Physical Fitness of Chinese Primary School Students across the Coronavirus (COVID-19) Outbreak: A Retrospective Repeated Cross-Sectional Study
Abstract
1. Introduction
2. Materials and Methods
2.1. Participants
2.2. Assessment Indicators and Tasks
2.2.1. Overall Physical Fitness Score
2.2.2. BMI
2.2.3. Lung Vital Capacity
2.2.4. Fifty Meter Sprint
2.2.5. Sit-and-Reach Flexibility Test
2.2.6. One Minute Rope-Jumping
2.2.7. One Minute Sit-Ups
2.2.8. Fifty Meter × 8 Shuttle Run
2.3. Statistical Analysis
3. Results
3.1. Basic Information
3.2. Primary Outcome (Overall Score, BMI, Vital Capacity)
3.3. Secondary Outcome (Sports Task Performance)
4. Discussion
5. Conclusions
- −
- A slight but significant elevation in body mass index;
- −
- Poorer physical flexibility;
- −
- Poorer sprint and shuttle run performance;
- −
- Slight increase in lung vital capacity;
- −
- Significant improvement in rope-jumping and sit-ups.
Supplementary Materials
Author Contributions
Funding
Institutional Review Board Statement
Informed Consent Statement
Data Availability Statement
Conflicts of Interest
References
- World Health Organization. WHO Coronavirus (COVID-19) Dashboard. Available online: https://covid19.who.int/ (accessed on 8 February 2022).
- Jena, P.R.; Majhi, R.; Kalli, R.; Managi, S.; Majhi, B. Impact of COVID-19 on GDP of major economies: Application of the artificial neural network forecaster. Econ. Anal. Policy 2021, 69, 324–339. [Google Scholar] [CrossRef] [Scilit]
- Wang, F.; Wang, J.-D. Estimating US Earnings Loss Associated with COVID-19 Based on Human Capital Calculation. Int. J. Environ. Res. Public Health 2022, 19, 1015. [Google Scholar]
- Giansanti, D. The Role of the mHealth in the Fight against the COVID-19: Successes and Failures. Healthcare 2021, 9, 58. [Google Scholar] [CrossRef] [Scilit]
- Chinazzi, M.; Davis, J.T.; Ajelli, M.; Gioannini, C.; Litvinova, M.; Merler, S.; Pastore y Piontti, A.; Mu, K.; Rossi, L.; Sun, K. The effect of travel restrictions on the spread of the 2019 novel coronavirus (COVID-19) outbreak. Science 2020, 368, 395–400. [Google Scholar]
- Devi, S. Travel restrictions hampering COVID-19 response. Lancet 2020, 395, 1331. [Google Scholar] [CrossRef] [Scilit]
- Kaur, H.; Singh, T.; Arya, Y.K.; Mittal, S. Physical fitness and exercise during the COVID-19 pandemic: A qualitative enquiry. Front. Psychol. 2020, 11, 2943. [Google Scholar] [CrossRef] [Scilit]
- Dun, Y.; Ripley-Gonzalez, J.W.; Zhou, N.; Li, Q.; Chen, M.; Hu, Z.; Zhang, W.; Thomas, R.J.; Olson, T.P.; Liu, J. The association between prior physical fitness and depression in young adults during the COVID-19 pandemic—A cross-sectional, retrospective study. PeerJ 2021, 9, e11091. [Google Scholar]
- Adjodah, D.; Dinakar, K.; Chinazzi, M.; Fraiberger, S.P.; Pentland, A.; Bates, S.; Staller, K.; Vespignani, A.; Bhatt, D.L. Association between COVID-19 outcomes and mask mandates, adherence, and attitudes. PLoS ONE 2021, 16, e0252315. [Google Scholar]
- Ammar, A.; Brach, M.; Trabelsi, K.; Chtourou, H.; Boukhris, O.; Masmoudi, L.; Bouaziz, B.; Bentlage, E.; How, D.; Ahmed, M. Effects of COVID-19 home confinement on eating behaviour and physical activity: Results of the ECLB-COVID19 international online survey. Nutrients 2020, 12, 1583. [Google Scholar]
- Makizako, H.; Akaida, S.; Shono, S.; Shiiba, R.; Taniguchi, Y.; Shiratsuchi, D.; Nakai, Y. Physical activity and perceived physical fitness during the COVID-19 epidemic: A population of 40-to 69-year-olds in Japan. Int. J. Environ. Res. Public Health 2021, 18, 4832. [Google Scholar]
- Yang, Y.; Koenigstorfer, J. Determinants of physical activity maintenance during the COVID-19 pandemic: A focus on fitness apps. Transl. Behav. Med. 2020, 10, 835–842. [Google Scholar] [CrossRef] [Scilit] [PubMed]
- Szymkowiak, A.; Melović, B.; Dabić, M.; Jeganathan, K.; Kundi, G.S. Information technology and Gen Z: The role of teachers, the internet, and technology in the education of young people. Technol. Soc. 2021, 65, 101565. [Google Scholar] [CrossRef] [Scilit]
- Lemay, D.J.; Bazelais, P.; Doleck, T. Transition to online learning during the COVID-19 pandemic. Comput. Hum. Behav. Rep. 2021, 4, 100130. [Google Scholar] [CrossRef] [Scilit]
- Varea, V.; González-Calvo, G. Touchless classes and absent bodies: Teaching physical education in times of COVID-19. Sport Educ. Soc. 2021, 26, 831–845. [Google Scholar] [CrossRef] [Scilit]
- Bajramovic, I.; Redzepagic, S.; Bjelica, D.; Krivokapic, D.; Jeleskovic, E.; Likic, S. Level of active lifestyle and exercise approach among sports-active female students of the University of Sarajevo during the COVID-19 pandemic. J. Anthropol. Sport Phys. Educ. 2020, 4, 33–36. [Google Scholar]
- Tornaghi, M.; Lovecchio, N.; Vandoni, M.; Chirico, A.; Codella, R. Physical activity levels across COVID-19 outbreak in youngsters of Northwestern Lombardy. J. Sports Med. Phys. Fit. 2020, 61, 971–976. [Google Scholar] [CrossRef] [Scilit]
- Stockwell, S.; Trott, M.; Tully, M.; Shin, J.; Barnett, Y.; Butler, L.; McDermott, D.; Schuch, F.; Smith, L. Changes in physical activity and sedentary behaviours from before to during the COVID-19 pandemic lockdown: A systematic review. BMJ Open Sport Exerc. Med. 2021, 7, e000960. [Google Scholar] [CrossRef] [Scilit]
- Margaritis, I.; Houdart, S.; El Ouadrhiri, Y.; Bigard, X.; Vuillemin, A.; Duché, P. How to deal with COVID-19 epidemic-related lockdown physical inactivity and sedentary increase in youth? Adaptation of Anses’ benchmarks. Arch. Public Health 2020, 78, 52. [Google Scholar] [CrossRef] [Scilit]
- Faigenbaum, A.D.; Farrell, A.C.; Fabiano, M.; Radler, T.A.; Naclerio, F.; Ratamess, N.A.; Kang, J.; Myer, G.D. Effects of detraining on fitness performance in 7-year-old children. J. Strength Cond. Res. 2013, 27, 323–330. [Google Scholar] [CrossRef] [Scilit]
- McCall, B. Shut down and reboot—Preparing to minimise infection in a post-COVID-19 era. Lancet Digit. Health 2020, 2, e293–e294. [Google Scholar] [CrossRef] [Scilit]
- Ministry of Education of the People’s Republic of China. Notice of the Ministry of Education on the National Student Physical Fitness Standard (Revised 2014). Available online: http://www.moe.gov.cn/s78/A17/twys_left/moe_938/moe_792/s3273/201407/t20140708_171692.html (accessed on 19 June 2022).
- Nystad, W.; Samuelsen, S.; Nafstad, P.; Edvardsen, E.; Stensrud, T.; Jaakkola, J. Feasibility of measuring lung function in preschool children. Thorax 2002, 57, 1021–1027. [Google Scholar] [CrossRef] [Scilit] [PubMed]
- Song, P.; Li, X.; Gasevic, D.; Flores, A.B.; Yu, Z. BMI, waist circumference reference values for Chinese school-aged children and adolescents. Int. J. Environ. Res. Public Health 2016, 13, 589. [Google Scholar] [CrossRef] [Scilit] [PubMed]
- Lee, I.-M.; Shiroma, E.J.; Lobelo, F.; Puska, P.; Blair, S.N.; Katzmarzyk, P.T.; Group, L.P.A.S.W. Effect of physical inactivity on major non-communicable diseases worldwide: An analysis of burden of disease and life expectancy. Lancet 2012, 380, 219–229. [Google Scholar] [CrossRef] [Scilit]
- Jurak, G.; Morrison, S.A.; Leskošek, B.; Kovač, M.; Hadžić, V.; Vodičar, J.; Truden, P.; Starc, G. Physical activity recommendations during the coronavirus disease-2019 virus outbreak. J. Sport Health Sci. 2020, 9, 325. [Google Scholar] [CrossRef] [Scilit]
- Jarvis, C.I.; Van Zandvoort, K.; Gimma, A.; Prem, K.; Klepac, P.; Rubin, G.J.; Edmunds, W.J. Quantifying the impact of physical distance measures on the transmission of COVID-19 in the UK. BMC Med. 2020, 18, 124. [Google Scholar] [CrossRef] [Scilit]
- Jiménez-Pavón, D.; Carbonell-Baeza, A.; Lavie, C.J. Physical exercise as therapy to fight against the mental and physical consequences of COVID-19 quarantine: Special focus in older people. Prog. Cardiovasc. Dis. 2020, 63, 386. [Google Scholar] [CrossRef] [Scilit]
- Woods, J.A.; Hutchinson, N.T.; Powers, S.K.; Roberts, W.O.; Gomez-Cabrera, M.C.; Radak, Z.; Berkes, I.; Boros, A.; Boldogh, I.; Leeuwenburgh, C. The COVID-19 pandemic and physical activity. Sports Med. Health Sci. 2020, 2, 55–64. [Google Scholar] [CrossRef] [Scilit]
- Yan, Z.; Spaulding, H.R. Extracellular superoxide dismutase, a molecular transducer of health benefits of exercise. Redox Biol. 2020, 32, 101508. [Google Scholar] [CrossRef] [Scilit]
- Filgueira, T.O.; Castoldi, A.; Santos, L.E.R.; de Amorim, G.J.; de Sousa Fernandes, M.S.; Anastácio, W.D.L.D.N.; Campos, E.Z.; Santos, T.M.; Souto, F.O. The relevance of a physical active lifestyle and physical fitness on immune defense: Mitigating disease burden, with focus on COVID-19 consequences. Front. Immunol. 2021, 12, 150. [Google Scholar] [CrossRef] [Scilit]
- Dayton, J.D.; Ford, K.; Carroll, S.J.; Flynn, P.A.; Kourtidou, S.; Holzer, R.J. The deconditioning effect of the COVID-19 pandemic on unaffected healthy children. Pediatric Cardiol. 2021, 42, 554–559. [Google Scholar] [CrossRef] [Scilit]
- Wahl-Alexander, Z.; Camic, C.L. Impact of COVID-19 on school-aged male and female health-related fitness markers. Pediatric Exerc. Sci. 2021, 33, 61–64. [Google Scholar] [CrossRef] [Scilit] [PubMed]
- Sunda, M.; Gilic, B.; Peric, I.; Jurcev Savicevic, A.; Sekulic, D. Evidencing the influence of the COVID-19 pandemic and imposed lockdown measures on fitness status in adolescents: A preliminary report. Healthcare 2021, 9, 681. [Google Scholar] [CrossRef] [Scilit] [PubMed]
- Rúa-Alonso, M.; Rial-Vázquez, J.; Nine, I.; Lete-Lasa, J.R.; Clavel, I.; Giráldez-García, M.A.; Rodríguez-Corral, M.; Dopico-Calvo, X.; Iglesias-Soler, E. Comparison of Physical Fitness Profiles Obtained before and during COVID-19 Pandemic in Two Independent Large Samples of Children and Adolescents: DAFIS Project. Int. J. Environ. Res. Public Health 2022, 19, 3963. [Google Scholar] [CrossRef] [Scilit] [PubMed]
- Tsoukos, A.; Bogdanis, G.C. The effects of a five-month lockdown due to COVID-19 on physical fitness parameters in adolescent students: A comparison between cohorts. Int. J. Environ. Res. Public Health 2021, 19, 326. [Google Scholar] [CrossRef] [Scilit]
- Agusi, E.R.; Ijoma, S.I.; Nnochin, C.S.; Njoku-Achu, N.O.; Nwosuh, C.I.; Meseko, C.A. The COVID-19 pandemic and social distancing in Nigeria: Ignorance or defiance. Pan Afr. Med. J. 2020, 35, 52. [Google Scholar] [CrossRef]
- Vo, H.-L.; Nguyen, H.A.S.; Nguyen, K.N.; Nguyen, H.L.T.; Nguyen, H.T.; Nguyen, L.H.; Vu, G.T.; Le, H.T. Adherence to social distancing measures for controlling COVID-19 pandemic: Successful lesson from Vietnam. Front. Public Health 2020, 8, 601. [Google Scholar] [CrossRef] [Scilit]
- Gao, J.; Zhang, P. China’s Public Health Policies in Response to COVID-19: From an “Authoritarian” Perspective. Front. Public Health 2021, 9, 756677. [Google Scholar] [CrossRef] [Scilit]
- Parpa, K.; Michaelides, M. The impact of COVID-19 lockdown on professional soccer players’ body composition and physical fitness. Biol. Sport 2021, 38, 733. [Google Scholar] [CrossRef] [Scilit]
- Zhou, T.; Zhai, X.; Wu, N.; Koriyama, S.; Wang, D.; Jin, Y.; Li, W.; Sawada, S.S.; Fan, X. Changes in Physical Fitness during COVID-19 Pandemic Lockdown among Adolescents: A Longitudinal Study. Healthcare 2022, 10, 351. [Google Scholar] [CrossRef] [Scilit]
- Son, S.-M. Correlation Study among the Bedtime Procrastination and Sleep Disorder, and Depression of University Students during COVID-19 Pandemic in Korea. Ann. Rom. Soc. Cell Biol. 2021, 25, 18620–18630. [Google Scholar]
- Lam, W.-K.; Liu, R.-T.; Chen, B.; Huang, X.-Z.; Yi, J.; Wong, D.W.-C. Health Risks and Musculoskeletal Problems of Elite Mobile Esports Players: A Cross-Sectional Descriptive Study. Sports Med.-Open 2022, 8, 65. [Google Scholar] [CrossRef] [Scilit] [PubMed]
- Mustafaoglu, R.; Yasaci, Z.; Zirek, E.; Griffiths, M.D.; Ozdincler, A.R. The relationship between smartphone addiction and musculoskeletal pain prevalence among young population: A cross-sectional study. Korean J. Pain 2021, 34, 72. [Google Scholar] [CrossRef] [Scilit] [PubMed]
- Elnaggar, R.K.; Alqahtani, B.A.; Mahmoud, W.S.; Elfakharany, M.S. Physical activity in adolescents during the social distancing policies of the COVID-19 pandemic. Asia Pac. J. Public Health 2020, 32, 491–494. [Google Scholar] [CrossRef] [Scilit] [PubMed]
- Li, M.H.; Rudd, J.; Chow, J.Y.; Sit, C.H.P.; Wong, S.H.S.; Sum, R.K.W. A Randomized Controlled Trial of a Blended Physical Literacy Intervention to Support Physical Activity and Health of Primary School Children. Sports Med.-Open 2022, 8, 55. [Google Scholar] [CrossRef] [Scilit]
- Dwyer, M.J.; Pasini, M.; De Dominicis, S.; Righi, E. Physical activity: Benefits and challenges during the COVID-19 pandemic. Scand. J. Med. Sci. Sports 2020, 30, 1291. [Google Scholar] [CrossRef] [Scilit]
- Nyenhuis, S.M.; Greiwe, J.; Zeiger, J.S.; Nanda, A.; Cooke, A. Exercise and fitness in the age of social distancing during the COVID-19 pandemic. J. Allergy Clin. Immunol. Pract. 2020, 8, 2152–2155. [Google Scholar] [CrossRef] [Scilit]
- Schwendinger, F.; Pocecco, E. Counteracting physical inactivity during the COVID-19 pandemic: Evidence-based recommendations for home-based exercise. Int. J. Environ. Res. Public Health 2020, 17, 3909. [Google Scholar] [CrossRef] [Scilit]
- Rasheed, A.; Abduljawad, R.; Mabrouk, S.; Jdaitawi, M.; Abdulmonem, M. Physical fitness training program using electronic simulation games to foster psychological health among university students during COVID-19 pandemic. Int. J. Hum. Mov. Sports Sci. 2021, 9, 421–427. [Google Scholar] [CrossRef] [Scilit]
- López-Bueno, R.; Calatayud, J.; Andersen, L.L.; Casaña, J.; Ezzatvar, Y.; Casajús, J.A.; López-Sánchez, G.F.; Smith, L. Cardiorespiratory fitness in adolescents before and after the COVID-19 confinement: A prospective cohort study. Eur. J. Pediatrics 2021, 180, 2287–2293. [Google Scholar] [CrossRef] [Scilit]
- Petherick, A.; Goldszmidt, R.; Andrade, E.B.; Furst, R.; Hale, T.; Pott, A.; Wood, A. A worldwide assessment of changes in adherence to COVID-19 protective behaviours and hypothesized pandemic fatigue. Nat. Hum. Behav. 2021, 5, 1145–1160. [Google Scholar] [CrossRef] [Scilit]
- Cheung, C.-W.J.; Chan, W.-H.R.; Chiu, M.-W.; Law, S.-Y.; Lee, T.-H.; Zheng, Y.-P. A three-month study of fall and physical activity levels of intellectual disability using a transfer belt-based motion recording sensor. In Proceedings of the 6th World Congress of Biomechanics (WCB 2010), Singapore, 1–6 August 2010; pp. 1393–1396. [Google Scholar]
- Chastin, S.; Culhane, B.; Dall, P. Comparison of self-reported measure of sitting time (IPAQ) with objective measurement (activPAL). Physiol. Meas. 2014, 35, 2319. [Google Scholar] [CrossRef] [Scilit] [PubMed]
- Lee, T.T.-Y.; Cheung, J.C.-W.; Law, S.-Y.; To, M.K.T.; Cheung, J.P.Y.; Zheng, Y.-P. Analysis of sagittal profile of spine using 3D ultrasound imaging: A phantom study and preliminary subject test. Comput. Methods Biomech. Biomed. Eng. Imaging Vis. 2020, 8, 232–244. [Google Scholar] [CrossRef] [Scilit]
- Zheng, Y.; Cheung, J.C.W. Three-Dimensional (3D) Ultrasound Imaging System for Assessing Scoliosis. U.S. Patent 8,900,146, 2 December 2014. [Google Scholar]
- Lam, W.-K.; Chen, B.; Liu, R.-T.; Cheung, J.C.-W.; Wong, D.W.-C. Spine Posture, Mobility, and Stability of Top Mobile Esports Athletes: A Case Series. Biology 2022, 11, 737. [Google Scholar] [CrossRef] [Scilit] [PubMed]
- Smith, L.S. Take a deeper look into body surface area. Nursing 2019, 49, 51–54. [Google Scholar] [CrossRef] [Scilit]
- Luo, M.; Liu, Q.; Wang, J.; Gong, Z. From SARS to the Omicron variant of COVID-19: China’s policy adjustments and changes to prevent and control infectious diseases. BioScience Trends 2021, 15, 418–423. [Google Scholar] [CrossRef] [Scilit]
- Ma, A.; Parry, J. When Hong Kong’s “dynamic zero” COVID-19 strategy met omicron, low vaccination rates sent deaths soaring. BMJ 2022, 377, o980. [Google Scholar] [CrossRef] [Scilit]


| Grader | No. of Assessment | Task/Indicator | Metric | # Weight (%) |
|---|---|---|---|---|
| All Grades | - | BMI | kg/m2 | 15 |
| Lung Vital Capacity | mL | 15 | ||
| Grade 1–2 | 5 | 50 m sprint | Time (seconds) | 20 |
| Sit & Reach | Max Reach distance (cm) | 30 | ||
| 1 min rope-jumping | No. of jumps | 20 | ||
| Grade 3–4 | 6 | 50 m sprint | Time (seconds) | 20 |
| Sit & Reach | Max Reach distance (cm) | 20 | ||
| 1 min rope-jumping | No. of jumps | 20 | ||
| 1 min sit-ups | No. of reps | 10 | ||
| Grade 5–6 | 7 | 50 m sprint | Time (seconds) | 20 |
| Sit & Reach | Max Reach distance (cm) | 10 | ||
| 1 min rope-jumping | No. of jumps | 10 | ||
| 1 min sit-ups | No. of reps | 20 | ||
| 50 m × 8 shuttle run | Time (seconds) | 10 |
| Year of Assessment | |||
|---|---|---|---|
| 2019 | 2020 | 2021 | |
| Total | 1916 | 2110 | 2345 |
| Grade 1 | 424 ** | 379 * | 398 |
| Grade 2 | 527 ** | 426 ** | 387 * |
| Grade 3 | 425 ** | 530 ** | 434 ** |
| Grade 4 | 154 ** | 419 ** | 534 ** |
| Grade 5 | 202 * | 163 ** | 429 ** |
| Grade 6 | 184 | 193 * | 163 ** |
| Female:Male | 867:1049 | 955:1155 | 1063:1282 |
| Age | 8.70 (1.66) | 8.91 (1.28) | 9.09 (1.59) |
| Height (cm) | 132 (10.8) | 133 (11.8) | 135 (12.6) |
| Body mass (kg) | 28.5 (8.79) | 30.6 (9.76) | 30.7 (8.68) |
| BMI (kg/m2) | 16.1 (2.72) | 16.9 (3.05) | 16.6 (2.90) |
| Outcome | Predictor | Effect (β) | 95% Wald CI | p-Value |
|---|---|---|---|---|
| Overall physical fitness score | Gender = Male | −1.34 | −1.83 to −0.84 | <0.001 |
| Gender = Female (Ref) | - | - | - | |
| Age | 1.33 | 0.72 to 1.95 | <0.001 | |
| BMI | −0.28 | −0.37 to −0.18 | <0.001 | |
| Grader | −0.87 | −1.52 to −0.22 | <0.001 | |
| Year = 2021 | 4.12 | 3.60 to 4.64 | <0.001 | |
| Year = 2020 | 2.12 | 1.73 to 2.51 | <0.001 | |
| Year = 2019 (Ref) | - | - | - | |
| BMI | Gender = Male | 0.73 | 0.58 to 0.88 | <0.001 |
| Gender = Female (Ref.) | - | - | - | |
| Age | 0.56 | 0.52 to 0.61 | <0.001 | |
| Year = 2021 | 0.39 | 0.24 to 0.54 | <0.001 | |
| Year = 2020 | 0.64 | 0.52 to 0.77 | <0.001 | |
| Year = 2019 (Ref) | - | - | - | |
| Lung vital capacity | Gender = Male | 97.28 | 74.56 to 119.96 | <0.001 |
| Gender = Female (Ref) | - | - | - | |
| Age | 213.06 | 205.45 to 220.67 | <0.001 | |
| BMI | 21.15 | 16.24 to 26.06 | <0.001 | |
| Year = 2021 | 239.58 | 214.95 to 264.20 | <0.001 | |
| Year = 2020 | 153.28 | 130.05 to 176.52 | <0.001 | |
| Year = 2019 (Ref) | - | - | - | |
| 50 m sprint time (seconds) | Gender = Male | −0.28 | −0.34 to −0.23 | <0.001 |
| Gender = Female (Ref) | - | - | - | |
| Age | −0.48 | −0.50 to −0.47 | <0.001 | |
| BMI | 0.017 | 0.007 to 0.027 | 0.001 | |
| Year = 2021 | 0.10 | 0.04 to 0.16 | 0.001 | |
| Year = 2020 | 0.02 | −0.03 to 0.07 | 0.447 | |
| Year = 2019 (Ref) | - | - | - | |
| Sit and reach distance (cm) | Gender = Male | −4.64 | −4.97 to −4.32 | <0.001 |
| Gender = Female (Ref) | - | - | - | |
| Age | 0.32 | 0.22 to 0.43 | <0.001 | |
| BMI | 0.09 | 0.04 to 0.15 | 0.001 | |
| Year = 2021 | −1.32 | −1.66 to −0.98 | <0.001 | |
| Year = 2020 | −0.64 | −0.94 to −0.35 | <0.001 | |
| Year = 2019 (Ref) | - | - | - | |
| Rope-jumping (counts) # | Gender = Male | 0.97 | 0.95 to 0.99 | 0.002 |
| Gender = Female (Ref) | - | - | - | |
| Age | 1.11 | 1.108 to 1.120 | <0.001 | |
| BMI | 1.00 | 0.995 to 1.001 | 0.181 | |
| Year = 2021 | 1.39 | 1.38 to 1.42 | <0.001 | |
| Year = 2020 | 1.23 | 1.21 to 1.25 | <0.001 | |
| Year = 2019 (Ref) | - | - | - | |
| Sit-up (counts) # | Gender = Male | 1.03 | 1.01 to 1.06 | 0.001 |
| Gender = Female (Ref) | - | - | - | |
| Age | 1.08 | 1.07 to 1.08 | <0.001 | |
| BMI | 1.00 | 0.998 to 1.005 | 0.311 | |
| Year = 2021 | 1.07 | 1.05 to 1.10 | <0.001 | |
| Year = 2020 | 1.02 | 1.00 to 1.04 | 0.054 | |
| Year = 2019 (Ref) | - | - | - | |
| Shuttle run time (seconds) | Gender = Male | −2.98 | −5.39 to −0.57 | 0.016 |
| Gender = Female (Ref) | ||||
| Age | −1.23 | −3.02 to 0.58 | 0.184 | |
| BMI | 0.87 | 0.39 to 1.35 | <0.001 | |
| Year = 2021 | 5.33 | 2.29 to 8.37 | 0.001 | |
| Year = 2020 | 2.36 | −0.23 to 4.94 | 0.074 | |
| Year = 2019 (Ref) | - | - | - |
Publisher’s Note: MDPI stays neutral with regard to jurisdictional claims in published maps and institutional affiliations. |
© 2022 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
Share and Cite
Hu, W.-N.; Li, D.-Y.; Lam, W.-K.; Wang, Y.; Wong, D.W.-C.; Cheung, J.C.-W. Physical Fitness of Chinese Primary School Students across the Coronavirus (COVID-19) Outbreak: A Retrospective Repeated Cross-Sectional Study. Int. J. Environ. Res. Public Health 2022, 19, 7870. https://doi.org/10.3390/ijerph19137870
Hu W-N, Li D-Y, Lam W-K, Wang Y, Wong DW-C, Cheung JC-W. Physical Fitness of Chinese Primary School Students across the Coronavirus (COVID-19) Outbreak: A Retrospective Repeated Cross-Sectional Study. International Journal of Environmental Research and Public Health. 2022; 19(13):7870. https://doi.org/10.3390/ijerph19137870
Chicago/Turabian StyleHu, Wei-Ning, Dong-Yue Li, Wing-Kai Lam, Yi Wang, Duo Wai-Chi Wong, and James Chung-Wai Cheung. 2022. "Physical Fitness of Chinese Primary School Students across the Coronavirus (COVID-19) Outbreak: A Retrospective Repeated Cross-Sectional Study" International Journal of Environmental Research and Public Health 19, no. 13: 7870. https://doi.org/10.3390/ijerph19137870
APA StyleHu, W.-N., Li, D.-Y., Lam, W.-K., Wang, Y., Wong, D. W.-C., & Cheung, J. C.-W. (2022). Physical Fitness of Chinese Primary School Students across the Coronavirus (COVID-19) Outbreak: A Retrospective Repeated Cross-Sectional Study. International Journal of Environmental Research and Public Health, 19(13), 7870. https://doi.org/10.3390/ijerph19137870

