-to-tissue differences in potassium content as important sources of error in predicting body composition from 40K. However, it is not necessary for K, N or H2O contents to be the same in each tissue of the fat-free body, or each muscle of the lean muscle mass, for the whole-body constituents to be valuable measures of the fat-free body or of lean muscle mass.

Why it matters

OpenAlex reports 5 citations for this work. Citation counts describe recorded attention and do not establish research quality.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

The use of whole-body K, N and H2O as quantitative indices of the fat-free body is based on the assumption that each of these constituents is maintained in a relatively constant concentration in the fat-free body. Two further assumptions—that each of these constituents is found predominantly within the lean muscle mass in a relatively constant amount and that amounts found outside this tissue vary in proportion to amounts found within the lean—lead to the conclusion that body K, N and H2O are also indices of lean muscle mass. Much chemical data has been reported emphasizing muscle-to-muscle and tissue-to-tissue differences in potassium content as important sources of error in predicting body composition from 40K. However, it is not necessary for K, N or H2O contents to be the same in each tissue of the fat-free body, or each muscle of the lean muscle mass, for the whole-body constituents to be valuable measures of the fat-free body or of lean muscle mass.

Key concepts: Lean body mass, Lean tissue, Potassium, Composition (language), Muscle tissue, Chemistry, Adipose tissue, Nitrogen

Related papers

Back to paper searchBrowse research topicsOriginal source
Biological and Technical Sources of Variability in Bovine Carcass Lean Tissue Composition II. Biological Variation in Potassium, Nitrogen and Water — Research Paper | ScholarLens