Читаем В здравом уме и твердой памяти. Программа профилактики болезни Альцгеймера полностью

Wang, J., et al. “Moderate consumption of Cabernet Sauvignon attenuates Abeta neuropathology in a mouse model of Alzheimer’s disease.” FASEB J 20 (2006): 2313–20.

Eskelinen, M. H., and M. Kivipelto. “Caffeine as a protective factor in dementia and Alzheimer’s disease.” J Alzheimers Dis 20, Suppl 1 (2010): S167–74.

Chen, X., et al. “Caffeine protects against disruptions of the blood-brain barrier in animal models of Alzheimer’s and Parkinson’s diseases. J Alzheimers Dis 20m Suppl 1 (2010): S127–41.

Tapsell, L. C., et al. “Health benefits of herbs and spices: the past, the present, the future.” Med J Aust 185 (2006): S4–24.

Adapted from U.S. Department of Agriculture, Agriculture Research Service. “Oxygen Radical Absorbance Capacity (ORAC) of Selected Foods, Release 2.” May 2010. http://www.ars.usda.gov/Services/docs.htm?docid=15866. ORAC units in the table were adjusted to amounts corresponding to _ ounce of each spice rather than the 3_ ounces indicated in the original experiment.

Chonpathompikunlert, P., et al. “Piperine, the main alkaloid of Thai black pepper, protects against neurodegeneration and cognitive impairment in animal model of cognitive deficit like condition of Alzheimer’s disease. Food Chem Toxicol 48 (2010): 798–802.

Banerjee, T. K., et al. “Cognitive dysfunction in an urban Indian population – some observations.” Neuroepidemiology 31 (2008): 109–14.

Cole, G. M., et al. “Neuroprotective effects of curcumin.” Adv Exp Med Biol 595 2007: 197–212.

Ng, T. P., et al. “Curry consumption and cognitive function in the elderly.” Am J Epidemiol 164 (2006): 898–906.

Gomez-Pinilla, F. “Brain foods: The effects of nutrients on brain function.” Nature Reviews 9 (2008): 568–78.

Глава 6

Hall, C. B., et al. “Cognitive activities delay onset of memory decline in persons who develop dementia.” Neurology 73 (2009): 356–61.

Akbaraly, T. N., et al. “Leisure activities and the risk of dementia in the elderly: Results from the Three-City Study.” Neurology. 73 (2009): 854–61.

Lachman, M. E., et al. “Frequent cognitive activity compensates for education differences in episodic memory.” Am J Geriatr Psychiatry 18 (2010): 4–10.

Eriksson, P. S., et al. “Neurogenesis in the adult human hippocampus.” Nat Med 4 (1998): 1313–17.

Voineskos, A. N., et al. “The brain-derived neurotrophic factor val66met polymorphism and prediction of neural risk for Alzheimer disease.” Arch Gen Psychiatry 68 (2011): 198–206.

Erickson, K. I., et al. “Exercise training increases size of hippocampus and improves memory.” Proc Natl Acad Sci USA 108 (2011): 3017–22.

Hariri, A. R., et al. “Brain-derived neurotrophic factor val66met polymorphism affects human memory-related hippocampal activity and predicts memory performance.” J Neurosci 23 (2003): 6690–94.

Moody, T. D., et al. “Neural activity patterns in older adults following Internet training.” Society for Neuroscience, 2009.

Small, G. W., et al. “Effects of a 14-day healthy longevity lifestyle program on cognition and brain function.” Am J Geriatr Psychiatry 14 (2006): 538–45.

Haier. R. J., et al: “Regional glucose metabolic changes after learning a complex visuospatial/ motor task: A positron emission tomographic study.” Brain Res 570 (1992): 134–43

Hall, C. B., et al. “Cognitive activities delay onset of memory decline in persons who develop dementia.” Neurology 73 (2009): 356–61.

Akbaraly, T. N., et al. “Leisure activities and the risk of dementia in the elderly: Results from the Three-City Study.” Neurology 73 (2009): 854–61.

Gage, F. H. “Neurogenesis in the adult brain.” J Neurosci 22 (2002): 612–13.

Lachman, M. E., et al. “Frequent cognitive activity compensates for education differences in episodic memory.” Am J Geriatr Psychiatry. 18 (2010): 4–10.

Moody, T. D… et al. “Neural activity patterns in older adults following Internet training.” Society for Neuroscience, 2009.

Jaeggi, S. M., et al. “Improving fluid intelligence with training on working memory.” Proc Natl Acad Sci USA 105 (2008): 6829–33.

Bartzokis, G., et al. “Apolipoprotein E genotype and age-related myelin breakdown in healthy individuals: implications for cognitive decline and dementia.” Arch Gen Psychiatry 63 (2006): 63–72.

Cabeza, R., et al. “Aging gracefully: compensatory brain activity in high-performing older adults.” Neuroimage 17 (2002): 1394–402.

Ybarra, O., et al. “Mental exercising through simple socializing: social interaction promotes general cognitive functioning.” Pers Soc Psychol Bull 34 (2008): 248–59.

Wilson, R. S., et al. “Loneliness and risk of Alzheimer disease.” Arch Gen Psychiatry 64 (2007): 234–40.

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