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Chapter 25 - Dementia in women

from Section 5 - Psychotic disorders in women

Published online by Cambridge University Press:  05 March 2016

David J. Castle
Affiliation:
University of Melbourne
Kathryn M. Abel
Affiliation:
University of Manchester
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Publisher: Cambridge University Press
Print publication year: 2016

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References

Accolla, E., Caputo, E., Cogiamanian, F., et al. (2007). Gender differences in patients with Parkinson’s disease treated with subthalamic deep brain stimulation. Movement Disorders, 22, 11501156.Google Scholar
Ahlskog, J. E., Geda, Y. E., Graff-Radford, N. R., et al. (2011). Physical exercise as a preventive or disease-modifying treatment dementia and brain aging. Mayo Clinic Proceedings, 86, 876884.Google Scholar
Alexopoulos, G. S., Meyers, B. S., Young, R. C., et al., (1997). “Vascular depression” hypothesis. Archives of General Psychiatry, 54, 915922. doi:10.1001/archpsyc.1997.01830220033006.Google Scholar
Almela, M., Hidalgo, V., Villada, C., et al. (2011). Salivary alpha-amylase response to acute psychosocial stress: The impact of age. Biological Psychology, 87, 421429. doi: 10.1016/j.biopsycho.2011.05.008.Google Scholar
Alzheimer’s Association. (2011). Alzheimer’s Association report: 2011 Alzheimer’s disease facts and figures. Alzheimer’s & Dementia, 7, 208244.Google Scholar
Alzheimer Disease International. (2013). The Global Impact of Dementia 2013-2050. www.alz.co.uk/research/GlobalImpactDementia2013.pdf.Google Scholar
Baker, L. D., Frank, L. L., Foster-Schubert, K., et al. (2010). Effects of aerobic exercise on mild cognitive impairment: A controlled trial. Archives of Neurology, 67, 7179.Google Scholar
Barnes, D. E., Yaffe, K. and Byers, A. L. (2012). Midlife vs. late-life depressive symptoms and risk of dementia: Differential effects for Alzheimer disease and vascular dementia. Archives of General Psychiatry, 69, 493498. doi:10.1001/archgenpsychiatry.2011.1481.Google ScholarPubMed
Beeri, M. S., Rapp, M., Schmeidler, J., et al. (2009). Number of children is associated with neuropathology of Alzheimer’s disease in women. Neurobiology of Aging, 30(8), 11841191.Google Scholar
Bernardi, L., Frangipane, F., Smirne, N., et al. (2012). Epidemiology and genetics of frontotemporal dementia: a door-to-door survey in southern Italy. Neurobiology of Aging, 33, 2948.e12948.e10. doi: 10.1016/j.neurobiolaging.2012.06.017. Epub Jul 20, 2012.CrossRefGoogle ScholarPubMed
Bishara, D. and Harwood, D. (2014). Safe prescribing of physical health medication in patients with dementia. International Journal of Geriatric Psychiatry, Aug 4. doi: 10.1002/gps.4163. [Epub ahead of print].Google Scholar
Bjørnarå, K. A., Dietrichs, E. and Toft, M. (2013). REM sleep behavior disorder in Parkinson’s disease–is there a gender difference? Parkinsonism and Related Disorders, 19, 120122. doi: 10.1016/j.parkreldis.2012.05.027.Google Scholar
Brown, S. L., Smith, D. M., Schulz, R., et al. (2009). Caregiving behavior is associated with decreased mortality risk. Psychological Science, 20, 488494. doi: 10.1111/j.1467-9280.2009.02323.x. Epub Mar 20, 2009.Google Scholar
Butters, M. A., Whyte, E. M., Nebes, R. D., et al. (2004). The nature and determinants of neuropsychological functioning in late-life depression. Archives of General Psychiatry, 61, 587595. doi:10.1001/archpsyc.61.6.587.Google Scholar
Capistrant, D. B., Moon, J. R., Berkman, L. F., et al. (2011). Current and long-term spousal caregiving and onset of cardiovascular disease. Journal of Epidemiology and Community Health, 66, 951956. doi:10.1136/jech-2011-200040.CrossRefGoogle ScholarPubMed
Chapman, B. P., Duberstein, P. R., Sörensen, S., et al. (2007). Gender differences in five factor model personality traits in an elderly cohort: Extension of robust and surprising findings to an older generation. Personality and Individual Differences, 43, 15941603.Google Scholar
Colucci, M., Cammarata, S., Assini, A., et al. (2006). The number of pregnancies is a risk factor for Alzheimer’s disease. European Journal of Neurology, 13, 13741347.CrossRefGoogle ScholarPubMed
Corbo, R. M., Gambina, G., Ulizzi, L., et al. (2007). Combined effect of apolipoprotein e genotype and past fertility on age at onset of Alzheimer’s disease in women. Dementia and Geriatric Cognitive Disorders, 24, 8285.Google Scholar
Costa, P., Terracciano, A. and McCrae, R. R. (2001). Gender differences in personality traits across cultures: Robust and surprising findings. Journal of Personality and Social Psychology, 81(2), 322331.Google Scholar
Cupidi, C., Realmuto, S., Lo Coco, G., et al. (2012). Sleep quality in caregivers of patients with Alzheimer’s disease and Parkinson’s disease and its relationship to quality of life. International Psychogeriatrics, 24, 18271835.CrossRefGoogle ScholarPubMed
Espeland, M.A., Tindle, H.A., Bushnell, C.A., et al. (2009). Brain volumes, cognitive impairment, and conjugated equine estrogens. Journal of Gerontology: Biological Sciences, 64, 12431250.Google ScholarPubMed
Ferri, C.P., Prince, M., Brayne, C., et al. (2005). Global prevalence of dementia: a Delphi consensus study. The Lancet, 366, 2112–112L.CrossRefGoogle ScholarPubMed
Fredman, L., Cauley, J. A., Hochberg, M., et al. (2010). Mortality associated with caregiving, general stress, and caregiving-related stress in elderly women: results of caregiver-study of osteoporotic fractures. Journal of the American Geriatrics Society, 58, 937943. doi: 10.1111/j.1532-5415.2010.02808.x. Epub Mar 30, 2010.Google Scholar
Gao, S., Hendrie, H. C., Hall, K. S., et al. (1998). The relationships between age, sex, and the incidence of dementia and Alzheimer disease: a meta-analysis. Archives of General Psychiatry, 55, 809815.Google Scholar
Gilberti, N., Turla, M., Alberici, A., et al. (2012). Prevalence of frontotemporal lobar degeneration in an isolated population: the Vallecamonica study. Neurological Sciences, 33, 899904. doi: 10.1007/s10072-011-0865-0.CrossRefGoogle Scholar
Glisky, E. L. (2007). Changes in cognitive function in human aging. In Brain Aging: Models, Methods and Mechanisms. Edited by Riddle, D. R. Boca Raton, FL: CRC Press.Google Scholar
Grady, D., Herrington, D., Bittner, V., et al. (2002). Cardiovascular disease outcomes during 6.8 years of hormone therapy. JAMA, 288, 4957.Google Scholar
Haaxma, C.A., Bloem, B.R., Borm, G.F., et al. (2007). Gender differences in Parkinson’s disease. Journal of Neurological and Neurosurgical Psychiatry, 78, 819824.Google Scholar
Håkansson, K., Rovio, S., Helkala, E.L., et al. (2009). Association between mid-life marital status and cognitive function in later life: Population based cohort study. British Medical Journal, 339, b2462. doi: 10.1136/bmj.b2462.Google Scholar
Haro, J. M., Kahle-Wrobleski, K., Bruno, G., et al. (2014). Analysis of burden in caregivers of people with Alzheimer’s disease using self-report and supervision hours. Journal of Nutrition, Health, & Aging, 18, 677684. doi: 10.1007/s12603-014-0036-0.Google Scholar
Hogervorst, E., Williams, J., Budge, M., et al. (2000). The nature of the effect of female gonadal hormone replacement therapy on cognitive function in post-menopausal women: a meta-analysis. Neuroscience, 101, 485512.Google Scholar
Hughes, T. F., Andel, R., Small, B. J., et al. (2010). See comment in PubMed Commons belowMidlife fruit and vegetable consumption and risk of dementia in later life in Swedish twins. American Journal of Geriatric Psychiatry, 18, 413420. doi: 10.1097/JGP.0b013e3181c65250.Google Scholar
Ito, K., Corrigan, B., Zhao, Q., et al. (2011). Disease progression model for cognitive deterioration from Alzheimer’s Disease Neuroimaging Initiative database. Alzheimer’s and Dementia, 7, 151160. doi: 10.1016/j.jalz.2010.03.018.Google Scholar
Jellinger, K. A. (2013). Pathology and pathogenesis of vascular cognitive impairment-a critical update. Frontiers in Aging and Neuroscience, 5, 17. doi: 10.3389/fnagi.2013.00017.Google Scholar
Johansson, L., Guo, X., Waern, M., et al. (2010). Midlife psychological stress and risk of dementia: A 35-year longitudinal population study. Brain, 133(Pt 8), 22172224. doi: 10.1093/brain/awq116.CrossRefGoogle ScholarPubMed
Kalaria, R. N., Maestre, G. E. Arizaga, R., et al. (2008). Alzheimer’s disease and vascular dementia in developing countries: Prevalence, management, and risk factors. Lancet Neurology, 7, 812826.Google Scholar
Katz, M. J., Lipton, R. B., Hall, C. B., et al. (2012). Age-specific and sex-specific prevalence and incidence of mild cognitive impairment, dementia, and Alzheimer dementia in blacks and whites: a report from the Einstein Aging Study. Alzheimer Disease and Associated Disorders, 26, 335343. doi: 10.1097/WAD.0b013e31823dbcfc.Google Scholar
Kiecolt-Glaser, J. K., Glaser, R., Gravenstein, S., et al. (1996). Chronic stress alters the immune response to influenza virus vaccine in older adults. Proceedings of the National Academy of Science, 93, 30433047.Google Scholar
Kiecolt-Glaser, J. K., Marucha, P. T., Malarkey, W. B., et al. (1995). Slowing of wound healing by psychological stress. Lancet, 346, 11941196.CrossRefGoogle ScholarPubMed
LeBlanc, E. S., Janowsky, J., Chan, B.K.S., et al. (2001). Hormone replacement therapy and cognition: Systematic review and metaanalysis. JAMA, 285, 14891499.Google Scholar
Lehmann, S. W., Black, B. S., Shore, A., et al. (2010). Living alone with dementia: lack of awareness adds to functional and cognitive vulnerabilities. International Psychogeriatrics, 22, 778784. doi: 10.1017/S1041610209991529Google Scholar
Lethaby, A., Hogervorst, E., Richards, M., et al. (2008). Hormone replacement therapy for cognitive function in postmenopausal women. Cochrane Database Systematic Reviews, 1: CD003122. doi: 10.1002/14651858.CD003122.pub2.Google Scholar
Lövheim, H., Sandman, P. O., Karlsson, S., et al. (2009). Sex differences in the prevalence of behavioral and psychological symptoms of dementia. International Psychogeriatrics, 21, 469475.Google Scholar
Lupien, S. J., Fiocco, A., Wan, N., et al. (2005). Stress hormones and human memory function across the lifespan. Psychoneuroendocrinology, 30, 225242.Google Scholar
Lynn, R. and Martin, T. (1997). Gender differences in extraversion, neuroticism, and psychoticism in 37 nations. The Journal of Social Psychology, 137, 369373.Google Scholar
Majic, T., Pluta, J. P., Mell, T., et al. (2012). Correlates of agitation and depression in nursing home residents with dementia. International Psychogeriatrics, 24, 17791789.Google Scholar
Mitchell, A. J., Meader, N. and Pentzek, M. (2011). Clinical recognition of dementia and cognitive impairment in primary care: A meta-analysis of physician accuracy. Acta Psychiatry Scandanavia, 124, 165183.CrossRefGoogle ScholarPubMed
Munro, C. A. (2014). Sex differences in Alzheimer’s disease risk: Are we looking at the wrong hormones? International Psychogeriatrics, 26,15791584. doi:10.1017/S1041610214001549Google Scholar
National Alliance for Caregiving (2009). Caregiving in the U.S. Retrieved November 2, 2010, from www.caregiving.org/data/Caregiving_in_the_US_2009_full_report.pdf.Google Scholar
Nehen, N-G. and Hermann, D. M. (2014). Supporting dementia patients and their caregivers in daily life challenges: review of physical, cognitive, and psychosocial rehabilitation studies. European Journal of Neurology, Aug 7. doi: 10.1111/ene.12535. [Epub ahead of print]Google Scholar
Nelson, P. T., Jicha, G. A., Kryscio, R. J., et al. (2010). Low sensitivity in clinical diagnoses of dementia with Lewy bodies. Journal of Neurology, 257(3), 359366.Google Scholar
Noale, M., Limongi, F., Zambon, S., et al. (2013). Incidence of dementia: evidence for an effect modification by gender. The ILSA Study. International Psychogeriatrics, 25, 18671876. doi: 10.1007/s00415-010-5630-4.CrossRefGoogle ScholarPubMed
Oda, H., Yamamoto, Y. and Maeda, K. (2009). Neurospsychological profile of dementia with Lewy bodies. Psychogeriatrics, 9, 8590.Google Scholar
Onyike, C. U. and Diehl-Schmid, J. (2013). The epidemiology of frontotemporal dementia. International Review of Psychiatry, 25, 130137. doi: 10.3109/09540261.2013.776523.Google Scholar
Ott, B. R., Tate, C. A., Gordon, N. M., et al. (1996). Gender differences in the behavioral manifestations of Alzheimer’s disease. Journal of the American Geriatrics Society, 44, 583587.Google Scholar
Otte, C., Hart, S., Neylan, T. C., et al. (2005). A meta-analysis of cortisol response to challenge in human aging: importance of gender. Psychoneuroendocrinology, 30, 8091.Google Scholar
Ownby, R. L., Crocco, E., Acevedo, A., et al. (2006). Depression and risk for Alzheimer disease: Systematic review, meta-analysis, and metaregression analysis. Archives of General Psychiatry, 63, 530538.Google Scholar
Ozekmekçi, S., Apaydin, H. and Kiliç, E. (2005). Clinical features of 35 patients with Parkinson’s disease displaying REM behavior disorder. Clinical Neurology and Neurosurgery, 107, 306309.Google Scholar
Perez, F., Helmer, C., Dartigues, J. F., et al. (2010). A 15-year population-based cohort study of the incidence of Parkinson’s disease and dementia with Lewy bodies in an elderly French cohort. Journal of Neurological and Neurosurgical Psychiatry, 81, 742746. doi:10.1136/jnnp.2009.189142.Google Scholar
Petersen, R. C., Roberts, R. O., Knopman, D. S., et al. (2010). Prevalence of mild cognitive impairment is higher in men: The Mayo Clinic Study of Aging. Neurology, 75, 889897. doi: 10.1212/WNL.0b013e3181f11d85.Google Scholar
Phung, T. K., Waltoft, B. L., Laursen, T. M., et al. (2010). Hysterectomy, oophorectomy and risk of dementia: a nationwide historical cohort study. Dementia and Geriatric Cognitive Disorders, 30, 4350. doi: 10.1159/000314681.Google Scholar
Pinquart, M. and Sörensen, S. (2011). Spouses, adult children, and children-in-law as caregivers of older adults: A meta-analytic comparison. Psychology and Aging, 26, 114.CrossRefGoogle ScholarPubMed
Plassman, B. L., Langa, K. M., Fisher, G. G., et al. (2007). Prevalence of dementia in the United States: The aging, demographics, and memory Study. Neuroepidemiology, 29, 125132.Google Scholar
Prince, M., Bryce, R., Albanese, E., et al. (2013). The global prevalence of dementia: A systematic review and metaanalysis. Alzheimer’s & Dementia, 9, 6375.Google Scholar
Pringsheim, T., Jette, N., Frolkis, A., et al. (2014). The prevalence of Parkinson disease: A systematic review and meta-analysis. Movement Disorders, Jun 28. doi: 10.1002/mds.25945. [Epub ahead of print].Google Scholar
Ratnavalli, E., Brayne, C., Dawson, K., et al. (2002). The prevalence of frontotemporal dementia. Neurology, 58, 16151621.Google Scholar
Rocca, W. A., Grossardt, B. R., Shuster, L. T., et al. (2012). Hysterectomy, oophorectomy, estrogen, and the risk of dementia. Neurodegenerative Disorders, 10, 175178. doi: 10.1159/000334764.Google Scholar
Rosenberg, P. B., Mielke, M. M., Xue, Q. L., et al. (2010). Depressive symptoms predict incident cognitive impairment in cognitive healthy older women. American Journal of Geriatric Psychiatry, 18, 204211. doi: 10.1097/JGP.0b013e3181c53487.Google Scholar
Russ, T. C., Stamatakis, E., Hamer, M., et al. (2013). Socioeconomic status as a risk factor for dementia death: Individual participant meta-analysis of 86 508 women and men from the UK. British Journal of Psychiatry, 203, 1017. doi: 10.1192/bjp.bp.112.119479.Google Scholar
Sachdev, P. S., Lipnicki, D. M., Crawford, J., et al. (2012). Risk profiles for mild cognitive impairment vary by age and xex: The Sydney Memory and Ageing Study. The American Journal of Geriatric Psychiatry, 20(10), 854865. doi:10.1097/JGP.0b013e31825461b0.Google Scholar
Satz, P. (1993). Brain reserve capacity on symptom onset after brain injury: A formulation and review of evidence for threshold theory. Neuropsychology, 7, 273295.Google Scholar
Savica, R., Grossardt, B. R., Bower, J. H., et al. (2013). Incidence of dementia with Lewy bodies and Parkinson disease dementia. JAMA Neurology, 70, 13961402. doi: 10.1001/jamaneurol.2013.3579.Google Scholar
Schulz, R., Newsom, J., Mittelmark, M., et al. (1997). Health effects of caregiving: The Caregiver Health Effects Study: An ancillary study of The Cardiovascular Health Study. Annals of Behavioral Medicine, 19, 110116.Google Scholar
Schulz, R. and Beach, S. R. (1999). Caregiving as a risk factor for mortality. JAMA, 282, 22152219.Google Scholar
Shao, H., Breitner, J. C., Whitmer, R. A., et al. (2012). Hormone therapy and Alzheimer disease dementia: New findings from the Cache County Study. Neurology, 79, 18461852. doi: 10.1212/WNL.0b013e318271f823.Google Scholar
Shumaker, S. A., Legault, C., Rapp, S., et al. (2003). Estrogen plus progestin and the incidence of dementia and mild cognitive impairment in postmenopausal women: The women’s health initiative memory study: A randomized controlled trial. JAMA, 289, 26512662. doi:10.1001/jama.289.20.2651.Google Scholar
Sobow, T. and Kloszewska, I. (2004). Parity, number of pregnancies, and the age of onset of Alzheimer’s disease. Journal of Neuropsychiatry and Clinical Neurosciences, 16(1), 120121.Google Scholar
Steinberg, M., Corcoran, C., Tschanz, J. T., et al. (2006). Risk factors for neuropsychiatric symptoms in dementia: the Cache County Study. International Journal of Geriatric Psychiatry, 21, 824830.Google Scholar
Takahashi, T., Ikeda, K., Ishikawa, M., et al. (2004). Social stress-induced cortisol elevation acutely impairs social memory in humans. Neuroscience Letters, 363, 125130.Google Scholar
Terracciano, A., Sutin, A. R., An, Y., O’Brien, R. J., Ferrucci, L., Zonderman, A. B. and Resnick, S. M. (2014). Personality and risk of Alzheimer’s disease: New data and meta-analysis. Alzheimer’s and Dementia, 10(2), 179186. doi: 10.1016/j.jalz.2013.03.002.Google Scholar
Twelves, D., Perkins, K.S.M. and Counsell, C. (2003). Systematic review of incidence studies of Parkinson’s disease. Movement Disorders, 18, 1931.Google Scholar
Valcour, V. G., Masaki, K. H., Curb, J. D., et al. (2000). The detection of dementia in the primary care setting. Archives of Internal Medicine, 160, 29642968. doi:10.1001/archinte.160.19.2964.Google Scholar
Vercambre, M. N., Grodstein, F., Manson, J. E., et al. (2011). Physical activity and cognition in women with vascular conditions. Archives of Internal Medicine, 171, 12581259.Google Scholar
Vidarsdottir, H., Fang, F., Chang, M., et al. (2014). Spousal loss and cognitive function in later life: A 25-year follow-up in the AGES-Reykjavik Study. American Journal of Epidemiology, 179, 674683.Google Scholar
Wassertheil-Smoller, S., Hendrix, S., Limacher, M., et al. (2003). Effect of estrogen plus progestin on stroke in postmenopausal women: The Women’s Health Initiative: A randomized trial. JAMA, 289, 26732684. doi:10.1001/jama.289.20.2673.Google Scholar
Weisman, D. and McKeith, I. (2007). Dementia with Lewy bodies. Seminars in Neurology, 27, 4247.Google Scholar
Whitmer, R. A., Quesenberry, C. P., Zhou, J., et al. (2011). Timing of hormone therapy and dementia: the critical window theory revisited. Annals of Neurology, 69, 163169. doi: 10.1002/ana.22239. Epub Nov 12, 2010.Google Scholar
Wolf, O. T., Schommer, N. C., Hellhammer, D. H., et al. (2001). The relationship between stress-induced cortisol levels and memory differs between women and men. Psychoneuroendocrinology, 26, 711720.Google Scholar
Wolf, O. T., Kudielka, B. M., Hellhammer, D. H., et al. (1998). Opposing effects of DHEA replacement in elderly subjects on declarative memory and attention after exposure to a laboratory stressor. Psychoneuroendocrinology, 23, 617629.Google Scholar
Writing Group for the Women’s Health Initiative Investigators (2002). Risks and benefits of estrogen plus progestin in healthy postmenopausal women: Principal results from the Women’s Health Initiative randomized controlled trial. JAMA, 288, 321333.Google Scholar
Xing, Y., Wei, C., Chu, C., et al. (2012). Stage-specific gender differences in cognitive and neuropsychiatric manifestations of vascular dementia. American Journal of Alzheimer’s Disease and Other Dementias, 27, 433438. doi: 10.1177/1533317512454712.Google Scholar

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