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Chapter 8 - Incorporating Culture into Biological Psychology Courses

from Biological Connections

Published online by Cambridge University Press:  30 March 2018

Kenneth D. Keith
Affiliation:
University of San Diego
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Summary

The role of culture in shaping our biology and physiology could be an organizing theme for a biological psychology class. One of the most important developments in our modern conception of brain function is an appreciation of the plasticity of the nervous system and its sensitivity to experience. There are compelling reasons for integration of culture in the biological psychology course, and research has illuminated numerous cases of cultural influence on evolution and selection for alleles of genes that confer an advantage to individuals in particular cultures. The author presents a variety of topics illustrating the gene-culture intersection, and suggests a number of class projects and activities to aid in teaching.
Type
Chapter
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Culture across the Curriculum
A Psychology Teacher's Handbook
, pp. 179 - 205
Publisher: Cambridge University Press
Print publication year: 2018

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References

Adams, R. B., Rule, N. O., Franklin, R. J., Wang, E., Stevenson, M. T., Yoshikawa, S., … Ambady, N. (2010). Cross-cultural reading the mind in the eyes: An fMRI investigation. Journal of Cognitive Neuroscience, 22, 97108. doi:10.1162/jocn.2009.21187Google Scholar
Ambady, N., & Bharucha, J. (2009). Culture and the brain. Current Directions in Psychological Science, 18, 342345. doi:10.1111/j.1467-8721.2009.01664.xCrossRefGoogle Scholar
Benowitz, N., Perez-Stable, E., Herrera, B., & Jacob, P. (2002). Slower metabolism and reduced intake of nicotine from cigarette smoking in Chinese-Americans. Journal of the National Cancer Institute, 94, 108115. doi:10.1093/jnci/94.2.108Google Scholar
Cao, F., Brennan, C., & Booth, J. R. (2015). The brain adapts to orthography with experience: Evidence from English and Chinese. Developmental Science, 18, 785798. doi:10.1111/desc.12245Google Scholar
Caspi, A., Sugden, K., Moffitt, T. E., Taylor, A., Craig, I. W., Harrington, H., … Poulton, R. (2003). Influence of life stress on depression: Moderation by a polymorphism in the 5-HTT gene. Science, 301(5631), 386389. doi:10.1126/science.1083968CrossRefGoogle ScholarPubMed
Chen, C. C., Lu, R. B., Chen, Y. C., Wang, M. F., Chang, Y. C., Li, T. K., & Yin, S. J. (1999). Interaction between the functional polymorphisms of the alcohol metabolism genes in protection against alcoholism. American Journal of Human Genetics, 65, 795807. doi:10.1086/302540Google Scholar
Chen, C. C., & Yin, S. (2008). Alcohol abuse and related factors in Asia. International Review of Psychiatry, 20, 425433. doi:10.1080/09540260802344075CrossRefGoogle ScholarPubMed
Cheon, B. K., Im, D., Harada, T., Kim, J., Mathur, V. A., Scimeca, J. M., … Chiao, J. Y. (2011). Cultural influences on neural basis of intergroup empathy. Neuroimage, 57, 642650. doi:10.1016/j.neuroimage.2011.04.031Google Scholar
Chiang, J. J., Saphire-Bernstein, S., Kim, H. S., Sherman, D. K., & Taylor, S. E. (2012). Cultural differences in the link between supportive relationships and proinflammatory cytokines. Social Psychological and Personality Science, 4, 511520. doi:10.1177/1948550612467831CrossRefGoogle Scholar
Chiao, J. Y. (2009). Cultural neuroscience: A once and future discipline. Progress in Brain Research, 178, 287304. doi:10.1016/S0079-6123(09)17821-4Google Scholar
Chiao, J. Y., & Blizinsky, K. (2010). Culture-Gene coevolution of individualism collectivism and the serotonin transporter gene. Proceedings: Biological Sciences, 277(1681), 529537. doi:10.1098/rspb.2009.1650Google ScholarPubMed
Chiao, J. Y., Harada, T., Komeda, H., Li, Z., Mano, Y., Saito, D., … Iidaka, T. (2010). Dynamic cultural influences on neural representations of the self. Journal of Cognitive Neuroscience, 22, 111. doi:10.1162/jocn.2009.21192Google Scholar
Chiao, J. Y., Iidaka, T., Gordon, H. L., Nogawa, J., Bar, M., Aminoff, E., … Ambady, N. (2008). Cultural specificity in amygdala response to fear faces. Journal of Cognitive Neuroscience, 20, 21672174. doi:10.1162/jocn.2008.20151CrossRefGoogle ScholarPubMed
Chiao, J. Y., Li, S., Seligman, R., & Turner, R. (2016). The Oxford handbook of cultural neuroscience. New York, NY: Oxford University Press.Google Scholar
Chou, T., Chen, C., Fan, L., Chen, S., & Booth, J. R. (2009). Testing for a cultural influence on reading for meaning in the developing brain: The neural basis of semantic processing in Chinese children. Frontiers in Human Neuroscience, 3, 19. doi:10.3389/neuro.09.027.2009Google Scholar
Crinion, J. T., Green, D. W., Chung, R., Ali, N., Grogan, A., Price, G. R., … Price, C. J. (2009). Neuroanatomical markers of speaking Chinese. Human Brain Mapping, 30, 41084115. doi:10.1002/hbm.20832Google Scholar
Diamond, J. (2003). The double puzzle of diabetes. Nature, 423, 599602. doi:10.1038/423599aCrossRefGoogle ScholarPubMed
Durham, W. H. (1991). Coevolution: Genes, culture, and human diversity. Stanford, CA: Stanford University Press.Google Scholar
Fincher, C., Thornhill, R., Murray, D., & Schaller, M. (2008). Pathogen prevalence predicts human cross-cultural variability in individualism/collectivism. Proceedings: Biological Sciences, 275(1640), 12791285. doi:10.1098/rspb.2008.0094Google ScholarPubMed
Flaskerud, J. H. (2015). The cultures of sleep. Issues in Mental Health Nursing, 36, 10131016. doi:10.3109/01612840.2014.978960CrossRefGoogle ScholarPubMed
Freeman, J. B., Rule, N. O., Adams, R. J., & Ambady, N. (2009). Culture shapes a mesolimbic response to signals of dominance and subordination that associates with behavior. Neuroimage, 47, 353359. doi:10.1016/j.neuroimage.2009.04.038Google Scholar
Gerbault, P., Liebert, A., Itan, Y., Powell, A., Currat, M., Burger, J., … Thomas, M. (2011). Evolution of lactase persistence: An example of human niche construction. Philosophical Transactions: Biological Sciences, 366(1566), 863877. doi:10.1098/rstb.2010.0268CrossRefGoogle ScholarPubMed
Goh, J. O., Chee, M. W., Tan, J. C., Venkatraman, V., Hebrank, A., Leshikar, E. D., … Park, D. C. (2007). Age and culture modulate object processing and object-science binding in the ventral visual area. Cognitive, Affective & Behavioral Neuroscience, 7, 4452. doi:10.3758/CABN.7.1.44Google Scholar
Goh, J. O., & Park, D. (2009). Culture sculpts the perceptual brain. Progress in Brain Research, 178, 95111. doi:10.1016/S0079-6123Google Scholar
Goh, J. S., Leshikar, E. D., Sutton, B. P., Tan, J. C., Sim, S. Y., Hebrank, A. C., & Park, D. C. (2010). Culture differences in neural processing of faces and houses in the ventral visual cortex. Social Cognitive and Affective Neuroscience, 5, 227235. doi:10.1093/scan/nsq060Google Scholar
Gould, S. J. (1977). Ever since Darwin: Reflections in natural history. New York, NY: Norton.Google Scholar
Gutchess, A. H., & Huff, S. (2016). Cross-cultural differences in memory. In Chiao, J. Y., Li, S., Seligman, R., Turner, R., Chiao, J. Y., Li, S., … Turner, R. (Eds.), The Oxford handbook of cultural neuroscience (pp. 155169). New York, NY: Oxford University Press.Google Scholar
Gutchess, A. H., Welsh, R. C., Boduroğlu, A., & Park, D. C. (2006). Cultural differences in neural function associated with object processing. Cognitive, Affective & Behavioral Neuroscience, 6, 102109. doi:10.3758/CABN.6.2.102Google Scholar
Han, S., & Northoff, G. (2008). Culture-sensitive neural substrates of human cognition: A transcultural neuroimaging approach. Nature Reviews Neuroscience, 9, 646654. doi:10.1038/nrn2456Google Scholar
Hedden, T., Ketay, S., Aron, A., Markus, H. R., & Gabrieli, J. E. (2008). Cultural influences on neural substrates of attentional control. Psychological Science, 19, 1217. doi:10.1111/j.1467-9280.2008.02038.xGoogle Scholar
Imperato-McGinley, J., Guerrero, L., Gautier, T., & Peterson, R. (1974). Steroid 5α-reductase deficiency in man: An inherited form of male pseudohermaphroditism. Science, 186, 12131215. doi:10.1126/science.186.4170.1213Google Scholar
Imperato-McGinley, J., Peterson, R., Gautier, T., & Sturla, E. (1979). Androgens and the evolution of male-gender identity among male pseudohermaphrodites with 5α-reductase deficiency. New England Journal of Medicine, 300, 12331237. doi:10.1056/NEJM197905313002201Google Scholar
Jenkins, L. J., Yang, Y., Goh, J., Hong, Y., & Park, D. C. (2010). Cultural differences in the lateral occipital complex while viewing incongruent scenes. Social Cognitive and Affective Neuroscience, 5, 236241. doi:10.1093/scan/nsp056CrossRefGoogle ScholarPubMed
Keith, K. D. (2013). The encyclopedia of cross-cultural psychology, Vols. 1–3. Chichester: Wiley-Blackwell. doi:10.1002/9781118339893CrossRefGoogle Scholar
Kim, H. S., Sherman, D. K., Mojaverian, T., Sasaki, J. Y., Park, J., Suh, E. M., & Taylor, S. E. (2011). Gene–culture interaction: Oxytocin receptor polymorphism (OXTR) and emotion regulation. Social Psychological and Personality Science, 2, 665672. doi:10.1177/1948550611405854CrossRefGoogle Scholar
Kim, H. S., Sherman, D. K., Sasaki, J. Y., Xu, J., Chu, T. Q., Ryu, C., … Taylor, S. E. (2010). Culture, distress, and oxytocin receptor polymorphism (OXTR) interact to influence emotional support seeking. PNAS Proceedings of the National Academy of Sciences of the United States Of America, 107, 1571715721. doi:10.1073/pnas.1010830107Google Scholar
Kitayama, S., Duffy, S., Kawamura, T., & Larsen, J. T. (2003). Perceiving an object and its context in different cultures: A cultural look at new look. Psychological Science, 14, 201206. doi:10.1111/1467-9280.02432Google Scholar
Kobayashi, C., Glover, G. H., & Temple, E. (2006). Cultural and linguistic influence on neural bases of “theory of mind”: An fMRI study with Japanese bilinguals. Brain and Language, 98, 210220. doi:10.1016/j.bandl.2006.04.013Google Scholar
Kobayashi, C., Glover, G. H., & Temple, E. (2007). Cultural and linguistic effects on neural bases of “theory of mind” in American and Japanese children. Brain Research, 1164, 95107. doi:10.1016/j.brainres.2007.06.022Google Scholar
LeClair, J., Sasaki, J., Ishii, K., Shinada, M., & Kim, H. (2016). Gene–culture interaction: Influence of culture and oxytocin receptor gene (OXTR) polymorphism on loneliness. Culture and Brain, 4, 2137. doi:10.1007/s40167-016-0034-7Google Scholar
LeDoux, J. E. (1996). The emotional brain: The mysterious underpinnings of emotional life. New York, NY: Simon & Schuster.Google Scholar
Lidaka, T., & Harada, T. (2016). Cultural values modulate emotional processing in human amygdala. In Chiao, J. Y., Li, S., Seligman, R., Turner, R., Chiao, J. Y., Li, S., … Turner, R. (Eds.), The Oxford handbook of cultural neuroscience (pp. 107120). New York, NY: Oxford University Press.Google Scholar
Liu, P., Rigoulot, S., & Pell, M. D. (2015). Culture modulates the brain response to human expressions of emotion: Electrophysiological evidence. Neuropsychologia, 67, 113. doi:10.1016/j.neuropsychologia.2014.11.034Google Scholar
Lin, K., Smith, M. W., & Ortiz, V. (2001). Culture and psychopharmacology. Psychiatric Clinics of North America, 24, 523538. doi:10.1016/S0193-953X(05)70245-8Google Scholar
Maguire, E. A., Intraub, H., & Mullally, S. L. (2016). Scenes, spaces, and memory traces: What does the hippocampus do? Neuroscientist, 22, 432439. doi:10.1177/1073858415600389CrossRefGoogle Scholar
Maguire, E. A., Woollett, K., & Spiers, H. J. (2006). London taxi drivers and bus drivers: A structural MRI and neuropsychological analysis. Hippocampus, 16, 10911101. doi:10.1002/hipo.20233Google Scholar
Matsushita, S., & Higuchi, S. (2017). Use of Asian samples in genetic research of alcohol use disorders: Genetic variation of alcohol metabolizing enzymes and the effects of acetaldehyde. American Journal on Addictions, 26, 469476. doi:10.1111/ajad.12477Google Scholar
Neel, J. V. (1962). Diabetes mellitus: A “thrifty” genotype rendered detrimental by “progress”? American Journal of Human Genetics, 14, 353362.Google Scholar
Nomura, M. (2016). Genes, brain, and culture through a 5-HTT lens. In Chiao, J. Y., Li, S., Seligman, R., Turner, R., Chiao, J. Y., Li, S., … Turner, R. (Eds.), The Oxford handbook of cultural neuroscience (pp. 121128). New York, NY: Oxford University Press.Google Scholar
O’Brien, M., & Laland, K. (2012). Genes, culture, and agriculture: An example of human niche construction. Current Anthropology, 53, 434470. doi:10.1086/666585Google Scholar
Park, D. C., & Huang, C. (2010). Culture wires the brain: A cognitive neuroscience perspective. Perspectives on Psychological Science, 5, 391400. doi:10.1177/1745691610374591Google Scholar
Paulesu, E., Démonet, J., Fazio, F., McCrory, E., Chanoine, V., Brunswick, N., … Frith, U. (2001). Dyslexia: Cultural diversity and biological unity. Science, 291(5511), 21652167. doi:10.1126/science.1057179CrossRefGoogle ScholarPubMed
Peng, G., Wang, M., Chen, C., Luu, S., Chou, H., Li, T., & Yin, S. (1999). Involvement of acetaldehyde for full protection against alcoholism by homozygosity of the variant allele f mitochondrial aldehyde dehydrogenase gene in Asians. Pharmacogenetics, 9, 463476.Google Scholar
Pornpattananangkul, N., Hariri, A. R., Harada, T., Mano, Y., Komeda, H., Parrish, T. B., … Chiao, J. Y. (2016). Cultural influences on neural basis of inhibitory control. Neuroimage, 139, 114126. doi:10.1016/j.neuroimage.2016.05.061CrossRefGoogle ScholarPubMed
Pratto, F., Sidanius, J., Stallworth, L. M., & Malle, B. F. (1994). Social dominance orientation: A personality variable predicting social and political attitudes. Journal of Personality and Social Psychology, 67, 741763. doi:10.1037/0022-3514.67.4.741CrossRefGoogle Scholar
Ross, M., & Wang, Q. (2010). Why we remember and what we remember: Culture and autobiographical memory. Perspectives on Psychological Science, 5, 401409. doi:10.1177/1745691610375555Google Scholar
Rule, N. O. (2014). Cultural Neuroscience: A historical introduction and overview. Online Readings in Psychology and Culture, 9. dx.doi.org/10.9707/2307-0919.1128Google Scholar
Rule, N. O., Freeman, J. B., & Ambady, N. (2013). Culture in social neuroscience: A review. Social Neuroscience, 8, 310. doi:10.1080/17470919.2012.695293Google Scholar
Sasaki, J. Y., LeClair, J., West, A. L., & Kim, H. S. (2016). The gene-culture interaction framework and implications for health. In Chiao, J. Y., Li, S., Seligman, R., Turner, R., Chiao, J. Y., Li, S., … Turner, R. (Eds.), The Oxford handbook of cultural neuroscience (pp. 279297). New York, NY: Oxford University Press.Google Scholar
Sasanuma, S. (1974). Impairment of written language in Japanese aphasics: Kana versus Kanji Processing. Journal of Chinese Linguistics, 2(2), 141158. Retrieved from www.jstor.org/stable/23752907Google Scholar
Sasanuma, S. (1975). Kana and kanji processing in Japanese aphasics. Brain and Language, 2(3), 369383. doi:10.1016/S0093-934X(75)80077-0CrossRefGoogle ScholarPubMed
Siok, W. T., Perfetti, C. A., Jin, Z., & Tan, L. H. (2004). Biological abnormality of impaired reading is constrained by culture. Nature, 431(7004), 7176. doi:10.1038/nature02865Google Scholar
Sivadas, E., Bruvold, N. T., & Nelson, M. R. (2008). A reduced version of the horizontal and vertical individualism and collectivism scale: A four-country assessment. Journal of Business Research, 61, 201210. doi:10.1016/j.jbusres.2007.06.016Google Scholar
Triandis, H. C., & Gelfand, M. J. (1998). Converging measurement of horizontal and vertical individualism and collectivism. Journal of Personality and Social Psychology, 74, 118128. doi:10.1037/0022-3514.74.1.118Google Scholar
Tweed, R. G., White, K., & Lehman, D. R. (2004). Culture, stress, and coping: Internally- and externally-targeted control strategies of European Canadians, East Asian Canadians, and Japanese. Journal of Cross-Cultural Psychology, 35, 652668. doi:10.1177/0022022104270109Google Scholar
Valencia, M., Weh, J., Nelson, R., Esparza, J., Schulz, L., Ravussin, E. & Bennett, P. (2005). Impact of lifestyle on prevalence of kidney disease in Pima Indians in Mexico and the United States. Kidney International, 68, S141S144. doi:10.1111/j.1523-1755.2005.09724.xCrossRefGoogle Scholar
Watters, E. (2010). Crazy like us: The globalization of the American psyche. New York, NY: Free Press.Google Scholar
Yetish, G., Kaplan, H., Gurven, M., Pontzer, H., Manger, P. R., Wilson, C., … Seigel, J. M. (2015). Natural sleep and its seasonal variations in three pre-industrial societies. Current Biology, 25, 28622868. doi:10.1016/j.cub.2015.09.046CrossRefGoogle ScholarPubMed
Zhu, Y., Zhang, L., Fan, J., & Han, S. (2007). Neural basis of cultural influence on self-representation. Neuroimage, 34, 13101316. doi:10.1016/j.neuroimage.2006.08.047Google Scholar

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