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Puberal and Adolescent Horse Riders' Fitness During the COVID-19 Pandemic: The Effects of Training Restrictions on Health-Related and Functional Motor Abilities

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Publisher MDPI
Date 2022 Jun 10
PMID 35681978
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Abstract

The aim of the study was to analyse the fitness level of young horse riders before and after 12 weeks of training restrictions instituted due to the COVID-19 emergency. Anthropometrical measure assessment and an eight-items fitness test battery were administered to 61 puberal and adolescent female amateur horse riders. Subjects were evaluated within 3 weeks before (pre-tests) the period of training restrictions and on the first day of normal training after it (post-tests). Post-test results showed significant increases in body weight (Z: −1.732; p value: 0.001; ES: −0.157) and BMI (F: 9.918; p value: 0.003; ES: 0.146), whilst the performance in hand grip and abdominal strength, hip mobility, and 10 × 5 m Shuttle and Cooper 12 min tests’ outcomes significantly decreased (F: 29.779; p value: 0.001 F: 29.779; p value: 0.001 F: 29.779; p value: 0.001 F: 29.779; p value: 0.001 F: 29.779; p value: 0.001, respectively). Correlation analysis revealed that riders’ experience was significantly correlated with hand grip (p < 0.01), leg strength (p < 0.01), hip mobility (p < 0.05), and 5 × 10 m Shuttle (p < 0.01) and the Cooper 12 min (p < 0.01) test results. It could be suggested that equestrian activities could produce a higher fitness level in puberal and adolescent riders, whilst home-based, unsupervised, and unattentively planned training during the twelve weeks of training restrictions might be insufficient to maintain it.

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References
1.
Kaster T, Dooley F, Fitzgerald J, Walch T, Annandale M, Ferrar K . Temporal trends in the sit-ups performance of 9,939,289 children and adolescents between 1964 and 2017. J Sports Sci. 2020; 38(16):1913-1923. DOI: 10.1080/02640414.2020.1763764. View

2.
Smits-Engelsman B, Smit E, Doe-Asinyo R, Lawerteh S, Aertssen W, Ferguson G . Inter-rater reliability and test-retest reliability of the Performance and Fitness (PERF-FIT) test battery for children: a test for motor skill related fitness. BMC Pediatr. 2021; 21(1):119. PMC: 7948346. DOI: 10.1186/s12887-021-02589-0. View

3.
Nuttall F . Body Mass Index: Obesity, BMI, and Health: A Critical Review. Nutr Today. 2016; 50(3):117-128. PMC: 4890841. DOI: 10.1097/NT.0000000000000092. View

4.
Baillet H, Thouvarecq R, Verin E, Tourny C, Benguigui N, Komar J . Human Energy Expenditure and Postural Coordination on the Mechanical Horse. J Mot Behav. 2016; 49(4):441-457. DOI: 10.1080/00222895.2016.1241743. View

5.
Ruiz J, Castro-Pinero J, Espana-Romero V, Artero E, Ortega F, Cuenca M . Field-based fitness assessment in young people: the ALPHA health-related fitness test battery for children and adolescents. Br J Sports Med. 2010; 45(6):518-24. DOI: 10.1136/bjsm.2010.075341. View