Author:
Neshteruk Cody D.,Day Sophia E.,Konty Kevin J.,Armstrong Sarah C.,Skinner Asheley C.,D’Agostino Emily M.
Abstract
Abstract
Background
Obesity is associated with poorer youth fitness. However, little research has examined the magnitude of this relationship in youth with severe obesity. Therefore, we sought to determine the relationship between increasing weight status and fitness within a sample of children and adolescents from New York City public schools.
Methods
This study utilized longitudinal data from the NYC Fitnessgram dataset years 2010–2018. Height and weight along with fitness were measured annually during physical education classes. Severity of obesity was defined using body mass index relative to the 95th percentile and then categorized into classes. A composite measure of fitness was calculated based on scores for three fitness tests: aerobic capacity, muscular strength, and muscular endurance. To examine the weight status-fitness relationship, repeated measures mixed models with random-intercepts were constructed. Stratified models examined differences by demographic factors.
Results
The sample included 917,554 youth (51.8% male, 39.3% Hispanic, 29.9% non-Hispanic Black, 14.0%, 4.6%, and 1.6% class I, II and III obesity, respectively). Compared to youth with healthy weight, increasing severity of obesity was associated with decreased fitness: overweight (β = − 0.28, 95% CI:-0.29;-0.28), class I obesity (β = − 0.60, 95% CI:-0.60; − 0.60), class II obesity (β = − 0.94, 95% CI:-0.94; − 0.93), and class III obesity (β = − 1.28; 95% CI:-1.28; − 1.27). Stratified models showed the association was stronger among male and non-Hispanic White youth.
Conclusion
Findings revealed that more severe obesity was associated with lower fitness. Future research is needed to develop targeted interventions to improve fitness in youth with obesity.
Funder
American Heart Association
National Heart, Lung, and Blood Institute
Publisher
Springer Science and Business Media LLC
Subject
Public Health, Environmental and Occupational Health
Reference52 articles.
1. Guthold R, Stevens GA, Riley LM, Bull FC. Global trends in insufficient physical activity among adolescents: a pooled analysis of 298 population-based surveys with 1·6 million participants. Lancet Child Adolesc Health. 2020;4(1):23–35. https://doi.org/10.1016/s2352-4642(19)30323-2.
2. Troiano RP, Berrigan D, Dodd KW, Mâsse LC, Tilert T, McDowell M. Physical activity in the United States measured by accelerometer. Med Sci Sports Exerc. 2008;40(1):181–8. https://doi.org/10.1249/mss.0b013e31815a51b3.
3. Committee on Fitness M, Health Outcomes in Y, Food, Nutrition B, Institute of M. In: Pate R, Oria M, Pillsbury L, editors. Fitness Measures and Health Outcomes in Youth: National Academies Press (US) Copyright 2012 by the National Academy of Sciences. All rights reserved; 2012.
4. Porter AK, Matthews KJ, Salvo D, Kohl HW 3rd. Associations of physical activity, sedentary time, and screen time with cardiovascular fitness in United States adolescents: results from the NHANES National Youth Fitness Survey. J Phys Act Health. 2017;14(7):506–12. https://doi.org/10.1123/jpah.2016-0165.
5. Ortega FB, Ruiz JR, Castillo MJ, Sjöström M. Physical fitness in childhood and adolescence: a powerful marker of health. Int J Obes. 2008;32(1):1–11. https://doi.org/10.1038/sj.ijo.0803774.
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