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Associations of Body Composition with Physical Activity, Nutritional Intake Status, and Chronotype Among Female University Students in Japan

Overview
Publisher Biomed Central
Specialty Social Sciences
Date 2024 May 9
PMID 38725020
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Abstract

Background: Having higher muscle mass in early adulthood is an important factor in preventing sarcopenia. However, university students undergo lifestyle changes compared to their high school years, which may lead to changes in body composition, such as an increase in body fat and a decrease in muscle mass. The study aimed to investigate the association between body composition and lifestyle behaviors, including chronotype, among Japanese female university students, due to the prevalence of underweight among young females in the country.

Methods: The physical activity level (PAL), daily dietary intake status, morningness-eveningness questionnaire (MEQ) score, and body composition of 230 students were assessed in this cross-sectional study. Body composition was measured using a multifrequency bioelectrical impedance analyzer, and body mass index (BMI), body fat percentage (%BF), and skeletal muscle mass index (SMI) were determined.

Results: Individuals who were evening type (ET) had a higher %BF and lower SMI than those who were non-ET, but no differences in body weight or BMI were found. Although ET individuals had lower total energy intake, protein intake, and PALs than non-ETs, the differences were small. However, multiple regression analyses showed that SMI was significantly positively associated with MEQ and PAL, and %BF was significantly negatively associated with MEQ and PAL.

Conclusion: These results suggest that female university students with lateness of chronotype and low physical activity have a body composition imbalance resulting in higher body fat and lower muscle mass. Therefore, young females may need to take chronotype-specific measures (especially ET individuals) to help them maintain an appropriate body composition.

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References
1.
Chen L, Woo J, Assantachai P, Auyeung T, Chou M, Iijima K . Asian Working Group for Sarcopenia: 2019 Consensus Update on Sarcopenia Diagnosis and Treatment. J Am Med Dir Assoc. 2020; 21(3):300-307.e2. DOI: 10.1016/j.jamda.2019.12.012. View

2.
Deforche B, Van Dyck D, Deliens T, De Bourdeaudhuij I . Changes in weight, physical activity, sedentary behaviour and dietary intake during the transition to higher education: a prospective study. Int J Behav Nutr Phys Act. 2015; 12:16. PMC: 4332914. DOI: 10.1186/s12966-015-0173-9. View

3.
Hull H, Thornton J, Wang J, Pierson Jr R, Kaleem Z, Pi-Sunyer X . Fat-free mass index: changes and race/ethnic differences in adulthood. Int J Obes (Lond). 2010; 35(1):121-7. PMC: 3306818. DOI: 10.1038/ijo.2010.111. View

4.
Bloom M, Jost S, Keating D, Lang A, Mankin N, Mast Z . The influence of chronotype on the body mass index of U.S. college students. Sleep Sci. 2022; 15(Spec 2):314-317. PMC: 8906382. DOI: 10.5935/1984-0063.20200130. View

5.
Cruz-Jentoft A, Bahat G, Bauer J, Boirie Y, Bruyere O, Cederholm T . Sarcopenia: revised European consensus on definition and diagnosis. Age Ageing. 2018; 48(1):16-31. PMC: 6322506. DOI: 10.1093/ageing/afy169. View