Christopher W. Kuzawa

Affiliations: 
Anthropology Northwestern University, Evanston, IL 
Area:
Physical Anthropology, Human Development
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"Christopher Kuzawa"
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Publications

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Kim AW, Adam EK, Bechayda SA, et al. (2020) Early life stress and HPA axis function independently predict adult depressive symptoms in metropolitan Cebu, Philippines. American Journal of Physical Anthropology. e24105
Kuzawa CW, Adair L, Bechayda SA, et al. (2020) Evolutionary life history theory as an organising framework for cohort studies: insights from the Cebu Longitudinal Health and Nutrition Survey. Annals of Human Biology. 47: 94-105
Ryan CP, Kuzawa CW. (2020) Germline epigenetic inheritance: Challenges and opportunities for linking human paternal experience with offspring biology and health. Evolutionary Anthropology
Thayer ZM, Rutherford J, Kuzawa CW. (2020) The Maternal Nutritional Buffering Model: an evolutionary framework for pregnancy nutritional intervention. Evolution, Medicine, and Public Health. 2020: 14-27
Kuzawa CW. (2020) Pregnancy as an intergenerational conduit of adversity: how nutritional and psychosocial stressors reflect different historical timescales of maternal experience Current Opinion in Behavioral Sciences. 36: 42-47
Eisenberg DTA, Rej PH, Duazo P, et al. (2019) Testing for paternal influences on offspring telomere length in a human cohort in the Philippines. American Journal of Physical Anthropology
Rutherford JN, Victoria A deMartelly, Ragsdale HB, et al. (2019) Global population variation in placental size and structure: Evidence from Cebu, Philippines. Placenta. 85: 40-48
Masterson EE, Hayes MG, Kuzawa CW, et al. (2019) Early life growth and adult telomere length in a Filipino cohort study. American Journal of Human Biology : the Official Journal of the Human Biology Council. e23299
McDade TW, Kuzawa CW, Borja J, et al. (2019) Profiles of gene expression in maternal blood predict offspring birth weight in normal pregnancy. Journal of Developmental Origins of Health and Disease. 1-7
Eisenberg DTA, Lee NR, Rej PH, et al. (2019) Older paternal ages and grandpaternal ages at conception predict longer telomeres in human descendants. Proceedings. Biological Sciences. 286: 20190800
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