Body Cell Mass to Fat-Free Mass Ratio and Extra- to Intracellular Water Ratio Are Related to Maximal Oxygen Uptake

Author:

Yamada Yosuke1ORCID,Yoshida Tsukasa1ORCID,Murakami Haruka12,Gando Yuko13,Kawakami Ryoko14,Ohno Harumi15,Tanisawa Kumpei16,Konishi Kana17,Tripette Julien18,Kondo Emi910,Nakagata Takashi1ORCID,Nanri Hinako1,Miyachi Motohiko16

Affiliation:

1. Department of Physical Activity Research, National Institute of Health and Nutrition, National Institutes of Biomedical Innovation, Health and Nutrition , Osaka , Japan

2. Faculty of Sport and Health Science, Ritsumeikan University , Kusatsu, Shiga , Japan

3. Faculty of Sport Science, Surugadai University , Hanno, Saitama , Japan

4. Physical Fitness Research Institute, Meiji Yasuda Life Foundation of Health and Welfare , Hachioji, Tokyo , Japan

5. Department of Nutrition, Faculty of Health Care, Kiryu University , Gumma , Japan

6. Faculty of Sport Sciences, Waseda University , Tokorozawa, Saitama , Japan

7. Faculty of Food and Nutritional Sciences, Toyo University , Gumma , Japan

8. Center for Interdisciplinary AI and Data Science, Ochanomizu University , Bunkyo, Tokyo , Japan

9. Faculty of Health and Sport Sciences, University of Tsukuba , Tsukuba , Japan

10. Japan Society for the Promotion of Science , Tokyo , Japan

Abstract

Abstract Fat-free mass (FFM) is a heterogeneous compartment comprising body cell mass (BCM), intracellular water (ICW), extracellular solids, and extracellular water (ECW). The BCM/FFM and ECW/ICW ratios vary among individuals and decrease with age. This study aimed to determine whether BCM/FFM and ECW/ICW ratios are predictors of maximal oxygen uptake (V̇̇O2peak) independently of age, sex, and objectively measured physical activity (PA). A total of 115 Japanese males and females, aged 55.3 ± 8.0 years (mean ± standard deviation), were included in the study. Anthropometry, explosive leg muscle power, and V̇̇O2peak were measured, and BCM, FFM, ICW, and ECW were estimated. Step count and PA were objectively measured using a triaxial accelerometer. Blood flow volume was assessed using ultrasonography. BCM and ICW were negatively correlated with age, whereas FFM and ECW were not significantly correlated with age. FFM, ICW/ECW, BCM/FFM, step counts, moderate and vigorous PA, and leg muscle power were positively correlated with V̇̇O2peak, even after adjusting for age and sex (p < .05). Multiple regression analysis indicated that either BCM/FFM or ECW/ICW, leg power, and objectively measured PA were associated with V̇̇O2peak independent of age, sex, and FFM. Blood flow volume was significantly correlated with ECW (p < .05), but not with BCM. The BCM/FFM and ECW/ICW ratios were significant predictors of V̇̇O2peak, independent of age, sex, FFM, leg power, and objectively measured PA.

Funder

Health and Labor Sciences Research

Japan Society for the Promotion of Science

KAKENHI

physical fitness assessment system

Publisher

Oxford University Press (OUP)

Subject

Geriatrics and Gerontology,Aging

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