The anthropometric determinants of peak expiratory flow rate among children in Dar Es Salaam, Tanzania.

Anthropometric measurements Asthma Dar es Salaam Lung function Peak expiratory flow rate School children Tanzania

Journal

BMC pediatrics
ISSN: 1471-2431
Titre abrégé: BMC Pediatr
Pays: England
ID NLM: 100967804

Informations de publication

Date de publication:
13 Jan 2024
Historique:
received: 20 08 2023
accepted: 31 12 2023
medline: 14 1 2024
pubmed: 14 1 2024
entrez: 13 1 2024
Statut: epublish

Résumé

Peak expiratory flow rate (PEFR) is an important tool for assessing lung function, which can be affected by environmental and physical factors such as altitude, nutrition, genetics, age, height, and weight. Conducting a study to assess the correlation between peak expiratory flow rate and anthropometric measurements in Tanzanian schoolchildren is crucial to derive a population-specific prediction formula and further simplify respiratory health assessment. This cross-sectional study was conducted in a single center private primary and secondary school in Dar es Salaam, Tanzania using data from an asthma screening camp. Variables of interest were height, weight, Body Mass Index (BMI) and PEFR. Independent t-test was performed to identify any differences in mean flow rate values between different ethnicities and genders. Correlation coefficients (r) were used to observe the relationship between PEFR and anthropometric measurements. A prediction equation by gender was generated using linear regression analysis. Statistical significance was set at the 5% level. All statistical data was analyzed using SPSS version 25.0. The study involved 260 participants with a mean age of 9.5 years. Males were 51.2% and 65% of participants were of Asian ethnicity. PEFR was not observed to differ across the different ethnic groups and genders. Height was found to have the strongest correlation coefficient of 0.745, while BMI had the weakest correlation coefficient of 0.366. The strongest correlation was found with height for females (r = 0.787), while the weakest was with body mass index for boys (r = 0.203). The derived prediction equation for males was PEFR = 279.169 (Height of Student in meters) -134.12, while the predictive equation for females was PEFR = 318.32 (Height of Student in meters) -195.69. This study found a strong correlation between PEFR and anthropometric characteristics in school children from Dar es Salaam, Tanzania. A prediction equation by gender for PEFR was developed based on anthropometric characteristics. This equation may be applied in population-based studies or situations where peak flow meters are not readily available. Further research is needed to explore how well this prediction formula performs in other Tanzanian settings and to determine other factors that may affect lung function in this population.

Sections du résumé

BACKGROUND BACKGROUND
Peak expiratory flow rate (PEFR) is an important tool for assessing lung function, which can be affected by environmental and physical factors such as altitude, nutrition, genetics, age, height, and weight. Conducting a study to assess the correlation between peak expiratory flow rate and anthropometric measurements in Tanzanian schoolchildren is crucial to derive a population-specific prediction formula and further simplify respiratory health assessment.
METHODS METHODS
This cross-sectional study was conducted in a single center private primary and secondary school in Dar es Salaam, Tanzania using data from an asthma screening camp. Variables of interest were height, weight, Body Mass Index (BMI) and PEFR. Independent t-test was performed to identify any differences in mean flow rate values between different ethnicities and genders. Correlation coefficients (r) were used to observe the relationship between PEFR and anthropometric measurements. A prediction equation by gender was generated using linear regression analysis. Statistical significance was set at the 5% level. All statistical data was analyzed using SPSS version 25.0.
RESULTS RESULTS
The study involved 260 participants with a mean age of 9.5 years. Males were 51.2% and 65% of participants were of Asian ethnicity. PEFR was not observed to differ across the different ethnic groups and genders. Height was found to have the strongest correlation coefficient of 0.745, while BMI had the weakest correlation coefficient of 0.366. The strongest correlation was found with height for females (r = 0.787), while the weakest was with body mass index for boys (r = 0.203). The derived prediction equation for males was PEFR = 279.169 (Height of Student in meters) -134.12, while the predictive equation for females was PEFR = 318.32 (Height of Student in meters) -195.69.
CONCLUSION CONCLUSIONS
This study found a strong correlation between PEFR and anthropometric characteristics in school children from Dar es Salaam, Tanzania. A prediction equation by gender for PEFR was developed based on anthropometric characteristics. This equation may be applied in population-based studies or situations where peak flow meters are not readily available. Further research is needed to explore how well this prediction formula performs in other Tanzanian settings and to determine other factors that may affect lung function in this population.

Identifiants

pubmed: 38218839
doi: 10.1186/s12887-023-04520-1
pii: 10.1186/s12887-023-04520-1
doi:

Types de publication

Journal Article

Langues

eng

Sous-ensembles de citation

IM

Pagination

42

Informations de copyright

© 2024. The Author(s).

Références

James T. Influence of gender and anthropometric parameters on Peak Expiratory Flow Rate and vital capacity among medical students of a Teaching Institution. Int J Contemp Med Res (IJCMR). 2020;7(2).
Mukuku O, Tshibwid AZF. Peak Expiratory Flow: its correlation with age and anthropometric parameters in healthy pregnant women in Lubumbashi. J Respiratory Med Lung Disease. 2020;5.
Rai RH, Gupta S, Mohd A. Relationship of Peak Expiratory Flow Rate with Waist circumference, hip circumference, and Waist-to-hip ratio in young adults. Annals of National Academy of Medical Sciences. 2020;56(01):26–9.
doi: 10.1055/s-0040-1712341
Jangam S, Tuppad S, Taklikar RH. Research Article: a comparative study of Peak Expiratory Flow Rate and Anthropometry in College Students of the Same Age Group [Internet].
Pramanik P, Koley D, Ganguli I. Peak Expiratory Flow Rate in Respect to Anthropometric Parameters of Adolescent Boys and Girls from West Bengal, India [Internet]. Vol. 13, IOSR Journal of Dental and Medical Sciences (IOSR-JDMS) e-ISSN. 2014.
Chandel R, Shivhare G, Bhagat A. Anthropometric Variables and PEFR. Central. Eur J Sport Sci Med. 2022;39(3):75–80.
Blair ML. Sex-based differences in physiology: what should we teach in the Medical Curriculum? Adv Physiol Educ [Internet]. 2007;31:23–5.
doi: 10.1152/advan.00118.2006 pubmed: 17327578
Aggarwal T, Singh D, Sharma B, Siddique SS, Agarwal S. Correlation of gender and body Mass Index with pulmonary function tests in Medical and Paramedical students of Muzaffarnagar Medical College. Natl J Physiol Pharm Pharmacol. 2017;7(11):1155–8.
Wright BM, McKerrow CB. Maximum forced Expiratory Flow Rate as a measure of ventilatory capacity. BMJ. 1959;2(5159):1041–7.
doi: 10.1136/bmj.2.5159.1041 pubmed: 13846051 pmcid: 1990874
AlghAdir A, Aly Fa ZAFAhAmAyun. Sex-based differences in lung functions of Saudi adults [Internet]. Vol. 2, Journal of Physical Therapy Science.
Agaba PA, Thacher TD, Angyo IA, Agaba EI. Peak Expiratory Flow Rates in healthy Nigerian children. J Trop Pediatr. 2003;49(3):157–9.
doi: 10.1093/tropej/49.3.157 pubmed: 12848205
Jacobs DR, Nelson ET, Dontas AS, Keller J, Slattery ML, Higgins M. Are race and sex differences in lung function explained by Frame size? The CARDIA Study. Am Rev Respir Dis. 1992;146(3):644–9.
doi: 10.1164/ajrccm/146.3.644 pubmed: 1519841
Hankinson JL, Odencrantz JR, Fedan KB. Spirometric Reference Values from a Sample of the General U.S. Population [Internet]. Vol. 159, American Journal of Respiratory and Critical Care Medicine. 1999. Available from: www.atsjournals.org .
Ijaz A, Bashir I, Ikhlaq A, Ijaz F, Aftab RK, Zia R. Correlation Between Peak Expiratory Flow Rate, Markers of Adiposity, and Anthropometric Measures in Medical Students in Pakistan. Cureus. 2020.
Udupihille M. Peak Expiratory Flow rate in Sri Lankan schoolchildren of sinhalese ethnic origin. Respir Med. 1994;88.
Seema S, Verma KB, Goel SK, Ghosh S, Bera C. Correlation of Peak Expiratory Flow Rate with Anthropometric determinants in a healthy Adult Male Population of Haryana. J Evol Med Dent Sci. 2014;3(30):8355–65.
doi: 10.14260/jemds/2014/3053
Whittaker AL, Sutton AJ, Beardsmore CS. Are ethnic differences in lung function explained by chest size? Archives of Disease in Childhood -. Fetal and Neonatal Edition. 2005;90(5).

Auteurs

Willbroad Kyejo (W)

Department of Family Medicine, Aga Khan University, P.O. Box 38129, Dar Es Salaam, Tanzania. willbroad.kyejo@akhst.org.

Nancy Matillya (N)

Department of Family Medicine, Aga Khan University, P.O. Box 38129, Dar Es Salaam, Tanzania.

Neelam Ismail (N)

Department of Family Medicine, Aga Khan University, P.O. Box 38129, Dar Es Salaam, Tanzania.

Gloria Gachocha (G)

Department of Family Medicine, Aga Khan University, P.O. Box 38129, Dar Es Salaam, Tanzania.

Hajaj Salum (H)

Department of Pediatrics and Child health, Aga Khan University, P.O. Box 38129, Dar Es Salaam, Tanzania.

Rosebella Iseme (R)

Department of Population Health, Aga Khan University, GPO, P.O. Box 30270-00100, Nairobi, Kenya.

Mariam Noorani (M)

Department of Pediatrics and Child health, Aga Khan University, P.O. Box 38129, Dar Es Salaam, Tanzania.

Classifications MeSH