Age at peak height velocity in Polish adolescents: Effect of socioeconomic factors

. 2024 Sep ; 36 (9) : e24083. [epub] 20240410

Jazyk angličtina Země Spojené státy americké Médium print-electronic

Typ dokumentu časopisecké články

Perzistentní odkaz   https://www.medvik.cz/link/pmid38600688

Age at peak height velocity (APHV) is an indicator of maturity timing which is applicable to both sexes, and which is influenced by environmental factors. The objective of this study was to assess variation in APHV associated with several indicators of socioeconomic status (SES) in a longitudinal sample of Polish adolescents. The sample included 739 boys born in 1983 and followed annually from 12 to 16 years, and 597 girls born in 1985 and followed annually from 9 to 13 years. The height records were fitted with the SITAR model to estimate APHV. SES was estimated using principal component analysis of indicators of familial status based on parental education, family size, living conditions and household possessions. Statistical analyses included analysis of variance (one-way for general SES and three-way for parental education and family size) and Tukey post-hoc tests for unequal samples. General SES (p <.001) and family size (p < .05) significantly influenced APHV among boys, while only maternal education (p < .05) significantly influenced APHV among girls. Among youth from families of higher SES, as defined by the respective indicators, APHV was attained significantly earlier, on average, than in peers from families of lower SES. Overall, the results showed a sex-dependent effect of SES on APHV, and highlighted the influence of favorable socioeconomic conditions for optimal growth and maturation during adolescence.

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Aris, I. M., Perng, W., Dabelea, D., Ganiban, J. M., Liu, C., Marceau, K., Robertson, O. C., Hockett, C. W., Mihalopoulos, N. L., Kong, X., Herting, M. M., O'Shea, T. M., Jensen, E. T., Hivert, M. F., Oken, E., Program Collaborators for Environmental Influences on Child Health Outcomes, Alshawabkeh, A., Aschner, J., Blair, C., … Wright, R. (2022). Analysis of early‐life growth and age at pubertal onset in US children. JAMA Network Open, 5, e2146873.

Bergman, P. (1988). Zagadnienie genetycznej determinacji rozwoju w okresie pokwitania (The problem of genetic determination of growth at adolescence). Materiały i Prace Antropologiczne, 108, 165–216.

Berkey, C. A., Wang, X., Dockery, D. W., & Ferris, B. G. (1994). Adolescent height growth of U.S. children. Annals of Human Biology, 21, 435–442.

Beunen, G., Thomis, M., Maes, H. H., Loos, R., Malina, R. M., Claessens, A. L., & Vlietinck, R. (2000). Genetic variance of adolescent growth in stature. Annals of Human Biology, 27, 173–186.

Bielicki, T. (1986). Physical growth as a measure of the economic well‐being of populations: The twentieth century. In F. Falkner & J. M. Tanner (Eds.), Human growth. Volume 3. Methodology, ecological, genetic, and nutritional effects of growth (pp. 283–305). Plenum.

Bielicki, T., & Hauspie, R. C. (1994). On the independence of adult stature from the timing of the adolescent growth spurt. American Journal of Human Biology, 6, 245–247.

Bielicki, T., Koniarek, J., & Malina, R. M. (1984). Interrelationships among certain measures of growth and maturation rate in boys during adolescence. Annals of Human Biology, 11, 201–210.

Bielicki, T., & Welon, Z. (1973). The sequence of growth velocity peaks of principal body dimensions in girls. Materialy i Prace Antropologiczne, 86, 3–10.

Billewicz, W. Z., Fellowes, H. M., & Thomson, A. M. (1981). Pubertal changes in boys and girls in Newcastle upon Tyne. Annals of Human Biology, 8, 211–219.

Bird, P. K., Pickett, K. E., Graham, H., Faresjö, T., Jaddoe, V. W., & Ludvigsson, J. (2019). Income inequality and social gradients in children's height: A comparison of cohort studies from five high‐income countries. BMJ Paediatrics Open, 3, e000568.

Biro, F. M., Huang, B., Crawford, P. C., Lucky, A. W., Striefel‐Moore, R., Barton, B. A., & Daniels, S. (2006). Pubertal correlates in Black and White girls. Journal of Pediatrics, 148, 234–240.

Bogin, B., Scheffler, C., & Hermanussen, M. (2017). Global effects of income and income inequality on adult height and sexual dimorphism in height. American Journal of Human Biology, 29, e22980.

Cao, Z., Hui, L. L., & Wong, M. Y. (2018). New approaches to obtaining individual peak height velocity and age at peak height velocity from the SITAR model. Computer Methods and Programs in Biomedicine, 163, 79–85.

Cempla, J. (1996). Rozwojowe zmiany poziomu wybranych parametrów fiziologicznych towarzyszących skrajnemu obciążeniu wysiłkowemu u 13‐15 letnich dziewcząt i chłopców (ang: Developmental changes of the level of selected physiological variables determined at the maximal power output in boys and girls aged 13‐15 years). Antropomotoryka, 15, 39–53.

Cheng, M., Yao, Y., Zhao, Y., Lin, Y., Gao, S., Xie, J., Zhang, X., & Zhu, H. (2021). The influence of socioeconomic status on menarcheal age among Chinese school‐age girls in Tianjin, China. European Journal of Pediatrics, 180, 825–832.

Chrząstek‐Spruch, H., Kozłowska, M., Hauspie, R., & Susanne, C. (2002). Longitudinal study on growth in height in Polish boys and girls. International Journal of Anthropology, 17, 153–160.

Chrząstek‐Spruch, H., Susanne, C., Hauspie, R., & Kozłowska, M. (1989). Individual growth patterns and standards for height and weight velocity based on the Lublin longitudinal growth study. In J. M. Tanner (Ed.), Auxology 88. Perspectives in the science of growth and development. St (pp. 161–166). Smith‐Gordon.

Cole, T. (2019). SITAR: Super imposition by translation and rotation growth curve analysis. R package version 1.1.1. Retrieved from https://CRAN.R-project.org/package=sitar

Cole, T. J. (2018). Optimal design for longitudinal studies to estimate pubertal height growth in individuals. Annals of Human Biology, 45, 314–320.

Cole, T. J., Donaldson, M. D. C., & Ben‐Shlomo, Y. (2010). SITAR – A useful instrument for growth curve analysis. International Journal of Epidemiology, 39, 1558–1566.

Cole, T. J., Pan, H., & Butler, G. E. (2014). A mixed effects model to estimate timing and intensity of pubertal growth from height and secondary sexual characteristics. Annals of Human Biology, 41, 76–83.

Durda‐Masny, M., Hanc, T., Czapla, Z., & Szwed, A. (2019). BMI at menarche and timing of growth spurt and puberty in Polish girls – Longitudinal study. Anthropologischer Anzeiger/Journal of Biological and Clinical Anthropology, 76, 37–47.

Finch, B. K., & Beck, A. N. (2011). Socio‐economic status and z‐score standardized height‐for‐age of US‐born children (ages 2–6). Economics and Human Biology, 9, 272–276.

Fischbein, S. (1977). Onset of puberty in MZ and DZ twins. Acta Geneticae Medicae et Gemellologiae (Rome), 26, 151–158.

Gay, J. L., Monsma, E. V., Smith, A. L., DeFreese, J. D., & Torres‐McGehee, T. (2014). Assessment of growth and maturation in female athletes at a single point in time. Women in Sport and Physical Activity Journal, 22(2), 76–82.

Geithner, C. A., Satake, T., Woynarowska, B., & Malina, R. M. (1999). Adolescent spurts in body dimensions: Average and modal sequences. American Journal of Human Biology, 11, 287–295.

Geithner, C. A., Woynarowska, B., & Malina, R. M. (1998). The adolescent spurt and sexual maturation in girls active and not active in sport. Annals of Human Biology, 25, 415–423.

Gomula, A., & Koziel, S. (2018). Secular trend and social variation in age at menarche among Polish schoolgirls before and after the political transformation. American Journal of Human Biology, 30, e23048.

Gomula, A., Nowak‐Szczepanska, N., Danel, D. P., & Koziel, S. (2015). Overweight trends among Polish schoolchildren before and after the transition from communism to capitalism. Economics & Human Biology, 19, 246–257.

Hauspie, R. C., Vercauteren, M., & Susanne, C. (1997). Secular changes in growth and maturation: An update. Acta Paediatrica, 86(S423), 20–27.

Hiatt, R. A., Stewart, S. L., Deardorff, J., Danial, E., Abdiwahab, E., Pinney, S. M., Teitelbaum, S. L., Windham, G. C., Wolff, M. S., Kushi, L. H., & Biro, F. M. (2021). Childhood socioeconomic status and menarche: A prospective study. Journal of Adolescent Health, 69, 33–40.

Hoshi, H., & Kouchi, M. (1981). Secular trend of the age at menarche of Japanese girls with special regard to the secular acceleration of the age at peak height velocity. Human Biology, 53, 593–598.

Kaczmarek, M. (2002). Adolescent growth and its relation to menarche, dental and somatic maturation. Anthropological Review, 65, 27–42.

Karim, A., Qaisar, R., & Hussain, M. A. (2021). Growth and socio‐economic status, influence on the age at menarche in school going girls. Journal of Adolescence, 86, 40–53.

Kozieł, S., Danel, D. P., & Zaręba, M. (2011). Isolation by distance between spouses and its effect on children's growth in height. American Journal of Physical Anthropology, 146, 14–19.

Koziel, S. M. (1997). Combined effect of the tempo of maturation and mid‐paret height on the shape of individual growth curve. American Journal of Human Biology, 9, 555–563.

Králík, M., Klíma, O., Čuta, M., Malina, R. M., Kozieł, S. M., Polcerová, L., Škultétyová, A., Španěl, M., Kukla, L., & Zemčík, P. (2021). Estimating growth in height from limited longitudinal growth data using full‐curves training dataset: A comparison of two procedures of curve optimization—Functional principal component analysis and SITAR. Children, 8(10), 934.

Leone, T., & Brown, L. J. (2020). Timing and determinants of age at menarche in low‐income and middle‐income countries. BMJ Global Health, 5(12), e003689.

Li, L., Manor, O., & Power, C. (2004). Are inequalities in height narrowing? Comparing effects of social class on height in two generations. Archives of Disease in Childhood, 89, 1018–1023.

Lindgren, G. (1976). Height, weight and menarche in Swedish urban school children in relation to socio‐economic and regional factors. Annals of Human Biology, 3, 501–528.

Malina, R. M., & Kozieł, S. M. (2014a). Validation of maturity offset in a longitudinal sample of Polish boys. Journal of Sports Sciences, 32, 424–437.

Malina, R. M., & Kozieł, S. M. (2014b). Validation of maturity offset in a longitudinal sample of Polish girls. Journal of Sports Sciences, 32, 1374–1382.

Malina, R. M., Kozieł, S. M., Králik, M., Chrzanowska, M., & Suder, A. (2020). Prediction of maturity offset and age at peak height velocity in a longitudinal series of boys and girls. American Journal of Human Biology, 11, e23551.

Mansukoski, L., Johnson, W., Brooke‐Wavell, K., Galvez‐Sobral, J. A., Furlan, L., Cole, T. J., & Bogin, B. (2019). Life course associations of height, weight, fatness, grip strength, and all‐cause mortality for high socioeconomic status Guatemalans. American Journal of Human Biology, 31, e23253.

Mao, S. H., Li, H. B., Jiang, J., Sun, X., Cheng, J. C., & Qiu, Y. (2011). An updated analysis of pubertal linear growth characteristics and age at menarche in ethnic Chinese. American Journal of Human Biology, 23, 132–137.

Marmot, M. (2015). The health gap: The challenge of an unequal world. The Lancet, 386, 2442–2444.

Marván, M. L., Castillo‐López, R. L., del‐Callejo‐Canal, D. D., Canal‐Martínez, M. E., & Núñez‐de la Mora, A. (2020). Secular trends in age at menarche in 20th century Mexico: Differences by ethnicity, area of residency, and socioeconomic status. American Journal of Human Biology, 32, e23404.

McCormack, S. E., Cousminer, D. L., Chesi, A., Mitchell, J. A., Roy, S. M., Kalkwarf, H. J., Lappe, J. M., Gilsanz, V., Oberfield, S. E., Shepherd, J. A., Winer, K. K., Kelly, A., Grant, S. F. A., & Zemmel, B. S. (2017). Association between linear growth and bone accrual in a diverse cohort of children and adolescents. JAMA Pediatrics, 171, e171769.

Miltenburg Caspersen, L., & Sonnesen, L. (2020). Secular trend of the skeletal maturation in relation to peak height velocity – A comparison between two groups of children born 1969‐1973 and 1996‐2000. European Journal of Orthodontics, 42, 612–618.

Nowak‐Szczepanska, N., Gomula, A., & Koziel, S. (2019). Mid‐upper arm circumference and body mass index as different screening tools of nutritional and weight status in Polish schoolchildren across socio‐political changes. Scientific Reports, 9(1), 12399.

Ohlsson, C., Bygdell, M., Celind, J., Sondén, A., Tidblad, A., Sävendahl, L., & Kindblom, J. M. (2019). Secular trends in pubertal growth acceleration in Swedish boys born from 1947 to 1996. JAMA Pediatrics, 173, 860–865.

R Core Team. (2019). R: A language and environment for statistical computing. R Foundation for Statistical Computing. Retrieved from https://www.R-project.org

Rosique, J., Salces, I., San Martín, L., & Rebato, E. (1996). Socio‐economic status and statural growth in Basque population. In 6th international symposium of human biology. Veszprém.

Silventoinen, K., Haukka, J., Dunkel, L., Tynelius, P., & Rasmussen, F. (2008). Genetics of pubertal timing and its associations with relative weight in childhood and adult height: The Swedish Young Male Twins Study. Pediatrics, 121, e885–e891.

Simpkin, A. J., Sayers, A., Gilthorpe, M. S., Heron, J., & Tilling, K. (2017). Modelling height in adolescence: A comparison of methods for estimating the age at peak height velocity. Annals of Human Biology, 44(8), 715–722.

Ulijaszek, S. J. (2001). Secular trends in growth: The narrowing of ethnic differences in stature. Nutrition Bulletin, 26, 43–51.

Ulijaszek, S. J., & Kerr, D. A. (1999). Anthropometric measurement error and the assessment of nutritional status. British Journal of Nutrition, 82, 165–177.

Viner, R. M., Ross, D., Hardy, R., Kuh, D., Power, C., Johnson, A., Wellings, K., McCambridge, J., Cole, T. J., Kelly, Y., & Batty, G. D. (2015). Life course epidemiology: Recognising the importance of adolescence. Journal of Epidemiology and Community Health, 69, 719–720.

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