Lung function in athletes and non-athletes aged 13-15 years
Background Regular sports or physical training contributes in increasing the body’s pulmonary function. The increase of pulmonary function is determined by the strength of respiratory muscle, thoracic compliance, upper respiratory system resistance, and pulmonary elasticity. Objective To compare pul...
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Published in: | Paediatrica Indonesiana Vol. 58; no. 4; pp. 170 - 4 |
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Main Authors: | , , |
Format: | Journal Article |
Language: | English |
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Indonesian Pediatric Society Publishing House
01-07-2018
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Abstract | Background Regular sports or physical training contributes in increasing the body’s pulmonary function. The increase of pulmonary function is determined by the strength of respiratory muscle, thoracic compliance, upper respiratory system resistance, and pulmonary elasticity.
Objective To compare pulmonary function between athletes and non-athletes aged 13-15 years.
Methods This is a cross-sectional analytical study conducted onnior high school students aged 13-15 years throughout June to August 2017. Participants are classified as athletes from particular sports and non-athletes. Assessment of pulmonary function was done using a spirometry test, in which each subject was asked to inhale and exhale in a particular method. Parameters assessed include vital capacity (VC), forced vital capacity (FVC), expiratory volume in 1 second (FEV1), forced expiratory flow (FEF) and FEV1/FVC. Differences in lung function between athletes and non-athletes were analyzed using independent T-test.
Results There were 60 athletes and 60 non-athletes included in this study. The mean age of athletes and non-athletes were 13.38 (SD 0.99) years old and 13.70 (SD 0.76) years old, respectively. The statistically significant differences in mean lung function parameters between athletes and non-athletes were as follows: VC: 85.03% vs. 79.41%, respectively (P=0.035); FVC: 95.66% vs. 88.43%, respectively (P=0.016); FEV1: 102.10% vs. 94.28%, respectively (P=0.016); and FEV1/FVC: 105.95% vs. 102.69%, respectively (P=0.011). However, there were no statistically significant differences in the means of FEF 25-75% between the two groups (P>0.05).
Conclusions Parameters of lung function in athletes are in general significantly higher than in non-athletes. |
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AbstractList | Background Regular sports or physical training contributes in increasing the body’s pulmonary function. The increase of pulmonary function is determined by the strength of respiratory muscle, thoracic compliance, upper respiratory system resistance, and pulmonary elasticity.
Objective To compare pulmonary function between athletes and non-athletes aged 13-15 years.
Methods This is a cross-sectional analytical study conducted onnior high school students aged 13-15 years throughout June to August 2017. Participants are classified as athletes from particular sports and non-athletes. Assessment of pulmonary function was done using a spirometry test, in which each subject was asked to inhale and exhale in a particular method. Parameters assessed include vital capacity (VC), forced vital capacity (FVC), expiratory volume in 1 second (FEV1), forced expiratory flow (FEF) and FEV1/FVC. Differences in lung function between athletes and non-athletes were analyzed using independent T-test.
Results There were 60 athletes and 60 non-athletes included in this study. The mean age of athletes and non-athletes were 13.38 (SD 0.99) years old and 13.70 (SD 0.76) years old, respectively. The statistically significant differences in mean lung function parameters between athletes and non-athletes were as follows: VC: 85.03% vs. 79.41%, respectively (P=0.035); FVC: 95.66% vs. 88.43%, respectively (P=0.016); FEV1: 102.10% vs. 94.28%, respectively (P=0.016); and FEV1/FVC: 105.95% vs. 102.69%, respectively (P=0.011). However, there were no statistically significant differences in the means of FEF 25-75% between the two groups (P>0.05).
Conclusions Parameters of lung function in athletes are in general significantly higher than in non-athletes. Background Regular sports or physical training contributes in increasing the body’s pulmonary function. The increase of pulmonary function is determined by the strength of respiratory muscle, thoracic compliance, upper respiratory system resistance, and pulmonary elasticity. Objective To compare pulmonary function between athletes and non-athletes aged 13-15 years. Methods This is a cross-sectional analytical study conducted onnior high school students aged 13-15 years throughout June to August 2017. Participants are classified as athletes from particular sports and non-athletes. Assessment of pulmonary function was done using a spirometry test, in which each subject was asked to inhale and exhale in a particular method. Parameters assessed include vital capacity (VC), forced vital capacity (FVC), expiratory volume in 1 second (FEV1), forced expiratory flow (FEF) and FEV1/FVC. Differences in lung function between athletes and non-athletes were analyzed using independent T-test. Results There were 60 athletes and 60 non-athletes included in this study. The mean age of athletes and non-athletes were 13.38 (SD 0.99) years old and 13.70 (SD 0.76) years old, respectively. The statistically significant differences in mean lung function parameters between athletes and non-athletes were as follows: VC: 85.03% vs. 79.41%, respectively (P=0.035); FVC: 95.66% vs. 88.43%, respectively (P=0.016); FEV1: 102.10% vs. 94.28%, respectively (P=0.016); and FEV1/FVC: 105.95% vs. 102.69%, respectively (P=0.011). However, there were no statistically significant differences in the means of FEF 25-75% between the two groups (P>0.05). Conclusions Parameters of lung function in athletes are in general significantly higher than in non-athletes. |
Author | Subanada, Ida Bagus Mayangsari, Ayu Setyorini Mestika Saputri, Ni Komang Diah |
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References | ref13 ref12 Enjeti (ref14) 1978; 118 Mahotra (ref18) 2016; 6 ref11 ref10 ref0 ref16 Vedala (ref17) 2013; 3 ref8 Akhade (ref19) 2014; 4 ref9 Hildebran (ref15) 1981; 51 ref4 Naeije (ref7) 2012; 2 ref3 Pyne (ref2) 2009; 27 ref6 Booth (ref1) 2012; 2 ref5 |
References_xml | – ident: ref13 – volume: 6 start-page: 21 year: 2016 ident: ref18 article-title: Effects of exercise on pulmonary function tests: a comparative study between athletes and non-athletes in Nepalese settings publication-title: J Chitwan Med Coll doi: 10.3126/jcmc.v6i1.16575 contributor: fullname: Mahotra – ident: ref4 – ident: ref3 – volume: 27 start-page: 195 year: 2009 ident: ref2 article-title: Peaking for optimal performance: research limitations and future directions publication-title: J Sport Sci doi: 10.1080/02640410802509136 contributor: fullname: Pyne – ident: ref5 – ident: ref6 – volume: 51 start-page: 905 year: 1981 ident: ref15 article-title: Surfactant release in excised rat lung stimulated by air inflation publication-title: J Appl Physiol Respir Environ Exerc Physiol doi: 10.1152/jappl.1981.51.4.905 contributor: fullname: Hildebran – volume: 118 start-page: 667 year: 1978 ident: ref14 article-title: Pulmonary function in young smokers: male-female differences publication-title: Am Rev Respir Dis doi: 10.1164/arrd.1978.118.4.667 contributor: fullname: Enjeti – volume: 2 start-page: 711 year: 2012 ident: ref7 article-title: Pulmonary circulation at exercise publication-title: Compr Physiol doi: 10.1002/cphy.c100091 contributor: fullname: Naeije – volume: 3 start-page: 118 year: 2013 ident: ref17 article-title: Difference in pulmonary function test among the athletic and sedentary population publication-title: Natl J Physiol Pharm Pharmacol doi: 10.5455/njppp.2013.3.109-114 contributor: fullname: Vedala – volume: 4 start-page: 168 year: 2014 ident: ref19 article-title: The effect of running training on pulmonary function tests publication-title: Natl J Physiol Pharm Pharmacol doi: 10.5455/njppp.2014.4.151220131 contributor: fullname: Akhade – volume: 2 start-page: 1143 year: 2012 ident: ref1 article-title: Lack of exercise is a major cause of chronic diseases publication-title: Compr Physiol doi: 10.1002/cphy.c110025 contributor: fullname: Booth – ident: ref9 – ident: ref8 – ident: ref0 – ident: ref16 – ident: ref10 – ident: ref11 – ident: ref12 |
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Title | Lung function in athletes and non-athletes aged 13-15 years |
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