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VARIATION IN HEIGHT AND KNEE HEIGHT IN ADOLESCENTS IN MERIDA, MEXICO, BY HEAD OF HOUSEHOLD EMPLOYMENT LEVEL AND FAMILY INCOME

Published online by Cambridge University Press:  09 October 2012

ADRIANA VÁZQUEZ-VÁZQUEZ
Affiliation:
Department of Human Ecology, Centro de Investigacion y de Estudios Avanzados, Unidad Merida, Merida, Mexico
HUGO AZCORRA
Affiliation:
Centre for Global Health and Human Development, School of Sport, Exercise and Health Sciences, Loughborough University, UK
INA FALFÁN
Affiliation:
Department of Human Ecology, Centro de Investigacion y de Estudios Avanzados, Unidad Merida, Merida, Mexico
FEDERICO DICKINSON
Affiliation:
Department of Human Ecology, Centro de Investigacion y de Estudios Avanzados, Unidad Merida, Merida, Mexico

Summary

Variation in height among young adults has been linked to the living conditions of different social groups. The aim of this study was to measure variation in the height and knee height of young adults by head of household employment level and family income. The sample comprised 180 individuals (90 girls) aged 16 and 17 years living in the city of Merida, Mexico. Height and knee height were measured by anthropometry, and individuals' family social and economic data collected from their mothers. Variation in these measurements was analysed by three categories of employment and family income terciles. One-way ANOVAs were done by sex to compare mean height and knee height by employment and family income. Coefficients of variation were calculated and a Bartlett test applied. Significant differences in height and knee height were observed only between family income terciles. Both sexes were taller at the highest levels of family income (p<0.05) and men had the highest (p<0.05) knee height. Highest family income individuals exhibited the least variation in height and knee height. Similarity in socioeconomic conditions for families in the lowest family income tercile and with employee heads of household was not associated with lower variation of height and knee height.

Type
Articles
Copyright
Copyright © Cambridge University Press 2012

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References

Anderson, M., Green, W. T. & Messner, M. B. (1963) Growth and predictions of growth in the lower extremities. Journal of Bone and Joint Surgery 45(1), 114.CrossRefGoogle ScholarPubMed
Bogin, B. (1991) Measurement of growth variability and environmental quality in Guatemalan children. Annals of Human Biology 18, 285294.CrossRefGoogle ScholarPubMed
Bogin, B. (1994) Patterns of Human Growth (1st edn, Vol. 3). Cambridge University Press, Cambridge.Google Scholar
Del Ángel, A. & Serrano, C. (1991). Proporcionalidad corporal y adaptación en la población prehispánica de la cuenca de México. Anales de Antropología 28, 5775.Google Scholar
Dickinson, F., Murguía, R., Cervera, M. D., Hernández, H., Kim, M. & León, F. (1989) Antropometría de una población en crecimiento en la costa de Yucatán. Estudios de Antropología Biológica IV, 123150.Google Scholar
INEGI (2010) National Survey of Occupation and Employment 2009 (ENOE, by its acronym in Spanish). Consulted on July 2012. URL: http://www.inegi.org.mx.Google Scholar
Faulhaber, J. & Sáenz Faulhaber, M. E. (1994). Terminando de crecer en México. Antropometría de subadultos (1st edn). Universidad Nacional Autónoma de México, Mexico, D. F.Google Scholar
Floyd, B. (2008) Intergenerational gains in relative knee height as compared to gains in relative leg length within Taiwanese families. American Journal of Human Biology 20, 462464.CrossRefGoogle ScholarPubMed
Frisancho, A. R. (2008) Anthropometric Standards. An Interactive Nutritional Reference of Body Size and Body Composition for Children and Adults (2nd edn). University of Michigan Press, Ann Arbor.CrossRefGoogle Scholar
Frisancho, R., Gilding, N. & Tanner, S. (2001) Growth of leg length is reflected in socio-economic differences. Acta Medica Auxologica 33, 4750.Google Scholar
Gurri, F. & Dickinson, F. (1990) Effects of socio-economic, ecological and demographic conditions on the development of the extremities and the trunk: a case study with adult females from Chiapas, Mexico. Journal of Human Ecology (Spain) 1(2), 125138.Google Scholar
Hall, B. K. (2011) A brief history of the term and concept epigenetics. In Hallgrímsson, B. & Hall, B. K. (eds) Epigenetics. Linking Genotype and Phenotype in Development and Evolution. University of California Press, Berkeley, pp. 913.Google Scholar
Hallgrímsson, B. & Hall, B. K. (eds) (2011) Epigenetics. Linking Genotype and Phenotype in Development and Evolution. University of California Press, Berkeley.CrossRefGoogle Scholar
Harrison, G. A. (1963) Temperature adaptation as evidenced by the growth of mice. Federation Proceedings 22, 691698.Google ScholarPubMed
Harrison, G. A. & Schmitt, L. H. (1989) Variability in stature growth. Annals of Human Biology 16, 4551.CrossRefGoogle ScholarPubMed
Heineck, G. (2006) Height and weight in Germany, evidence from the German Socio-Economic Panel 2002. Economics and Human Biology 4, 359382.CrossRefGoogle ScholarPubMed
Jablonka, E. & Lamb, M. J. (2002) The changing concept of epigenetics. In Van Speybroeck, L., Van de Vijver, G. & De Waele, D. (eds) From Epigenesis to Epigenetics. The Genome in Context. The New York Academy of Sciences, New York, pp. 8296.Google Scholar
Janzt, L. M. & Jantz, R. L. (1999) Secular change in long bone length and proportion in the United States, 1800–1970. American Journal of Physical Anthropology 110, 5767.Google Scholar
Komlos, J. & Kriwy, P. (2003) The biological standard of living in the two Germanies. German Economic Review 4, 459473.CrossRefGoogle Scholar
Krieger, N., Barbeau, E. M. & Soonbader, M-J. (2005) Class matters: U.S. versus U.K. measures of occupational disparities in access to health services and health status in the 2000 U.S. National Health Interview Survey. International Journal of Health Services 35(2), 213236.CrossRefGoogle ScholarPubMed
Krieger, N., Williams, D. R. & Moss, N. E. (1997) Measuring social class in US public health research: concepts, methodologies, and guidelines. Annual Review of Publich Health 18, 341378.CrossRefGoogle ScholarPubMed
Kromeyer, K., Hauspie, R. C. & Susanne, C. (1997) Socioeconomic factors and growth during childhood and early adolescence in Jena children. American Journal of Human Biology 24, 343353.Google ScholarPubMed
Lohman, T. G., Roche, A. F. & Martorell, R. (1988) Anthropometric Standarization Reference Manual. Abridged Edition. Human Kinetics Books, Champaign, Illinois.Google Scholar
Malina, R. M., Peña Reyes, M. E. & Little, B. B. (2009) Socioeconomic variation in the growth status of urban school children 6–13 years in Oaxaca, Mexico, in 1972 and 2000. American Journal of Human Biology 21, 805816.CrossRefGoogle ScholarPubMed
Malina, R. M., Peña Reyes, M. E., Swee Kheng, T., Buschang, P. H., Little, B. B. & Koziel, S. (2004). Secular change in height, sitting height and leg length in rural Oaxaca, southern Mexico: 1968–2000. Annals of Human Biology 31(6), 615633.CrossRefGoogle ScholarPubMed
Meadows, L. & Jantz, R. L. (1995). Allometric secular change in the long bones from the 1800s to the present. Journal of Forensic Sciences 40(5), 762767.CrossRefGoogle Scholar
Moguel Canul, D. P. (2011) Relación de la educación formal de la madre con el crecimiento de niños de 9 y 10 años de Mérida, Yucatán. Masters degree thesis, Centro de Investigación y de Estudios Avanzados del Instituto Político Nacional, Unidad Mérida, Merida, Mexico. URL: www.mda.cinvestav.mx/eh02b_g11.Google Scholar
Nystrôm-Peck, M. & Vagero, H. D. (1987) Adult body height and childhood socioeconomic group in the Swedish population. Journal of Epidemiology and Community Health 41, 333337.CrossRefGoogle Scholar
Ortiz Hernández, L. & García Torres, M. I. (2002) Factores socioeconómicos asociados con la mejoría en el índice talla para edad en niños de Milpa Alta, México. Boletín médico del Hospital Infantil de México 59, 753766.Google Scholar
Pagano, M. & Gauvreau, K. (2000) Principles of Biostatistics (2nd edn). Duxbury Press, Florence, Kentucky.Google Scholar
Ramos Rodriguez, R. M. (1986) Crecimiento y proporcionalidad corporal en adolescentes mexicanas (1st edn). Universidad Nacional Autónoma de México, Mexico, D. F.Google Scholar
Sáenz Faulhaber, M. E. (1990) El crecimiento infantil en una zona marginada de la ciudad de México. Anales de Antropología XXVII, 97113Google Scholar
Schmitt, L. H. & Harrison, G. A. (1988) Patterns in the within-population variability of stature and weight. Annals of Human Biology 15, 353364.CrossRefGoogle ScholarPubMed
Silventoinen, K. (2003) Determinants of variation in adult body height. Journal of Biosocial Science 35, 263285.CrossRefGoogle ScholarPubMed
Silventoinen, K., Lahelma, E. & Rahkonen, O. (1999) Social background adult body height and health. International Journal of Epidemiology 28, 911918.CrossRefGoogle ScholarPubMed
Siniarska, A. & Wolanski, N. (1999a) Living conditions and growth of Maya Indian and non-Maya boys from Yucatan in 1993 in comparison with other studies. International Journal of Anthropology 14, 259288.CrossRefGoogle Scholar
Siniarska, A. & Wolanski, N. (1999b) Secular changes and economic transformations in Yucatan, Mexico. Perspectives in Human Biology 4, 189201.Google Scholar
Sparks, C. S. (2011) Parental investment and socioeconomic status influences on children's height in Honduras: an analysis of national data. American Journal of Human Biology 23, 8088.CrossRefGoogle ScholarPubMed
StataCorp (2007) Stata Statistical Software: Release 10. StataCorp, College Station, Texas.Google Scholar
Steggerda, M. (1941) Maya Indians of Yucatan. Carnegie Institution Public, Washington.Google Scholar
Teranishi, H., Nakagawa, H. & Marmot, M. (2001) Social class difference in catch up growth in a national British cohort. Archives of the Disorders of Childhood 84, 218221.CrossRefGoogle Scholar
Visscher, P. M., McEvoy, B. & Yang, J. (2010) From Galton to GWAS: quantitative genetics of human height. Genetics Research (Cambridge) 92, 371379.CrossRefGoogle ScholarPubMed
Waddington, C. H. (1968) The basic ideas in biology. In Waddington, C. H. (ed.) Towards a Theoretical Biology, Vol. 1. Edinburgh University Press, Edinburgh, pp. 131.Google Scholar
Wolañski, N., Dickinson, F. & Siniarska, A. (1993) Biological traits and living conditions of Maya Indian and non-Maya girls from Mérida, México. International Journal of Anthropology 8, 233246.CrossRefGoogle Scholar
Wolañski, N. & Siniarska, A. (2000) Differences in Body Proportions between Yucatecan and Polish Populations: Genes or Living Conditions? Latvijas Vestures Instituta Apgads, Riga, pp. 166190.Google Scholar