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The Effects of War-Related Stress on Human Development: Differences in Body Proportions of Polish Women Born Before and During World War II

. 2025 Jan ; 37 (1) : e24175. [epub] 20241030

Language English Country United States Media print-electronic

Document type Journal Article

Grant support
52210169 International Visegrad Fund

OBJECTIVES: This study aims to explore the lasting effects of stress experienced by pregnant women during World War II (WWII) on body and head measurements of their adult daughters. METHODS: The research sample consists of 336 female university students born in Poland between 1925 and 1951. The data include body measurements and socioeconomic information (parental occupation and number of siblings) acquired from questionnaires collected between the 1950s and 1970s. Student's t-test, Mann-Whitney test and Analysis of Variance were used to analyze differences in body measurements between groups of women born before and during the war, as well as the possible influences of socioeconomic variables. RESULTS: The mean measurements of body height, symphysion height, and waist circumference were lower in women conceived and born during the war compared to those born in the pre-war period. In contrast, the mean measurements of biacromial (shoulder) width, trunk length, and three head dimensions were higher in women conceived and born during the war. Additionally, the number of siblings appeared to be a significant factor that may have influenced the body measurements of women in both groups. For instance, a higher number of living siblings, particularly sisters, was associated with reduced body dimensions, such as body height and waist circumference, while a greater number of deceased siblings was linked to an increase in certain body dimensions. CONCLUSION: The results suggest that war-related prenatal conditions may have influenced the postnatal growth and development of women conceived and born during the war. Notably, the direction of these changes varied, which indicates that the growth response to the war-related conditions was a complex adaptation, reflecting both positive and negative changes in different body parts, rather than a uniform pattern of growth suppression.

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Barker, D. J. P. 1995. “The Fetal and Infant Origins of Disease.” European Journal of Clinical Investigation 25, no. 7: 457–463. 10.1111/j.1365-2362.1995.tb01730.x. PubMed DOI

Blake, J. 1981. “Family Size and the Quality of Children.” Demography 18, no. 4: 421–442. 10.2307/2060941. PubMed DOI

Butaric, L. N. , Nicholas C. L., Kravchuk K., and Maddux S. D.. 2021. “Ontogenetic Variation in Human Nasal Morphology.” Anatomical Record 304, no. 12: 2800–2812. 10.1002/ar.24760. PubMed DOI

Clarkin, P. 2008. “Adiposity and Height of Adult Hmong Refugees: Relationship With War‐Related Early Malnutrition and Later Migration.” American Journal of Human Biology 20, no. 2: 174–184. 10.1002/ajhb.20711. PubMed DOI

Clarkin, P. 2019. “The Embodiment of War: Growth, Development, and Armed Conflict.” Annual Review of Anthropology 48, no. 1: 423–442. 10.1146/annurev-anthro-102218-011208. DOI

Dancause, K. N. , Laplante D. P., Oremus C., Fraser S., Brunet A., and King S.. 2011. “Disaster‐Related Prenatal Maternal Stress Influences Birth Outcomes: Project Ice Storm.” Early Human Development 87, no. 12: 813–820. 10.1016/j.earlhumdev.2011.06.007. PubMed DOI

Entringer, S. , Buss C., and Wadhwa P. D.. 2015. “Prenatal Stress, Development, Health and Disease Risk: A Psychobiological Perspective – 2015 Curt Richter Award Paper.” Psychoneuroendocrinology 62: 366–375. 10.1016/j.psyneuen.2015.08.019. PubMed DOI PMC

Farewell, C. V. , Puma J., Thayer Z. M., and Morton S.. 2021. “Prenatal Stress and Early Childhood Body Mass Index: A Path Analysis Approach.” Maternal and Child Health Journal 25, no. 3: 439–449. 10.1007/s10995-020-03060-9. PubMed DOI

Gluckman, P. D. , Hanson M. A., Cooper C., and Thornburg K. L.. 2008. “Mechanisms of Disease: Effect of in Utero and Early‐Life Conditions on Adult Health and Disease.” New England Journal of Medicine 359, no. 1: 61–73. 10.1056/NEJMra0708473. PubMed DOI PMC

Godfrey, K. M. , and Barker D. J. P.. 2001. “Fetal Programming and Adult Health.” Public Health Nutrition 4, no. 2b: 611–624. 10.1079/PHN2001145. PubMed DOI

Gomula, A. , Nowak‐Szczepanska N., Chakraborty R., Bose K., and Koziel S.. 2022. “Indian Children Exposed to a Natural Disaster In Utero or During Infancy Displayed Smaller Head Dimensions Than Non‐affected Controls.” Acta Paediatrica 111, no. 2: 336–337. 10.1111/apa.16122. PubMed DOI

King, J. C. 2003. “The Risk of Maternal Nutritional Depletion and Poor Outcomes Increases in Early or Closely Spaced Pregnancies.” Journal of Nutrition 133, no. S5: 1732S. 10.1093/jn/133.5.1732S. PubMed DOI

King, S. , Dancause K., Turcotte‐Tremblay A.‐M., Veru F., and Laplante D. P.. 2012. “Using Natural Disasters to Study the Effects of Prenatal Maternal Stress on Child Health and Development: Natural Disasters and Prenatal Maternal Stress.” Birth Defects Research Part C: Embryo Today: Reviews 96, no. 4: 273–288. 10.1002/bdrc.21026. PubMed DOI

Kuzawa, C. W. 2005. “Fetal Origins of Developmental Plasticity: Are Fetal Cues Reliable Predictors of Future Nutritional Environments?” American Journal of Human Biology 17, no. 1: 5–21. 10.1002/ajhb.20096. PubMed DOI

Lazinski, M. J. , Shea A. K., and Steiner M.. 2008. “Effects of Maternal Prenatal Stress on Offspring Development: A Commentary.” Archives of Women's Mental Health 11, no. 5–6: 363–375. 10.1007/s00737-008-0035-4. PubMed DOI

Lederman, S. A. , Rauh V., Weiss L., et al. 2004. “The Effects of the World Trade Center Event on Birth Outcomes Among Term Deliveries at Three Lower Manhattan Hospitals.” Environmental Health Perspectives 112, no. 17: 1772–1778. 10.1289/ehp.7348. PubMed DOI PMC

Leppert, B. , Junge K. M., Röder S., et al. 2018. “Early Maternal Perceived Stress and Children's BMI: Longitudinal Impact and Influencing Factors.” BMC Public Health 18, no. 1: 1211. 10.1186/s12889-018-6110-5. PubMed DOI PMC

Liczbińska, C. Z. , Piontek J., and Malina R. M.. 2017. “Body Size of Young Adult Polish College‐Age Women Born Before, During and After WWII.” American Journal of Human Biology 29, no. 6: e23040. 10.1002/ajhb.23040. PubMed DOI

Liczbińska, G. , Brabec M., Piontek J., and Malina R. M.. 2023. “Age at Menarche, Environmental Stress, and Social Inequality: Evidence From Poland in the 1930s–1950s.” American Journal of Human Biology 35, no. 2: e23817. 10.1002/ajhb.23817. PubMed DOI

Liczbińska, G. , Czapla Z., Piontek J., and Malina R. M.. 2018. “Age at Menarche in Polish University Students Born Before, During and After World War II: Economic Effects.” Economics and Human Biology 28: 23–28. 10.1016/j.ehb.2017.11.004. PubMed DOI

Liczbińska, G. , and Králík M.. 2020. “Body Size at Birth in Babies Born During World War II: The Evidence From Poland.” American Journal of Human Biology 32, no. 6: e23421. 10.1002/ajhb.23421. PubMed DOI

Liczbińska, G. , and Králík M.. 2022. “The Strong Impact of Maternal Marital Status on Birth Body Size Before and During the Second World War in Poznań District, Poland.” American Journal of Human Biology 34, no. 5: e23707. 10.1002/ajhb.23707. PubMed DOI

Liczbińska, G. , and Králík M.. 2023. “Did the Grandmother's Exposure to Environmental Stress During Pregnancy Affect the Birth Body Size of Her Grandchildren? The Polish Evidence.” History of the Family 1–25: 157–181. 10.1080/1081602X.2023.2290027. DOI

Moore, S. E. 2023. “Long‐Term Effects of Food Insecurity and Undernutrition in Early Life.” In Developmental Origins of Health and Disease, edited by Poston L., Godfrey K. M., Gluckman P. D., and Hanson M. A., 2nd ed., 27–37. Cambridge: Cambridge University Press.

Palmeiro‐Silva, Y. K. , Orellana P., Venegas P., et al. 2018. “Effects of Earthquake on Perinatal Outcomes: A Chilean Register‐Based Study.” PLoS One 13, no. 2: e0191340. 10.1371/journal.pone.0191340. PubMed DOI PMC

Ranabir, S. , and Reetu K.. 2011. “Stress and Hormones.” Indian Journal of Endocrinology and Metabolism 15, no. 1: 18–22. 10.4103/2230-8210.77573. PubMed DOI PMC

Schwab, M. , and Rakers F.. 2023. “Long‐Term Effects of Prenatal Maternal Stress and Mental Health.” In Developmental Origins of Health and Disease, edited by Poston L., Hanson M. A., and Cooper C., 2nd ed., 46–55. Cambridge: Cambridge University Press.

Sekajová, Z. , Liczbińska G., Králík M., Čuta M., and Ingrová P.. 2022. “Within‐Family Intergenerational Trends in Age at Menarche Relative to Political Changes in Czechoslovakia After World War II.” American Journal of Human Biology 34, no. 1: e23588. 10.1002/ajhb.23588. PubMed DOI

Silventoinen, K. 2003. “Determinants of Variation in Adult Body Height.” Journal of Biosocial Science 35, no. 2: 263–285. 10.1017/S0021932003002633. PubMed DOI

Wells, J. C. K. 2003. “The Thrifty Phenotype Hypothesis: Thrifty Offspring or Thrifty Mother?” Journal of Theoretical Biology 221, no. 1: 143–161. 10.1006/jtbi.2003.3183. PubMed DOI

Wells, J. C. K. 2011. “Commentary: The Thrifty Phenotype and the Hierarchical Preservation of Tissues Under Stress.” International Journal of Epidemiology 40, no. 1: 133–136. 10.1093/ije/dyq143. PubMed DOI

Wickham, H . 2016. “ggplot2: Elegant Graphics for Data Analysis.” New York: Springer‐Verlag. https://ggplot2.tidyverse.org.

Xiong, X. , Harville E. W., Mattison D. R., Elkind‐Hirsch K., Pridjian G., and Buekens P.. 2008. “Exposure to Hurricane Katrina, Post‐Traumatic Stress Disorder and Birth Outcomes.” American Journal of the Medical Sciences 336, no. 2: 111–115. 10.1097/MAJ.0b013e318180f21c. PubMed DOI PMC

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