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Articles

Determinants of verbal fluency trajectories among older adults from the English Longitudinal Study of Aging

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References

  • Ismail, Z., Elbayoumi, H., Fischer, C. E., Hogan, D. B., Millikin, C. P., Schweizer, T., Mortby, M. E., Smith, E. E., Patten, S. B., & Fiest, K. M. (2017). Prevalence of depression in patients with mild cognitive impairment: A systematic review and meta-analysis. JAMA Psychiatry, 74(1), 58–67. https://doi.org/10.1001/jamapsychiatry.2016.3162
  • Ajman, J. R., Mansur, L. L., & Yassuda, M. S. (2018). Lifestyle patterns as a modifiable risk factor for late-life cognitive decline: A narrative review regarding dementia prevention. Current Aging Science, 11(2), 90–99. https://doi.org/10.2174/1874609811666181003160225
  • Anstey, K. J., Sargent-Cox, K., Garde, E., Cherbuin, N., & Butterworth, P. (2014). Cognitive development over 8 years in midlife and its association with cardiovascular risk factors. Neuropsychology, 28(4), 653–665. https://doi.org/10.1037/neu0000044
  • Boss, L., Kang, D. H., & Branson, S. (2015). Loneliness and cognitive function in the older adult: A systematic review. International Psychogeriatrics, 27(4), 541–553. https://doi.org/10.1017/S1041610214002749
  • Canning, S. J D., Leach, L., Stuss, D., Ngo, L., & Black, S. E. (2004). Diagnostic utility of abbreviated fluency measures in Alzheimer disease and vascular dementia. Neurology, 62 (4), 556–562. https://doi.org/10.1212/WNL.62.4.556
  • Chang, H., Kim, K., Jung, Y. J., & Kato, M. (2017). Effects of acute high-Intensity resistance exercise on cognitive function and oxygenation in prefrontal cortex. Journal of Exercise Nutrition & Biochemistry, 21(2), 1–8. https://doi.org/10.20463/jenb.2017.0012
  • Cobb, J. L., Wolf, P. A., Au, R., White, R., & D’Agostino, R. B. (1995). The effect of education on the incidence of dementia and Alzheimer’s disease in the Framingham Study. Neurology, 45(9), 1707–1712. https://doi.org/10.1212/WNL.45.9.1707
  • Debette, S., Seshadri, S., Beiser, A., Au, R., Himali, J. J., Palumbo, C., Wolf, P. A., & DeCarli, C. (2011). Midlife vascular risk factor exposure accelerates structural brain aging and cognitive decline. Neurology, 77(5), 461–468. https://doi.org/10.1212/WNL.0b013e318227b227
  • Fillit, H., Nash, D. T., Rundek, T., & Zuckerman, A. (2008). Cardiovascular risk factors and dementia. The American Journal of Geriatric Pharmacotherapy, 6(2), 100–118. Junhttps://doi.org/10.1016/j.amjopharm.2008.06.004
  • Gallucci, M., Di Battista, M. E., Battistella, G., Falcone, C., Bisiacchi, P. S., & Di Giorgi, E. (2018). Neuropsychological tools to predict conversion from amnestic mild cognitive impairment to dementia. The TREDEM Registry. Neuropsychology, Development, and Cognition. Section B, Aging, Neuropsychology and Cognition, 25(4), 550–560. https://doi.org/10.1080/13825585.2017.1349869
  • Ganguli, M., Du, Y., Dodge, H. H., Ratcliff, G. G., & Chang, C.-C H. (2006). Depressive symptoms and cognitive decline in late life: A prospective epidemiological study. Archives of General Psychiatry, 63(2), 153–160. https://doi.org/10.1001/archpsyc.63.2.153
  • Harvey, P. D. (2019). Domains of cognition and their assessment. Dialogues in Clinical Neuroscience, 21(3), 227–237. https://doi.org/10.31887/DCNS.2019.21.3/pharvey
  • Jones, B., & Nagin, D. (2013). A note on a stata plugin for estimating group-based trajectory models. Sociological Methods & Research, 42(4), 608–613. https://doi.org/10.1177/0049124113503141
  • Koster, A., Penninx, B. W. J. H., Bosma, H., Kempen, G. I. J. M., Newman, A. B., Rubin, S. M., Satterfield, S., Atkinson, H. H., Ayonayon, H. N., Rosano, C., Yaffe, K., Harris, T. B., Rooks, R. N., Van Eijk, J. T., & Kritchevsky, S. B. (2005). Socioeconomic differences in cognitive decline and the role of biomedical factors. Annals of Epidemiology, 15(8), 564–571. https://doi.org/10.1016/j.annepidem.2005.02.008
  • Lara, E., Miret, M., Sanchez-Niubo, A., Haro, J. M., Koskinen, S., Leonardi, M., Tobiasz- Adamczyk, B., Chatterji, S., & Ayuso-Mateos, J. L. (2021). Episodic memory and verbal fluency tasks: Normative data from nine nationally representative samples. Journal of the International Neuropsychological Society: JINS, 27(1), 10–89. https://doi.org/10.1017/S1355617720000582
  • Lezak, M., Howieson, D., Bigler, E., & Tranel, D. (2012). Neuropsychological assessment. Oxford University Press.
  • Marseglia, A., Dahl Aslan, A. K., Fratiglioni, L., Santoni, G., Pedersen, N. L., & Xu, W. (2018). Cognitive trajectories of older adults with prediabetes and diabetes: A population-based cohort study. The Journals of Gerontology. Series A, Biological Sciences and Medical Sciences, 73(3), 400–406. https://doi.org/10.1093/gerona/glx112
  • McDowell, I., Xi, G., Lindsay, J., & Tierney, M. (2007). Mapping the connections between education and dementia. Journal of Clinical and Experimental Neuropsychology, 29(2), 127–141. https://doi.org/10.1080/13803390600582420
  • Moheet, A., Mangia, S., & Seaquist, E. R. (2015). Impact of diabetes on cognitive function and brain structure. Annals of the New York Academy of Sciences, 1353, 60–71. https://doi.org/10.1111/nyas.12807
  • Nagin, D. S. (2005). Group-based modeling of development. Har-vard University Press.
  • Northey, J. M., Nicolas Cherbuin, N., Kate Louise Pumpa, K. L., Disa Jane Smee, D. J., & Rattray, B. (2018). Exercise interventions for cognitive function in adults older than 50: A systematic review with meta-analysis. British Journal of Sports Medicine, 52(3), 154–160. https://doi.org/10.1136/bjsports-2016-096587
  • Olaya, B., Bobak, M., Haro, J. M., & Demakakos, P. (2017). Trajectories of verbal episodic memory in middle-aged and older adults: Evidence from the English longitudinal study of ageing. Journal of the American Geriatrics Society, 65(6), 1274–1281. https://doi.org/10.1111/jgs.14789
  • Rock, P. L., Roiser, J. P., Riedel, W. J., & Blackwell, A. D. (2014). Cognitive impairment in depression: A systematic review and meta-analysis. Psychological Medicine, 44(10), 2029–2040. Julhttps://doi.org/10.1017/S0033291713002535
  • Rohrer, D., Salmon, D. P., Wixted, J. T., & Paulsen, J. S. (1999). The disparate effects of Alzheimer’s disease and Huntington’s disease on semantic memory. Neuropsychology, 13(3), 381–388. https://doi.org/10.1037/0894-4105.13.3.381
  • Rosser, A., & Hodges, J. R. (1994). Initial letter and semantic categoryfluency in Alzheimer’s disease, Huntington’s disease, and progressive supranuclear palsy. Journal of Neurology, Neurosurgery & Psychiatry, 57(11), 1389–1394. https://doi.org/10.1136/jnnp.57.11.1389
  • Sanchez-Niubo, A., Egea-Cortés, L., Olaya, B., Caballero, F. F., Ayuso-Mateos, J. L., Prina, M., Bobak, M., Arndt, H., Tobiasz-Adamczyk, B., Pająk, A., Leonardi, M., Koupil, I., Panagiotakos, D., Tamosiunas, A., Scherbov, S., Sanderson, W., Koskinen, S., Chatterji, S., & Haro, J. M. (2019). Cohort profile: The Ageing Trajectories of Health - Longitudinal Opportunities and Synergies (ATHLOS) project. International Journal of Epidemiology, 48(4), 1052–103i. https://doi.org/10.1093/ije/dyz077
  • Schmand, B., Smit, J., Lindeboom, J., Smits, C., Hooijer, C., Jonker, C., & Deelman, B. (1997). Low education is a genuine risk factor for accelerated memory decline and dementia. Journal of Clinical Epidemiology, 50(9), 1025–1033. https://doi.org/10.1016/s0895-4356(97)00121-2
  • Schwarz, G. E. (1978). Estimating the dimension of a model. Annals of Statistics, 6 (2), 461–464.
  • Sebaldt, R., Dalziel, W., Massoud, F., Tanguay, A., Ward, R., Thabane, L., Melnyk, P., Landry, P. A., & Lescrauwaet, B. (2009). Detection of cognitive impairment and dementia using the animal fluency test: The DECIDE study. Canadian Journal of Neurological Sciences / Journal Canadien des Sciences Neurologiques, 36(5), 599–604. https://doi.org/10.1017/S0317167100008106
  • Shankar, A., Hamer, M., McMunn, A., & Steptoe, A. (2013). Social isolation and loneliness: Relationships with cognitive function during 4 years of follow-up in the English Longitudinal Study of Ageing. Psychosomatic Medicine, 75(2), 161–170. https://doi.org/10.1097/PSY.0b013e31827f09cd
  • Shao, Z., Janse, E., Visser, K., & Meyer, A. S. (2014). What do verbal fluency tasks measure? Predictors of verbal fluency performance in older adults. Frontiers in Psychology, 5, 772. Published 2014 Jul 22. https://doi.org/10.3389/fpsyg.2014.00772
  • Stern, Y. (2012). Cognitive reserve in ageing and Alzheimer’s disease. Lancet Neurology. 11(11), 1006–1012. https://doi.org/10.1016/S1474-4422(12)70191-6
  • Stuckenschneider, T., Askew, C. D., Rüdiger, S., Polidori, M. C., Abeln, V., Vogt, T., Krome, A., Olde Rikkert, M., Lawlor, B., & Schneider, S., NeuroExercise Study Group (2018). Cardiorespiratory fitness and cognitive function are positively related among participants with mild and subjective cognitive impairment. Journal of Alzheimer’s Disease, 62(4), 1865–1875. https://doi.org/10.3233/JAD-170996
  • Sutin, A. R., Stephan, Y., & Terracciano, A. (2019). Verbal fluency and risk of dementia. International Journal of Geriatric Psychiatry, 34(6), 863–867. https://doi.org/10.1002/gps.5081
  • Terrera, G. M., Brayne, C., & Matthews, F. (2010). One size fits all? Why we need more sophisticated analytical methods in the explanation of trajectories of cognition in older age and their potential risk factors. International Psychogeriatrics, 22(2), 291–299. https://doi.org/10.1017/S1041610209990937
  • White, I. R., & Carlin, J. B. (2010). Bias and efficiency of multiple imputation compared with complete-case analysis for missing covariate values. Statistics in Medicine, 29(28), 2920–2931. https://doi.org/10.1002/sim.3944
  • Yin, J., Lassale, C., Steptoe, A., & Cadar, D. (2019). Exploring the bidirectional associations between loneliness and cognitive functioning over 10 years: The English longitudinal study of ageing. International Journal of Epidemiology, 48(6), 1937–1948. https://doi.org/10.1093/ije/dyz085
  • Zahodne, L. B., Wall, M. M., Schupf, N., Mayeux, R., Manly, J. J., Stern, Y., & Brickman, A. M. (2015). Late-life memory trajectories in relation to incident dementia and regional brain atrophy. Journal of Neurology, 262(11), 2484–2490. https://doi.org/10.1007/s00415-015-7871-8

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