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Articles

Predictors of cognitive stability or decline during aging: A longitudinal study in primary care

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Pages 22-34 | Received 09 Jan 2018, Accepted 11 May 2018, Published online: 05 Sep 2018

References

  • Alagoa João, A., Maroco, J., Ginó, S., Mendes, T., Mendonça, A., & Martins, I. P. (2016). Education modifies the type of subjective memory complaints in older people. International Journal of Geriatric Psychiatry, 31, 153–160. doi:10.1002/gps.4305
  • American Psychiatric Association. (1994). Diagnostic and Statistical Manual of Mental Disorders (DSM-IV) (4th ed.). Washington, DC: American Psychiatric Association.
  • Anstey, K. J., Cherbuin, N., Christensen, H., Burns, R., Reglade-Meslin, C., Salim, A., … Sachdev, P. (2009). Follow-up of mild cognitive impairment and related disorders over 4 years in adults in their sixties: The path through life study. Alzheimer's & Dementia: The Journal of the Alzheimer's Association, 5, e1. doi:10.1016/j.jalz.2009.05.254
  • Arenaza-Urquijo, E. M., Gonneaud, J., Fouquet, M., Perrotin, A., Mézenge, F., Landeau, B., … Chételat, G. (2015). Interaction between years of education and APOE ε4 status on frontal and temporal metabolism. Neurology, 85, 1392–1399. doi:10.1212/WNL.0000000000002034
  • Blacker, D., Lee, H., Muzikansky, A., Martin, E. C., Tanzi, R., McArdle, J. J., … Albert, M. (2007). Neuropsychological measures in normal individuals that predict subsequent cognitive decline. Archives of Neurology, 64, 862–871. doi:10.1001/archneur.64.6.862
  • Blessed, G., Tomlinson, B. E., & Roth, M. (1968). The association between quantitative measures of dementia and of senile change in the cerebral grey matter of elderly subjects. The British Journal of Psychiatry: The Journal of Mental Science, 114, 797–811. doi:10.1192/bjp.114.512.797
  • Brandt, J., Spencer, M., & Folstein, M. (1988). The telephone interview for cognitive status. Neuropsychiatry, Neuropsychology, and Behavioral Neurology, 1, 111–117.
  • Brooks, B. L., Iverson, G. L., Holdnack, J. A., & Feldman, H. H. (2008). Potential for misclassification of mild cognitive impairment: A study of memory scores on the Wechsler Memory Scale-III in healthy older adults. Journal of the International Neuropsychological Society, 14, 463–478. doi:10.1017/S1355617708080521
  • Cavaco, S., Gonçalves, A., Pinto, C., Almeida, E., Gomes, F., Moreira, I., … Teixeira-Pinto, A. (2013). Trail Making Test: Regression-based norms for the Portuguese population. Archives of Clinical Neuropsychology, 28, 189–198. doi:10.1093/arclin/acs115
  • Cavaco, S., Gonçalves, A., Pinto, C., Almeida, E., Gomes, F., Moreira, I., … Teixeira-Pinto, A. (2013). Semantic fluency and phonemic fluency: Regression-based norms for the Portuguese population. Archives of Clinical Neuropsychology, 28, 262–271. doi:10.1093/arclin/act001
  • Chapko, D., McCormack, R., Black, C., Staff, R., & Murray, A. (2017). Life-course determinants of cognitive reserve (CR) in cognitive aging and dementia–a systematic literature review. Aging & Mental Health, 1, 1–2.
  • Chen, Y., Denny, K. G., Harvey, D., Farias, S. T., Mungas, D., DeCarli, C., & Beckett, L. (2017). Progression from normal cognition to mild cognitive impairment in a diverse clinic-based and community-based elderly cohort. Alzheimer's & Dementia: The Journal of the Alzheimer's Association, 13, 399–405. doi:10.1016/j.jalz.2016.07.151
  • Chen, P., Ratcliff, G., Belle, S. H., Cauley, J. A., DeKosky, S. T., & Ganguli, M. (2000). Cognitive tests that best discriminate between presymptomatic AD and those who remain nondemented. Neurology, 55(12), 1847–1853. doi:10.1212/WNL.55.12.1847
  • Cruz-Orduña, I., Bellón, J. M., Torrero, P., Aparicio, E., Sanz, A., Mula, N., … Olazarán, J. (2011). Detecting MCI and dementia in primary care: Efficiency of the MMS, the FAQ and the IQCODE. Family Practice, 29, 401–406.
  • Desikan, R. S., Ségonne, F., Fischl, B., Quinn, B. T., Dickerson, B. C., Blacker, D., … Killiany, R. J. (2006). An automated labeling system for subdividing the human cerebral cortex on MRI scans into gyral based regions of interest. Neuroimage, 31, 968–980. doi:10.1016/j.neuroimage.2006.01.021
  • Edmonds, E. C., Delano-Wood, L., Galasko, D. R., Salmon, D. P., & Bondi, M. W. (2014). Alzheimer’s disease Neuroimaging Initiative. Subjective cognitive complaints contribute to misdiagnosis of mild cognitive impairment. Journal of International Neuropsychology Society, 20, 836–847. doi:10.1017/S135561771400068X
  • Evans Jr. W. A. (1942). An encephalographic ratio for estimating ventricular enlargement and cerebral atrophy. Archives of Neurology and Psychiatry, 47, 931–937. doi:10.1001/archneurpsyc.1942.02290060069004
  • Facal, D., Guàrdia‐Olmos, J., & Juncos‐Rabadán, O. (2014). Diagnostic transitions in mild cognitive impairment by use of simple Markov models. International Journal of Geriatric Psychiatry, 30, 669–676. doi:10.1002/gps.4197
  • Fazekas, F., Kleinert, R., & Offenbacher, H. (1991). The morphologic correlate of incidental punctate white matter hyperintensities on MR images. AJNR American Journal of Neuroradiology, 12, 915–921.
  • Folstein, M. F., Folstein, S. E., & McHugh, P. R. (1975). “Mini-mental state”: A practical method for grading the cognitive state of patients for the clinician. Journal of Psychiatric Research, 12, 189–198. doi:10.1016/0022-3956(75)90026-6
  • Friedman, T. W., Yelland, G. W., & Robinson, S. R. (2012). Subtle cognitive impairment in elders with Mini‐Mental State Examination scores within the ‘normal’ range. International Journal of Geriatric Psychiatry, 27, 463–471. doi:10.1002/gps.2736
  • Gallagher, D., Mhaolain, A. N., Coen, R., Walsh, C., Kilroy, D., Belinski, K., … Lawlor, B. A. (2010). Detecting prodromal Alzheimer’s disease in mild cognitive impairment: Utility of the CAMCOG and other neuropsychological predictors. International Journal of Geriatric Psychiatry, 25, 1280–1287. doi:10.1002/gps.2480
  • Galvin, J. E., Powlishta, K. K., Wilkins, K., McKeel, D. W., Xiong, C., Grant, E., … Morris, J. C. (2005). Predictors of preclinical Alzheimer disease and dementia: A clinicopathologic study. Archives of Neurology, 62, 758–765. doi:10.1001/archneur.62.5.758
  • Ganguli, M., Dodge, H. H., Shen, C., & DeKosky, S. T. (2004). Mild cognitive impairment, amnestic type: An epidemiologic study. Neurology, 63, 115–121. doi:10.1212/01.WNL.0000132523.27540.81
  • Golden, C. J. (1978). Stroop color and word test: A manual for clinical and experimental uses. Chicago, IL: Skoelting.
  • Grober, E., Wakefield, D., Ehrlich, A. R., Mabie, P., & Lipton, R. B. (2017). Identifying memory impairment and early dementia in primary care. Alzheimer's & Dementia: Diagnosis, Assessment & Disease Monitoring, 6, 188–195. doi:10.1016/j.dadm.2017.01.006
  • Guerreiro, M. (1998). Contribution of neuropsychology for the study of dementia (PhD Thesis). Presented to Faculty of Medicine of Lisbon.
  • Habes, M., Erus, G., Toledo, J. B., Zhang, T., Bryan, N., Launer, L. J., … Davatzikos, C. (2016). White matter hyperintensities and imaging patterns of brain ageing in the general population. Brain, 139, 1164–1179. doi:10.1093/brain/aww008
  • Jack, C. R., Knopman, D. S., Jagust, W. J., Petersen, R. C., Weiner, M. W., Aisen, P. S., … Lesnick, T. G. (2013). Tracking pathophysiological processes in Alzheimer's disease: An updated hypothetical model of dynamic biomarkers. The Lancet Neurology, 12, 207–216. doi:10.1016/S1474-4422(12)70291-0
  • Jorm, A. F. (1994). A short form of the Informant Questionnaire on Cognitive Decline in the Elderly (IQCODE): Development and cross-validation. Psychological Medicine, 24, 145–153. doi:10.1017/S003329170002691X
  • Jorm, A. F., & Jacomb, P. A. (1989). The Informant Questionnaire on Cognitive Decline in the Elderly (IQCODE): Socio-demographic correlates, reliability, validity and some norms. Psychological Medicine, 19, 1015–1022. doi:10.1017/S0033291700005742
  • Juncos‐Rabadán, O., Pereiro, A. X., Facal, D., Lojo, C., Caamaño, J. A., … Eiroa, P. (2014). Prevalence and correlates of mild cognitive impairment in adults aged over 50 years with subjective cognitive complaints in primary care centers. Geriatrics & Gerontology International, 14, 667–673. doi:10.1111/ggi.12157
  • Koivisto, K., Reinikainen, K. J., Hanninen, T., Vanhanen, M., Helkala, E. L., Mykkanen, L., … Riekkinen, P. J. (1995). Prevalence of age-associated memory impairment in a randomly selected population from eastern Finland. Neurology, 45, 741–747. doi:10.1212/WNL.45.4.741
  • Larner, A. J. (2013). Comparing diagnostic accuracy of cognitive screening instruments: A weighted comparison approach. Dementia and Geriatric Cognitive Disorders Extra, 3, 60–65. doi:10.1159/000348623
  • Lawton, M. P., & Brody, E. M. (1969). Assessment of older people: Self-maintaining and instrumental activities of daily living. The Gerontologist, 9, 179–186. doi:10.1093/geront/9.3_Part_1.179
  • Leung, K. K., Bartlett, J. W., Barnes, J., Manning, E. N., Ourselin, S., Fox, N. C. & Alzheimer's Disease Neuroimaging Initiative. (2013). Cerebral atrophy in mild cognitive impairment and Alzheimer disease Rates and acceleration. Neurology, 80, 648–654. doi:10.1212/WNL.0b013e318281ccd3
  • Libon, D. J., Mattson, R. E., Glosser, G., Kaplan, E., Malamut, B. L., Sands, L. P., … Cloud, B. S. (1996). A nine-word dementia version of the California Verbal Learning Test. The Clinical Neuropsychologist, 10, 237–244. doi:10.1080/13854049608406686
  • Livingston, G., Sommerlad, A., Orgeta, V., Costafreda, S. G., Huntley, J., Ames, D., … Cooper, C. (2017). Dementia prevention, intervention, and care. The Lancet, 390, 2673–2734.
  • Löppönen, M., Räihä, I., Isoaho, R., Vahlberg, T., & Kivelä, S. L. (2003). Diagnosing cognitive impairment and dementia in primary health care–a more active approach is needed. Age and Ageing, 32, 606–612. doi:10.1093/ageing/afg097
  • Luck, T., Luppa, M., Briel, S., & Riedel-Heller, S. G. (2010). Incidence of mild cognitive impairment: A systematic review. Dementia and Geriatric Cognitive Disorders, 29, 164–175. doi:10.1159/000272424
  • Luck, T., Riedel-Heller, S. G., Kaduszkiewicz, H., Bickel, H., Jessen, F., Pentzek, M., … Weyerer, S. (2007). Mild cognitive impairment in general practice: Age-specific prevalence and correlate results from the German study on ageing, cognition and dementia in primary care patients (AgeCoDe). Dementia and Geriatric Cognitive Disorders, 24, 307–316. doi:10.1159/000108099
  • Malpetti, M., Ballarini, T., Presotto, L., Garibotto, V., Tettamanti, M., & Perani, D. (2017). Gender differences in healthy aging and Alzheimer's Dementia: A 18F‐FDG‐PET study of brain and cognitive reserve. Human Brain Mapping, 38, 4212–4227. doi:10.1002/hbm.23659
  • Martins, I. P., Maruta, C., Silva, C., Rodrigues, P., Chester, C., Ginó, S., … Oliveira, A. G. (2012). The effect of education on age-related changes in three cognitive domains: a cross-sectional study in primary care. Applied Neuropsychology: Adult, 19, 287–298. doi:10.1080/09084282.2012.670145
  • Morley, J. E., Morris, J. C., Berg-Weger, M., Borson, S., Carpenter, B. D., del Campo, N., … Ganguli, M. (2015). Brain health: The importance of recognizing cognitive impairment: An IAGG consensus conference. Journal of the American Medical Directors Association, 16, 731–739. doi:10.1016/j.jamda.2015.06.017
  • Morris, M. C., Tangney, C. C., Wang, Y., Sacks, F. M., Barnes, L. L., Bennett, D. A., & Aggarwal, N. T. (2015). MIND diet slows cognitive decline with aging. Alzheimer's & Dementia, 11, 1015–1022. doi:10.1016/j.jalz.2015.04.011
  • Olazarán, J., Torrero, P., Cruz, I., Aparicio, E., Sanz, A., Mula, N., … Begué, C. (2011). Mild cognitive impairment and dementia in primary care: the value of medical history. Family Practice, 28, 385–392. doi:10.1093/fampra/cmr005
  • Oveisgharan, S., & Hachinski, V. (2010). Hypertension, executive dysfunction, and progression to dementia: The Canadian study of health and aging. Archives of Neurology, 67, 187–192.
  • Petersen, R. C. (2004). Mild cognitive impairment as a diagnostic entity. Journal of Internal Medicine, 256, 183–194. doi:10.1111/j.1365-2796.2004.01388.x
  • Petersen, R. C., Caracciolo, B., Brayne, C., Gauthier, S., Jelic, V., & Fratiglioni, L. (2014). Mild cognitive impairment: A concept in evolution. Journal of Internal Medicine, 275, 214–228. doi:10.1111/joim.12190
  • Prince, M., Comas-Herrera, A., Knapp, M., Guerchet, M., & Karagiannidou, M. (2016). World Alzheimer report 2016: Improving healthcare for people living with dementia: Coverage, quality and costs now and in the future. Alzheimer’s disease International, London.
  • Reitan, R. (1958). Validity of the Trail Making Test as an indicator of organic brain damage. Perceptual and Motor Skills, 8, 271–276. doi:10.2466/pms.1958.8.3.271
  • Roberts, R. O., Geda, Y. E., Knopman, D. S., Cha, R. H., Pankratz, V. S., Boeve, B. F., … Petersen, R. C. (2012). The incidence of MCI differs by subtype and is higher in men The Mayo Clinic Study of Aging. Neurology, 78, 342–351. doi:10.1212/WNL.0b013e3182452862
  • Roberts, R. O., Knopman, D. S., Mielke, M. M., Cha, R. H., Pankratz, V. S., Christianson, T. J. H., … Petersen, R. C. (2014). Higher risk of progression to dementia in mild cognitive impairment cases who revert to normal. Neurology, 82, 317–325. doi:10.1212/WNL.0000000000000055
  • Sachdev, P. S., Lipnicki, D. M., Crawford, J., Reppermund, S., Kochan, N. A., Trollor, J. N., … Lux, O. (2013). Factors predicting reversion from mild cognitive impairment to normal cognitive functioning: A population-based study. PLoS One, 8, e59649. doi:10.1371/journal.pone.0059649
  • Sachdev, P. S., Lipnicki, D. M., Kochan, N. A. et al., (2015). The prevalence of mild cognitive impairment in diverse geographical and ethnocultural regions: the COSMIC Collaboration. PLoS ONE, 10(11), e0142388.
  • Salthouse, T. A., Atkinson, T. M., & Berish, D. E. (2003). Executive functioning as a potential mediator of age-related cognitive decline in normal adults. Journal of Experimental Psychology: General, 132, 566. doi:10.1037/0096-3445.132.4.566
  • Santos, N. C., Costa, P. S., Cunha, P., Cotter, J., Sampaio, A., Zihl, J., … Sousa, N. (2013). Mood is a key determinant of cognitive performance in community-dwelling older adults: A cross-sectional analysis. Age, 35, 1983–1993. doi:10.1007/s11357-012-9482-y
  • Scheltens, P. H., Leys, D., Barkhof, F., Huglo, D., Weinstein, H. C., Vermersch, P., … Valk, J. (1992). Atrophy of medial temporal lobes on MRI in “probable” Alzheimer's disease and normal ageing: Diagnostic value and neuropsychological correlates. Journal of Neurology, Neurosurgery & Psychiatry, 55, 967–972. doi:10.1136/jnnp.55.10.967
  • Schmand, B., Jonker, C., Geerlings, M. I., & Lindeboom, J. (1997). Subjective memory complaints in the elderly: Depressive symptoms and future dementia. British Journal of Psychiatry, 171, 373–376. doi:10.1192/bjp.171.4.373
  • Schroeter, M. L., Vogt, B., Frisch, S., Becker, G., Barthel, H., Mueller, K., … Sabri, O. (2012). Executive deficits are related to the inferior frontal junction in early dementia. Brain, 135, 201–215.
  • Shaik, M. A., Chan, Q. L., Xu, J., Xu, X., Hui, R. J., Chong, S. S., … Dong, Y. (2016). Risk factors of cognitive impairment and brief cognitive tests to predict cognitive performance determined by a formal neuropsychological evaluation of primary health care patients. Journal of the American Medical Directors Association, 17, 343–347. doi:10.1016/j.jamda.2015.12.007
  • Stroop, J. R. (1935). Studies of interference in serial verbal reaction. Journal of Experimental Psychology, 18, 643–662. doi:10.1037/h0054651
  • Tabert, M. H., Manly, J. J., Liu, X., Pelton, G. H., Rosenblum, S., Jacobs, M., … Devanand, D. P. (2006). Neuropsychological prediction of conversion to Alzheimer disease in patients with mild cognitive impairment. Archives of General Psychiatry, 63, 916–924. doi:10.1001/archpsyc.63.8.916
  • Valcour, V. G., Masaki, K. H., Curb, J. D., & Blanchette, P. L. (2000). The detection of dementia in the primary care setting. Archives of Internal Medicine, 160, 2964–2968. doi:10.1001/archinte.160.19.2964
  • Vemuri, P., Lesnick, T. G., Przybelski, S. A., Machulda, M., Knopman, D. S., Mielke, M. M., … Jack, C. R. (2014). Association of lifetime intellectual enrichment with cognitive decline in the older population. JAMA Neurology, 71, 1017–1024. doi:10.1001/jamaneurol.2014.963
  • Wahlund, L. O., Barkhof, F., Fazekas, F., Bronge, L., Augustin, M., Sjögren, M., … Scheltens, P. (2001). A new rating scale for age-related white matter changes applicable to MRI and CT. Stroke, 32, 1318–1322. doi:10.1161/01.STR.32.6.1318
  • Wechsler, D. (1997a). Wechsler adult intelligence scale – III. San Antonio: The Psychological Corporation.
  • Wechsler, D. (1997b). Wechsler memory scale. Third edition manual. San Antonio: The Psychological Corporation.
  • Wechsler, D. (2011). WASI: Wechsler abbreviated scale of intelligence. San Antonio, TX: Psychological Corporation.
  • Willey, J. Z., Gardener, H., Caunca, M. R., Moon, Y. P., Dong, C., Cheung, Y. K., … Wright, C. B. (2016). Leisure-time physical activity associates with cognitive decline The Northern Manhattan Study. Neurology, 86, 1897–1903.
  • Yesavage, J. A., Brink, T. L., Rose, T. L., Lum, O., Huang, V., Adey, M., & Leirer, V. O. (1982). Development and validation of a geriatric depression screening scale: A preliminary report. Journal of Psychiatry Research, 17, 37–49.
  • Zheng, G., Xia, R., Zhou, W., Tao, J., & Chen, L. (2016). Aerobic exercise ameliorates cognitive function in older adults with mild cognitive impairment: A systematic review and meta-analysis of randomized controlled trials. British Journal of Sports Medicine, 50, 1443–1450.

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