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Published in: Neurological Sciences 8/2021

01-08-2021 | Neurological Digression

Why is delirium more frequent in the elderly?

Author: Orso Bugiani

Published in: Neurological Sciences | Issue 8/2021

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Abstract

An aging-related reduction in the brain’s functional reserve may explain why delirium is more frequent in the elderly than in younger people insofar as the reserve becomes inadequate to cover the metabolic requirements that are critically increased by stressors. The aim of this paper is to review the normal aging-related changes that theoretically compromise complex mental activities, neuronal and synaptic densities, and the neurocomputational flexibility of the functional reserve. A pivotal factor is diminished connectivity, which is substantially due to the loss of synapses and should specifically affect association systems and cholinergic fibres in delirious patients. However, micro-angiopathy with impaired blood flow autoregulation, increased blood/brain barrier permeability, changes in cerebrospinal fluid dynamics, weakened mitochondrial performance, and a pro-inflammatory involution of the immune system may also jointly affect neurons and their synaptic assets, and even cause the progression of delirium to dementia regardless of the presence of co-existing plaques, tangles, or other pathological markers. On the other hand, the developmental growth in functional reserve during childhood and adolescence makes the brain increasingly resistant to delirium, and residual reserve can allow the elderly to recover. These data support the view that functional reserve is the variable that confronts stressors and governs the risk and intensity of and recovery from delirium. Although people of any age are at risk of delirium, the elderly are at greater risk because aging and age-dependent structural changes inevitably affect the brain’s functional reserve.
Literature
1.
go back to reference Speciale S, Bellelli G, Turco R, Trabucchi M (2006) Il delirium: marker dell’evoluzione clinica di un anziano fragile affetto da patologia acuta? G Gerontol 54:28–40 Speciale S, Bellelli G, Turco R, Trabucchi M (2006) Il delirium: marker dell’evoluzione clinica di un anziano fragile affetto da patologia acuta? G Gerontol 54:28–40
3.
go back to reference Bugiani O (2020) Deciphering delirium through semantics. A selective synopsis. Neurol Sci 42:2147–2151PubMedCrossRef Bugiani O (2020) Deciphering delirium through semantics. A selective synopsis. Neurol Sci 42:2147–2151PubMedCrossRef
4.
go back to reference Maldonado JR (2018) Delirium pathophysiology: an updated hypothesis of the aetiology of acute brain failure. Int J Geriatr Psychiatry 33:1428–1457PubMedCrossRef Maldonado JR (2018) Delirium pathophysiology: an updated hypothesis of the aetiology of acute brain failure. Int J Geriatr Psychiatry 33:1428–1457PubMedCrossRef
6.
go back to reference Pandharipande PP, Girard TD, Jackson JC, Morandi A, Thompson JL, Pun BT, Brummel NE, Hughes CG, Vasilevskis EE, Shintani AK, Moons KG, Geevarghese SK, Canonico A, Hopkins RO, Bernard GR, Dittus RS, Ely EW, BRAIN-ICU Study Investigators (2013) Long-term cognitive impairment after critical illness. N Engl J Med 369:1306–1316PubMedPubMedCentralCrossRef Pandharipande PP, Girard TD, Jackson JC, Morandi A, Thompson JL, Pun BT, Brummel NE, Hughes CG, Vasilevskis EE, Shintani AK, Moons KG, Geevarghese SK, Canonico A, Hopkins RO, Bernard GR, Dittus RS, Ely EW, BRAIN-ICU Study Investigators (2013) Long-term cognitive impairment after critical illness. N Engl J Med 369:1306–1316PubMedPubMedCentralCrossRef
8.
go back to reference Oh ES, Akeju O, Avidan MS, Cunningham C, Hayden KM, Jones RN, Khachaturian AS, Khan BA, Marcantonio ER, Needham DM, Neufeld KJ, Rose L, Spence J, Tieges Z, Vlisides P, Inouye SK, NIDUS Writing Group (2020) A roadmap to advance delirium research: recommendations from the NIDUS Scientific Think Tank. Alzheimers Dement 16:726–733PubMedPubMedCentralCrossRef Oh ES, Akeju O, Avidan MS, Cunningham C, Hayden KM, Jones RN, Khachaturian AS, Khan BA, Marcantonio ER, Needham DM, Neufeld KJ, Rose L, Spence J, Tieges Z, Vlisides P, Inouye SK, NIDUS Writing Group (2020) A roadmap to advance delirium research: recommendations from the NIDUS Scientific Think Tank. Alzheimers Dement 16:726–733PubMedPubMedCentralCrossRef
9.
11.
go back to reference Valenzuela MJ (2008) Brain reserve and the prevention of dementia. Curr Opin Psychiatry 21:296–302PubMedCrossRef Valenzuela MJ (2008) Brain reserve and the prevention of dementia. Curr Opin Psychiatry 21:296–302PubMedCrossRef
12.
go back to reference Gray DT, Barnes CA (2015) Distinguishing adaptive plasticity from vulnerability in the aging hippocampus. Neuroscience 309:17–28PubMedCrossRef Gray DT, Barnes CA (2015) Distinguishing adaptive plasticity from vulnerability in the aging hippocampus. Neuroscience 309:17–28PubMedCrossRef
13.
go back to reference Shafi MM, Santarnecchi E, Fong TG, Jones RN, Marcantonio ER, Pascual-Leone A, Inouye SK (2017) Advancing the neurophysiological understanding of delirium. J Am Geriatr Soc 65:1114–1118PubMedPubMedCentralCrossRef Shafi MM, Santarnecchi E, Fong TG, Jones RN, Marcantonio ER, Pascual-Leone A, Inouye SK (2017) Advancing the neurophysiological understanding of delirium. J Am Geriatr Soc 65:1114–1118PubMedPubMedCentralCrossRef
14.
go back to reference Taffett GE (2006) Physiology of aging. In: Cassel CK (ed) Geriatric medicine: an evidence-based approach, 4th edn. Springer, New York, pp 27–35 Taffett GE (2006) Physiology of aging. In: Cassel CK (ed) Geriatric medicine: an evidence-based approach, 4th edn. Springer, New York, pp 27–35
15.
go back to reference Resnick NM (1994) Geriatric medicine. In: Isselbacher KJ, Braunwald E (eds) Harrison’s principles of internal medicine, 13th edn. McGraw-Hill, New York, pp 30–36 Resnick NM (1994) Geriatric medicine. In: Isselbacher KJ, Braunwald E (eds) Harrison’s principles of internal medicine, 13th edn. McGraw-Hill, New York, pp 30–36
16.
go back to reference Troncale JA (1996) The aging process. Physiologic changes and pharmacologic implications. Postgrad Med 99(111-114):120–122 Troncale JA (1996) The aging process. Physiologic changes and pharmacologic implications. Postgrad Med 99(111-114):120–122
17.
go back to reference van Montfort SJ, van Dellen E, van den Bosch AM, Otte WM, Schutte MJ, Choi SH, Chung TS, Kyeong S, Slooter AJ, Kim JJ (2018) Resting-state fMRI reveals network disintegration during delirium. Neuroimage Clin 20:35–41PubMedPubMedCentralCrossRef van Montfort SJ, van Dellen E, van den Bosch AM, Otte WM, Schutte MJ, Choi SH, Chung TS, Kyeong S, Slooter AJ, Kim JJ (2018) Resting-state fMRI reveals network disintegration during delirium. Neuroimage Clin 20:35–41PubMedPubMedCentralCrossRef
20.
go back to reference Maldonado JR (2013) Neuropathogenesis of delirium: review of current etiologic theories and common pathways. Am J Geriatr Psychiatry 21:1190–1222PubMedCrossRef Maldonado JR (2013) Neuropathogenesis of delirium: review of current etiologic theories and common pathways. Am J Geriatr Psychiatry 21:1190–1222PubMedCrossRef
21.
go back to reference Wang Y, Shen X (2018) Postoperative delirium in the elderly: the potential neuropathogenesis. Aging Clin Exp Res 30:1287–1295PubMedCrossRef Wang Y, Shen X (2018) Postoperative delirium in the elderly: the potential neuropathogenesis. Aging Clin Exp Res 30:1287–1295PubMedCrossRef
22.
go back to reference Inouye SK, Charpentier PA (1996) Precipitating factors for delirium in hospitalized elderly persons. Predictive model and interrelationship with baseline vulnerability JAMA 275:852–857PubMed Inouye SK, Charpentier PA (1996) Precipitating factors for delirium in hospitalized elderly persons. Predictive model and interrelationship with baseline vulnerability JAMA 275:852–857PubMed
23.
go back to reference Fotenos AF, Mintun MA, Snyder AZ, Morris JC, Buckner RL (2008) Brain volume decline in aging: evidence for a relation between socioeconomic status, preclinical Alzheimer disease, and reserve. Arch Neurol 65:113–120PubMedCrossRef Fotenos AF, Mintun MA, Snyder AZ, Morris JC, Buckner RL (2008) Brain volume decline in aging: evidence for a relation between socioeconomic status, preclinical Alzheimer disease, and reserve. Arch Neurol 65:113–120PubMedCrossRef
24.
go back to reference Good CD, Johnsrude IS, Ashburner J, Henson RN, Friston KJ, Frackoviak RS (2001) A voxel-based morphometric study of ageing in 465 normal adult human brains. Neuroimage 14:21–36PubMedCrossRef Good CD, Johnsrude IS, Ashburner J, Henson RN, Friston KJ, Frackoviak RS (2001) A voxel-based morphometric study of ageing in 465 normal adult human brains. Neuroimage 14:21–36PubMedCrossRef
25.
go back to reference Coleman PD, Flood DG (1987) Neuron numbers and dendritic extent in normal aging and Alzheimer’s disease. Neurobiol Aging 8:521–545PubMedCrossRef Coleman PD, Flood DG (1987) Neuron numbers and dendritic extent in normal aging and Alzheimer’s disease. Neurobiol Aging 8:521–545PubMedCrossRef
26.
go back to reference Hof PR, Morrison JH (2004) The aging brain: morphomolecular senescence of cortical circuits. Trends Neurosci 27:607–612PubMedCrossRef Hof PR, Morrison JH (2004) The aging brain: morphomolecular senescence of cortical circuits. Trends Neurosci 27:607–612PubMedCrossRef
27.
go back to reference Peters A, Sethares C, Luebke JI (2008) Synapses are lost during aging on the primate prefrontal cortex. Neuroscience 152:970–981PubMedCrossRef Peters A, Sethares C, Luebke JI (2008) Synapses are lost during aging on the primate prefrontal cortex. Neuroscience 152:970–981PubMedCrossRef
28.
go back to reference Terry DR, DeTeresa R, Hansen LA (1987) Neocortical cell counts in normal human adult aging. Ann Neurol 21:530–539PubMedCrossRef Terry DR, DeTeresa R, Hansen LA (1987) Neocortical cell counts in normal human adult aging. Ann Neurol 21:530–539PubMedCrossRef
29.
go back to reference Adalbert R, Coleman MP (2013) Axon pathology in age-related neurodegenerative disorders. Neuropathol Appl Neurobiol 39:90–108PubMedCrossRef Adalbert R, Coleman MP (2013) Axon pathology in age-related neurodegenerative disorders. Neuropathol Appl Neurobiol 39:90–108PubMedCrossRef
30.
go back to reference Marner L, Nyengaard JR, Tang Y, Pakkenberg B (2003) Marked loss of myelinated nerve fibers in the human brain with age. J Comp Neurol 462:144–152PubMedCrossRef Marner L, Nyengaard JR, Tang Y, Pakkenberg B (2003) Marked loss of myelinated nerve fibers in the human brain with age. J Comp Neurol 462:144–152PubMedCrossRef
31.
32.
go back to reference Pannese E (2011) Morphological changes in nerve cells during normal aging. Brain Struct Funct 216:85–89PubMedCrossRef Pannese E (2011) Morphological changes in nerve cells during normal aging. Brain Struct Funct 216:85–89PubMedCrossRef
33.
go back to reference Juraska JM, Lowry NC (2012) Neuroanatomical changes associated with cognitive aging. Curr Top Behav Neurosci 10:137–162PubMedCrossRef Juraska JM, Lowry NC (2012) Neuroanatomical changes associated with cognitive aging. Curr Top Behav Neurosci 10:137–162PubMedCrossRef
34.
go back to reference Grillo FW (2016) Long live the axon. Parallels between ageing and pathology from a presynaptic point of view. J Chem Neuroanat 76:28–34PubMedCrossRef Grillo FW (2016) Long live the axon. Parallels between ageing and pathology from a presynaptic point of view. J Chem Neuroanat 76:28–34PubMedCrossRef
35.
go back to reference Kovacs GG, Milenkovic I, Wöhrer A, Höftberger R, Gelpi E, Haberler C, Hönigschnabel S, Reiner-Concin A, Heinzl H, Jungwirth S, Krampla W, Fischer P, Budka H (2013) Non-Alzheimer neurodegenerative pathologies and their combinations are more frequent than commonly believed in the elderly brain: a community-based autopsy series. Acta Neuropathol 126:365–384PubMedCrossRef Kovacs GG, Milenkovic I, Wöhrer A, Höftberger R, Gelpi E, Haberler C, Hönigschnabel S, Reiner-Concin A, Heinzl H, Jungwirth S, Krampla W, Fischer P, Budka H (2013) Non-Alzheimer neurodegenerative pathologies and their combinations are more frequent than commonly believed in the elderly brain: a community-based autopsy series. Acta Neuropathol 126:365–384PubMedCrossRef
37.
go back to reference Kochunov P, Ramage AE, Lancaster JL, Robin DA, Narayama S, Coyle T, Royall DR, Fox P (2009) Loss of cerebral white matter structural integrity tracks the gray matter metabolic decline in normal aging. Neuroimage 45:17–28PubMedCrossRef Kochunov P, Ramage AE, Lancaster JL, Robin DA, Narayama S, Coyle T, Royall DR, Fox P (2009) Loss of cerebral white matter structural integrity tracks the gray matter metabolic decline in normal aging. Neuroimage 45:17–28PubMedCrossRef
39.
40.
go back to reference Meynert T (1890) Amentia, der Vervirrtheit. Jb Psychiat 9:1–112 Meynert T (1890) Amentia, der Vervirrtheit. Jb Psychiat 9:1–112
41.
go back to reference Bonhoeffer K (1908) Zur Frage der Klassifikation der symptomatischen Psychosen. Berl Klin Wschr 45:2257–2260 Bonhoeffer K (1908) Zur Frage der Klassifikation der symptomatischen Psychosen. Berl Klin Wschr 45:2257–2260
42.
43.
go back to reference Plum F, Posner JB (1980) The diagnosis of stupor and coma, 3rd edn. Davis, Philadelphia Plum F, Posner JB (1980) The diagnosis of stupor and coma, 3rd edn. Davis, Philadelphia
44.
go back to reference Leonard M, Adamis D, Saunders J, Trzepacz P, Meagher D (2015) A longitudinal study of delirium phenomenology indicates widespread neural dysfunction. Palliat Support Care 13:187–196PubMedCrossRef Leonard M, Adamis D, Saunders J, Trzepacz P, Meagher D (2015) A longitudinal study of delirium phenomenology indicates widespread neural dysfunction. Palliat Support Care 13:187–196PubMedCrossRef
45.
go back to reference Jacobson S, Jerrier H (2000) EEG in delirium. Semin Clin Neuropsychiatry 5:86–92PubMed Jacobson S, Jerrier H (2000) EEG in delirium. Semin Clin Neuropsychiatry 5:86–92PubMed
46.
go back to reference Kimchi EY, Neelagiri A, Whitt W, Sagi AR, Ryan SI, Gadbois G, Groothuysen D, Westover MB (2019) Clinical EEG slowing correlates with delirium severity and predicts poor clinical outcomes. Neurology 93:e1260–e1271PubMedPubMedCentralCrossRef Kimchi EY, Neelagiri A, Whitt W, Sagi AR, Ryan SI, Gadbois G, Groothuysen D, Westover MB (2019) Clinical EEG slowing correlates with delirium severity and predicts poor clinical outcomes. Neurology 93:e1260–e1271PubMedPubMedCentralCrossRef
47.
go back to reference Yokota H, Ogawa S, Kurokawa A, Yamamoto Y (2003) Regional blood flow in delirium patients. Psychiatry Clin Neurosci 57:337–339PubMedCrossRef Yokota H, Ogawa S, Kurokawa A, Yamamoto Y (2003) Regional blood flow in delirium patients. Psychiatry Clin Neurosci 57:337–339PubMedCrossRef
48.
go back to reference Fong TG, Bogardus ST Jr, Daftary A, Auerbach E, Blumenfeld H, Modur S, Leo-Summers L, Seibyl J, Inouye SK (2006) Cerebral perfusion changes in older delirious patients using 99mTc HMPAO SPECT. J Gerontol A Biol Sci Med Sci 61:1294–1299PubMedCrossRef Fong TG, Bogardus ST Jr, Daftary A, Auerbach E, Blumenfeld H, Modur S, Leo-Summers L, Seibyl J, Inouye SK (2006) Cerebral perfusion changes in older delirious patients using 99mTc HMPAO SPECT. J Gerontol A Biol Sci Med Sci 61:1294–1299PubMedCrossRef
49.
go back to reference McLott J, Jurecic J, Hemphill L, Dunn KS (2013) Development of an amygdalocentric neurocircuitry-reactive aggression theoretical model of emergence delirium in posttraumatic stress disorder: an integrative literature review. AANA J 81:379–384PubMed McLott J, Jurecic J, Hemphill L, Dunn KS (2013) Development of an amygdalocentric neurocircuitry-reactive aggression theoretical model of emergence delirium in posttraumatic stress disorder: an integrative literature review. AANA J 81:379–384PubMed
50.
go back to reference Cavallari M, Dai W, Guttmann CR, Meier DS, Ngo LH, Hshiech TT, Callahan AE, Fong TG, Schmitt E, Dickerson BC, Press DZ, Marcantonio ER, Jones RN, Inouye SK, Alsop DC, SAGES Study Group (2016) Neural substrates of vulnerability to postsurgical delirium as revealed by presurgical diffusion MRI. Brain 139:1282–1294PubMedPubMedCentralCrossRef Cavallari M, Dai W, Guttmann CR, Meier DS, Ngo LH, Hshiech TT, Callahan AE, Fong TG, Schmitt E, Dickerson BC, Press DZ, Marcantonio ER, Jones RN, Inouye SK, Alsop DC, SAGES Study Group (2016) Neural substrates of vulnerability to postsurgical delirium as revealed by presurgical diffusion MRI. Brain 139:1282–1294PubMedPubMedCentralCrossRef
51.
go back to reference Trzepacz PT (1999) Update on the neuropathogenesis of delirium. Dement Geriatr Cogn Disord 10:330–334PubMedCrossRef Trzepacz PT (1999) Update on the neuropathogenesis of delirium. Dement Geriatr Cogn Disord 10:330–334PubMedCrossRef
52.
go back to reference Fox MD, Snyder AZ, Vincent JL, Corbetta M, Van Essen DC, Raichle ME (2005) The human brain is intrinsically organized into dynamic, anticorrelated functional networks. Proc Natl Acad Sci USA 102:9673–9678PubMedPubMedCentralCrossRef Fox MD, Snyder AZ, Vincent JL, Corbetta M, Van Essen DC, Raichle ME (2005) The human brain is intrinsically organized into dynamic, anticorrelated functional networks. Proc Natl Acad Sci USA 102:9673–9678PubMedPubMedCentralCrossRef
53.
go back to reference Sanders RD (2011) Hypothesis for the pathophysiology of delirium: role of baseline brain network connectivity and changes in inhibitory tone. Med Hypotheses 77:140–143PubMedCrossRef Sanders RD (2011) Hypothesis for the pathophysiology of delirium: role of baseline brain network connectivity and changes in inhibitory tone. Med Hypotheses 77:140–143PubMedCrossRef
54.
go back to reference Choi SH, Lee H, Chung TS, Park KM, Jung YC, Kim SI, Kim JJ (2012) Neural network functional connectivity during and after an episode of delirium. Am J Psychiatry 169:498–507PubMedCrossRef Choi SH, Lee H, Chung TS, Park KM, Jung YC, Kim SI, Kim JJ (2012) Neural network functional connectivity during and after an episode of delirium. Am J Psychiatry 169:498–507PubMedCrossRef
55.
go back to reference Joëls M (2011) Impact of glucocorticoids on brain functions: relevance for mood disorders. Psychoneuroendocrinology 36:406–414PubMedCrossRef Joëls M (2011) Impact of glucocorticoids on brain functions: relevance for mood disorders. Psychoneuroendocrinology 36:406–414PubMedCrossRef
56.
go back to reference Lupien SJ, Juster RP, Raymond C, Marin MF (2018) The effects of chronic stress on the human brain: From neurotoxicity, to vulnerability, to opportunity. Front Neuroendocrinol 49:91–10557PubMedCrossRef Lupien SJ, Juster RP, Raymond C, Marin MF (2018) The effects of chronic stress on the human brain: From neurotoxicity, to vulnerability, to opportunity. Front Neuroendocrinol 49:91–10557PubMedCrossRef
58.
59.
go back to reference MacLullich AM, Ferguson KJ, Miller T, de Rooij SE, Cunningham C (2008) Unravelling the pathophysiology of delirium: a focus on the role of aberrant stress responses. J Psychosom Res 65:229–238PubMedPubMedCentralCrossRef MacLullich AM, Ferguson KJ, Miller T, de Rooij SE, Cunningham C (2008) Unravelling the pathophysiology of delirium: a focus on the role of aberrant stress responses. J Psychosom Res 65:229–238PubMedPubMedCentralCrossRef
60.
go back to reference White S (2002) The neuropathogenesis of delirium. Rev Clin Gerontol 12:62–67CrossRef White S (2002) The neuropathogenesis of delirium. Rev Clin Gerontol 12:62–67CrossRef
61.
go back to reference Lipowski ZJ (1990) Delirium: acute confusional states. Oxford University Press, Oxford Lipowski ZJ (1990) Delirium: acute confusional states. Oxford University Press, Oxford
62.
go back to reference Itil T, Fink M (1966) Anticholinergic drug-induced delirium: experimental modification, quantitative EEG and behavioral correlations. J Nerv Ment Dis 143:492–507PubMedCrossRef Itil T, Fink M (1966) Anticholinergic drug-induced delirium: experimental modification, quantitative EEG and behavioral correlations. J Nerv Ment Dis 143:492–507PubMedCrossRef
63.
go back to reference Guo Y, Zhang Y, Jia P, Wang W, Zhou Q, Sun L, Zhao A, Zhang X, Wang X, Li Y, Zhang J, Jiang W (2017) Preoperative serum metabolites are associated with postoperative delirium in elderly hip-fracture patients. J Gerontol A Biol Sci Med Sci 72:1689–1696PubMedCrossRef Guo Y, Zhang Y, Jia P, Wang W, Zhou Q, Sun L, Zhao A, Zhang X, Wang X, Li Y, Zhang J, Jiang W (2017) Preoperative serum metabolites are associated with postoperative delirium in elderly hip-fracture patients. J Gerontol A Biol Sci Med Sci 72:1689–1696PubMedCrossRef
64.
go back to reference Maldonado JR (2008) Delirium in the acute care setting: characteristics, diagnosis, and treatment. Crit Care Clin 24:657–722PubMedCrossRef Maldonado JR (2008) Delirium in the acute care setting: characteristics, diagnosis, and treatment. Crit Care Clin 24:657–722PubMedCrossRef
65.
66.
go back to reference Bugiani O, Salvarani S, Perdelli F, Mancardi GL, Leonardi A (1978) Nerve cell loss with aging in the putamen. Eur Neurol 17:286–291PubMedCrossRef Bugiani O, Salvarani S, Perdelli F, Mancardi GL, Leonardi A (1978) Nerve cell loss with aging in the putamen. Eur Neurol 17:286–291PubMedCrossRef
67.
go back to reference Volkow ND, Wang GJ, Fowler JS, Ding YS, Gur RC, Gatley J, Logan J, Moberg PJ, Hitzemann R, Smith G, Pappas N (1998) Parallel loss of presynaptic and postsynaptic dopamine markers in normal aging. Ann Neurol 44:143–147PubMedCrossRef Volkow ND, Wang GJ, Fowler JS, Ding YS, Gur RC, Gatley J, Logan J, Moberg PJ, Hitzemann R, Smith G, Pappas N (1998) Parallel loss of presynaptic and postsynaptic dopamine markers in normal aging. Ann Neurol 44:143–147PubMedCrossRef
68.
go back to reference Dijk DJ, Duffy JF, Riel E, Shanahan TL, Czeisler CA (1999) Ageing and the circadian and homeostatic regulation of human sleep during forced desynchrony of rest, melatonin, and temperature rhythms. J Physiol 516:611–627PubMedPubMedCentralCrossRef Dijk DJ, Duffy JF, Riel E, Shanahan TL, Czeisler CA (1999) Ageing and the circadian and homeostatic regulation of human sleep during forced desynchrony of rest, melatonin, and temperature rhythms. J Physiol 516:611–627PubMedPubMedCentralCrossRef
69.
go back to reference Kim JH, Duffy JF (2018) Circadian rhythm sleep-wake disorders in older adults. Sleep Med Clin 13:39–50PubMedCrossRef Kim JH, Duffy JF (2018) Circadian rhythm sleep-wake disorders in older adults. Sleep Med Clin 13:39–50PubMedCrossRef
70.
go back to reference Pandi-Perumal SR, Zisapel N, Srinivasan V, Cardinali DR (2005) Melatonin and sleep in aging population. Exp Gerontol 40:911–925PubMedCrossRef Pandi-Perumal SR, Zisapel N, Srinivasan V, Cardinali DR (2005) Melatonin and sleep in aging population. Exp Gerontol 40:911–925PubMedCrossRef
71.
go back to reference Balan S, Leibovitz A, Zila SO, Ruth M, Chana W, Yassica B, Rahel B, Richard G, Neumann E, Blagman B, Habot B (2003) The relation between the clinical subtypes of delirium and the urinary level of 6-SMT. J Neuropsychiatr Clin Neurosci 15:363–366CrossRef Balan S, Leibovitz A, Zila SO, Ruth M, Chana W, Yassica B, Rahel B, Richard G, Neumann E, Blagman B, Habot B (2003) The relation between the clinical subtypes of delirium and the urinary level of 6-SMT. J Neuropsychiatr Clin Neurosci 15:363–366CrossRef
72.
go back to reference Zhong HH, Yu B, Luo D, Yang LY, Zhang J, Jiang SS, Hu SJ, Luo YY, Yang MW, Hong FF, Yang SL (2019) Roles of aging in sleep. Neurosci Biobehav Rev 98:177–184PubMedCrossRef Zhong HH, Yu B, Luo D, Yang LY, Zhang J, Jiang SS, Hu SJ, Luo YY, Yang MW, Hong FF, Yang SL (2019) Roles of aging in sleep. Neurosci Biobehav Rev 98:177–184PubMedCrossRef
73.
74.
75.
76.
go back to reference Stoquart-ElSankari S, Balédent O, Gondry-Jouet C, Makki M, Godefroy O, Meyer ME (2007) Aging effects on cerebral blood and cerebrospinal fluid flows. J Cereb Blood Flow Metab 27:1563–1572PubMedCrossRef Stoquart-ElSankari S, Balédent O, Gondry-Jouet C, Makki M, Godefroy O, Meyer ME (2007) Aging effects on cerebral blood and cerebrospinal fluid flows. J Cereb Blood Flow Metab 27:1563–1572PubMedCrossRef
77.
go back to reference Amin-Hanjani S, Du X, Pandey DK, Thulborn KR, Charbel FT (2015) Effect of age and vascular anatomy on blood flow in major cerebral vessels. J Cereb Blood Flow Metab 35:312–318PubMedCrossRef Amin-Hanjani S, Du X, Pandey DK, Thulborn KR, Charbel FT (2015) Effect of age and vascular anatomy on blood flow in major cerebral vessels. J Cereb Blood Flow Metab 35:312–318PubMedCrossRef
78.
go back to reference Zhang N, Gordon ML, Goldberg TE (2017) Cerebral blood flow measured by arterial spin labeling MRI at resting state in normal aging and Alzheimer’s disease. Neurosci Biobehav Rev 72:168–175PubMedCrossRef Zhang N, Gordon ML, Goldberg TE (2017) Cerebral blood flow measured by arterial spin labeling MRI at resting state in normal aging and Alzheimer’s disease. Neurosci Biobehav Rev 72:168–175PubMedCrossRef
80.
go back to reference Okhotin VE, Kalinichenko SG (2003) Subcortical white matter interstitial cells: their connections, neurochemical specialization, and role in the histogenesis of the cortex. Neurosci Behav Physiol 33:177–194PubMedCrossRef Okhotin VE, Kalinichenko SG (2003) Subcortical white matter interstitial cells: their connections, neurochemical specialization, and role in the histogenesis of the cortex. Neurosci Behav Physiol 33:177–194PubMedCrossRef
81.
go back to reference Drake CT, Iadecola C (2006) The role of neuronal signaling in controlling cerebral blood flow. Brain Lang 102:141–152PubMedCrossRef Drake CT, Iadecola C (2006) The role of neuronal signaling in controlling cerebral blood flow. Brain Lang 102:141–152PubMedCrossRef
82.
go back to reference Kalaria RN (1996) Cerebral vessels in ageing and Alzheimer’s disease. Pharmacol Ther 72:193–214PubMedCrossRef Kalaria RN (1996) Cerebral vessels in ageing and Alzheimer’s disease. Pharmacol Ther 72:193–214PubMedCrossRef
83.
go back to reference Duncombe J, Lennent RJ, Jansen MA, Marshall I, Wardlaw JM, Horsburgh K (2017) Ageing causes prominent neurovascular dysfunction with loss of astrocytic contacts and gliosis. Neuropathol Appl Neurobiol 43:477–491PubMedCrossRef Duncombe J, Lennent RJ, Jansen MA, Marshall I, Wardlaw JM, Horsburgh K (2017) Ageing causes prominent neurovascular dysfunction with loss of astrocytic contacts and gliosis. Neuropathol Appl Neurobiol 43:477–491PubMedCrossRef
85.
go back to reference Craggs LJ, Yamamoto Y, Deramecourt V, Kalaria RN (2014) Microvascular pathology and morphometrics in sporadic and hereditary small vessel diseases of the brain. Brain Pathol 24:495–509PubMedPubMedCentralCrossRef Craggs LJ, Yamamoto Y, Deramecourt V, Kalaria RN (2014) Microvascular pathology and morphometrics in sporadic and hereditary small vessel diseases of the brain. Brain Pathol 24:495–509PubMedPubMedCentralCrossRef
87.
go back to reference Tarumi T, Ayaz Khan M, Liu J, Tseng BY, Parker R, Riley J, Tinajero C, Zhang R (2014) Cerebral hemodynamics in normal aging: central artery stiffness, wave reflection, and pressure pulsatility. J Cereb Blood Flow Metab 34:971–978PubMedPubMedCentralCrossRef Tarumi T, Ayaz Khan M, Liu J, Tseng BY, Parker R, Riley J, Tinajero C, Zhang R (2014) Cerebral hemodynamics in normal aging: central artery stiffness, wave reflection, and pressure pulsatility. J Cereb Blood Flow Metab 34:971–978PubMedPubMedCentralCrossRef
88.
89.
go back to reference Scuteri A, Nilsson PM, Tzourio C, Redon J, Laurent S (2011) Microvascular brain damage with aging and hypertension: pathophysiological consideration and clinical implications. J Hypertens 29:1469–1477PubMedCrossRef Scuteri A, Nilsson PM, Tzourio C, Redon J, Laurent S (2011) Microvascular brain damage with aging and hypertension: pathophysiological consideration and clinical implications. J Hypertens 29:1469–1477PubMedCrossRef
90.
go back to reference Harukuni I, Bhardwai A (2006) Mechanisms of brain injury after global cerebral ischemia. Neurol Clin 24:1–21PubMedCrossRef Harukuni I, Bhardwai A (2006) Mechanisms of brain injury after global cerebral ischemia. Neurol Clin 24:1–21PubMedCrossRef
91.
go back to reference Riddle DR, Sonntag WE, Lichtenwalner RJ (2003) Microvascular plasticity in aging. Ageing Res Rev 2:149–168PubMedCrossRef Riddle DR, Sonntag WE, Lichtenwalner RJ (2003) Microvascular plasticity in aging. Ageing Res Rev 2:149–168PubMedCrossRef
92.
go back to reference Hatano Y, Narumoto J, Shibata K, Matsuoka T, Tamiguchi S, Hata Y, Yamada K, Yaku H, Fukui K (2013) White-matter hyperintensities predict delirium after cardiac surgery. Am J Geriatr Psychiatry 21:938–945PubMedCrossRef Hatano Y, Narumoto J, Shibata K, Matsuoka T, Tamiguchi S, Hata Y, Yamada K, Yaku H, Fukui K (2013) White-matter hyperintensities predict delirium after cardiac surgery. Am J Geriatr Psychiatry 21:938–945PubMedCrossRef
93.
go back to reference Otomo S, Maekawa K, GotoT BT, Yoshitake A (2013) Pre-existing cerebral infarcts as a risk factor for delirium after coronary artery bypass graft surgery. Interact Cardiovasc Thorac Surg 17:799–804PubMedPubMedCentralCrossRef Otomo S, Maekawa K, GotoT BT, Yoshitake A (2013) Pre-existing cerebral infarcts as a risk factor for delirium after coronary artery bypass graft surgery. Interact Cardiovasc Thorac Surg 17:799–804PubMedPubMedCentralCrossRef
94.
go back to reference Root JC, Pryor KO, Downey R, Alici Y, Davis ML, Holodni A, Korc-Grodzicki B, Ahles T (2013) Association of pre-operative brain pathology with post-operative delirium in a cohort of non-small cell lung cancer patients undergoing surgical resection. Psychooncology 22:2087–2094PubMedPubMedCentralCrossRef Root JC, Pryor KO, Downey R, Alici Y, Davis ML, Holodni A, Korc-Grodzicki B, Ahles T (2013) Association of pre-operative brain pathology with post-operative delirium in a cohort of non-small cell lung cancer patients undergoing surgical resection. Psychooncology 22:2087–2094PubMedPubMedCentralCrossRef
95.
go back to reference Cavallari M, Hshieh TT, Guttmann CR, Ngo LH, Meier DS, Schmitt EM, Marcantonio ER, Jones RN, Kosar CM, Fong TG, Press D, Inouye SK, Alsop DC, SAGES Study Group (2015) Brain atrophy and white-matter hyperintensities are not significantly associated with incidence and severity of postoperative delirium in older persons without dementia. Neurobiol Aging 36:2122–2129PubMedPubMedCentralCrossRef Cavallari M, Hshieh TT, Guttmann CR, Ngo LH, Meier DS, Schmitt EM, Marcantonio ER, Jones RN, Kosar CM, Fong TG, Press D, Inouye SK, Alsop DC, SAGES Study Group (2015) Brain atrophy and white-matter hyperintensities are not significantly associated with incidence and severity of postoperative delirium in older persons without dementia. Neurobiol Aging 36:2122–2129PubMedPubMedCentralCrossRef
96.
go back to reference Hshieh TT, Dai W, Cavallari M, Guttmann CR, Meier DS, Schmitt EM, Dickerson BC, Press DZ, Marcantonio ER, Jones RN, Gou YR, Travison TG, Fong TG, Ngo L, Inouye SK, Alsop DC, SAGES Study Group (2017) Cerebral blood flow MRI in the nondemented elderly is not predictive of post-operative delirium but is correlated with cognitive performances. J Cereb Blood Flow Metab 37:1386–1397PubMedCrossRef Hshieh TT, Dai W, Cavallari M, Guttmann CR, Meier DS, Schmitt EM, Dickerson BC, Press DZ, Marcantonio ER, Jones RN, Gou YR, Travison TG, Fong TG, Ngo L, Inouye SK, Alsop DC, SAGES Study Group (2017) Cerebral blood flow MRI in the nondemented elderly is not predictive of post-operative delirium but is correlated with cognitive performances. J Cereb Blood Flow Metab 37:1386–1397PubMedCrossRef
99.
go back to reference Hawkins BT, Davis TP (2005) The blood-brain barrier/neurovascular unit in health and disease. Pharmacol Rev 57:173–185PubMedCrossRef Hawkins BT, Davis TP (2005) The blood-brain barrier/neurovascular unit in health and disease. Pharmacol Rev 57:173–185PubMedCrossRef
100.
go back to reference Abbott NJ, Rönnbäck L, Hansson E (2006) Astrocyte-endothelial interactions at the blood-brain barrier. Nat Rev Neurosci 7:41–53PubMedCrossRef Abbott NJ, Rönnbäck L, Hansson E (2006) Astrocyte-endothelial interactions at the blood-brain barrier. Nat Rev Neurosci 7:41–53PubMedCrossRef
102.
go back to reference Bazargani N, Attwell D (2016) Astrocyte calcium signaling: the third wave. Nat Neurosci 19:182–189PubMedCrossRef Bazargani N, Attwell D (2016) Astrocyte calcium signaling: the third wave. Nat Neurosci 19:182–189PubMedCrossRef
103.
go back to reference Hall CN, Reynell C, Gesslein B, Hamilton NB, Mishra A, Sutherland BA, O’Farrell FM, Buchan AM, Lauritzen M, Attwell D (2014) Capillary pericytes regulate cerebral blood flow in health and disease. Nature 508:55–60PubMedPubMedCentralCrossRef Hall CN, Reynell C, Gesslein B, Hamilton NB, Mishra A, Sutherland BA, O’Farrell FM, Buchan AM, Lauritzen M, Attwell D (2014) Capillary pericytes regulate cerebral blood flow in health and disease. Nature 508:55–60PubMedPubMedCentralCrossRef
105.
go back to reference Hartz AM, Bauer B, Soldner EL, Wolf A, Boy S, Backhaus R, Mihaljevic I, Bogdahn U, Klünemann HH, Schuierer G, Schlachetzki F (2012) Amyloid-β contributes to blood-brain barrier leakage in transgenic human amyloid precursor protein mice and in humans with cerebral amyloid angiopathy. Stroke 43:514–523PubMedCrossRef Hartz AM, Bauer B, Soldner EL, Wolf A, Boy S, Backhaus R, Mihaljevic I, Bogdahn U, Klünemann HH, Schuierer G, Schlachetzki F (2012) Amyloid-β contributes to blood-brain barrier leakage in transgenic human amyloid precursor protein mice and in humans with cerebral amyloid angiopathy. Stroke 43:514–523PubMedCrossRef
106.
go back to reference Farrall AJ, Wardlaw JM (2009) Blood-brain barrier: ageing and microvascular disease – systematic review and meta-analysis. Neurobiol Aging 30:337–352PubMedCrossRef Farrall AJ, Wardlaw JM (2009) Blood-brain barrier: ageing and microvascular disease – systematic review and meta-analysis. Neurobiol Aging 30:337–352PubMedCrossRef
107.
go back to reference Senatorov VV Jr, Friedman AR, Milikowski DZ, Ofer J, Saar-Ashkenazy R, Charbash A, Jahan N, Chin G, Mihaly E, Lin JM, Ramsay HJ, Moghbel A, Preininger MK, Eddings CR, Harrison HV, Patel R, Shen Y, Ghanim H, Sheng H, Veksler R, Sudmant PH, Becker A, Hart B, Rogawski MA, Dillin A, Friedman A, Kaufer D (2019) Blood-brain barrier dysfunction in aging induces hyper-activation of TGF-beta signaling and chronic yet reversible neural dysfunction. BioRxiv. https://doi.org/10.1101/537431 Senatorov VV Jr, Friedman AR, Milikowski DZ, Ofer J, Saar-Ashkenazy R, Charbash A, Jahan N, Chin G, Mihaly E, Lin JM, Ramsay HJ, Moghbel A, Preininger MK, Eddings CR, Harrison HV, Patel R, Shen Y, Ghanim H, Sheng H, Veksler R, Sudmant PH, Becker A, Hart B, Rogawski MA, Dillin A, Friedman A, Kaufer D (2019) Blood-brain barrier dysfunction in aging induces hyper-activation of TGF-beta signaling and chronic yet reversible neural dysfunction. BioRxiv. https://​doi.​org/​10.​1101/​537431
108.
go back to reference Chen CP, Chen RL, Preston JE (2012) The influence of ageing in the cerebrospinal fluid concentrations of proteins that are derived from the choroid plexus, brain, and plasma. Exp Gerontol 47:323–328PubMedCrossRef Chen CP, Chen RL, Preston JE (2012) The influence of ageing in the cerebrospinal fluid concentrations of proteins that are derived from the choroid plexus, brain, and plasma. Exp Gerontol 47:323–328PubMedCrossRef
109.
go back to reference Montagne A, Barnes SR, Sweeney MD, Halliday MR, Sagare AP, Zhao Z, Toga AW, Jacobs RE, Liu CY, Amezcua L, Harrington MG, Chui HC, Law M, Zlokovic BV (2015) Blood-brain barrier breakdown in the aging human hippocampus. Neuron 85:296–302PubMedPubMedCentralCrossRef Montagne A, Barnes SR, Sweeney MD, Halliday MR, Sagare AP, Zhao Z, Toga AW, Jacobs RE, Liu CY, Amezcua L, Harrington MG, Chui HC, Law M, Zlokovic BV (2015) Blood-brain barrier breakdown in the aging human hippocampus. Neuron 85:296–302PubMedPubMedCentralCrossRef
110.
go back to reference Nation DA, Sweeney MD, Montagne A, Sagare AP, D’Orazio LM, Pachicano M, Sepehrband F, Nelson AR, Buennagel DP, Harrington MG, Benzinger TLS, Fagan AM, Ringman JM, Schneider LS, Morris JC, Chui HC, Law M, Toga AW, Zlokovic BV (2019) Blood-brain barrier breakdown is an early biomarker of human cognitive dysfunction. Nat Med 25:270–276PubMedPubMedCentralCrossRef Nation DA, Sweeney MD, Montagne A, Sagare AP, D’Orazio LM, Pachicano M, Sepehrband F, Nelson AR, Buennagel DP, Harrington MG, Benzinger TLS, Fagan AM, Ringman JM, Schneider LS, Morris JC, Chui HC, Law M, Toga AW, Zlokovic BV (2019) Blood-brain barrier breakdown is an early biomarker of human cognitive dysfunction. Nat Med 25:270–276PubMedPubMedCentralCrossRef
111.
go back to reference Erdö F, Denes L, de Lange E (2017) Age-associated physiological and pathological changes at the blood-brain barrier: a review. J Cereb Blood Flow Metab 37:4–24PubMedCrossRef Erdö F, Denes L, de Lange E (2017) Age-associated physiological and pathological changes at the blood-brain barrier: a review. J Cereb Blood Flow Metab 37:4–24PubMedCrossRef
112.
go back to reference Varatharaj A, Galea I (2017) The blood-brain barrier in systemic inflammation. Brain Behav Immun 60:1–12PubMedCrossRef Varatharaj A, Galea I (2017) The blood-brain barrier in systemic inflammation. Brain Behav Immun 60:1–12PubMedCrossRef
113.
go back to reference Acharya NK, Goldwaser EL, Forsberg MM, Godsey GA, Johnson CA, Sarkar A, DeMarshall C, Kosciuk MC, Dash JM, Hale CP, Leonard DM, Appelt DM, Nagele RG (2015) Sevoflurane and Isoflurane induce structural changes in brain vascular endothelial cells and increase blood-brain barrier permeability: possible link to postoperative delirium and cognitive decline. Brain Res 1620:29–41PubMedCrossRef Acharya NK, Goldwaser EL, Forsberg MM, Godsey GA, Johnson CA, Sarkar A, DeMarshall C, Kosciuk MC, Dash JM, Hale CP, Leonard DM, Appelt DM, Nagele RG (2015) Sevoflurane and Isoflurane induce structural changes in brain vascular endothelial cells and increase blood-brain barrier permeability: possible link to postoperative delirium and cognitive decline. Brain Res 1620:29–41PubMedCrossRef
114.
go back to reference Johanson C, Silverberg G, Donahue J, Duncan J, Stopa E (2004) Choroid plexus and CSF in Alzheimer’s disease: altered expression and transport of proteins and peptides. In: Zheng W, Chodobski A (eds) The blood-cerebrospinal fluid barrier. CRC Press, Boca Raton, pp 307–339 Johanson C, Silverberg G, Donahue J, Duncan J, Stopa E (2004) Choroid plexus and CSF in Alzheimer’s disease: altered expression and transport of proteins and peptides. In: Zheng W, Chodobski A (eds) The blood-cerebrospinal fluid barrier. CRC Press, Boca Raton, pp 307–339
116.
go back to reference Rubenstein E (1998) Relationship of senescence of cerebrospinal fluid circulatory system to dementias of the aged. Lancet 351:383–385CrossRef Rubenstein E (1998) Relationship of senescence of cerebrospinal fluid circulatory system to dementias of the aged. Lancet 351:383–385CrossRef
117.
go back to reference Silverberg GD, Mayo M, Saul T, Rubenstein E, McGuire D (2003) Alzheimer’s disease, normalpressure hydrocephalus, and senescent changes in CSF circulatory physiology: a hypothesis. Lancet Neurol 2:506–511PubMedCrossRef Silverberg GD, Mayo M, Saul T, Rubenstein E, McGuire D (2003) Alzheimer’s disease, normalpressure hydrocephalus, and senescent changes in CSF circulatory physiology: a hypothesis. Lancet Neurol 2:506–511PubMedCrossRef
118.
go back to reference Hassan I, Shing C, Bajraszewski CE, Gleason A, Hayhow BD, Velakoulis D (2013) Osmotic demyelination syndrome: an under-recognised cause of delirium? Aust N Z J Psychiatry 47:287–288PubMedCrossRef Hassan I, Shing C, Bajraszewski CE, Gleason A, Hayhow BD, Velakoulis D (2013) Osmotic demyelination syndrome: an under-recognised cause of delirium? Aust N Z J Psychiatry 47:287–288PubMedCrossRef
119.
go back to reference Trillo-Contreras JL, Ramírez-Lorca R, Hiraldo-González L, Sánchez-Gomar I, Galán-Cobo A, Suárez-Luna N, Sánchez de Rojas-de Pedro E, Toledo-Aral JJ, Villadiego J, Echevarría M (2018) Combined effects of aquaporin-4 and hypoxia produce age-related hydrocephalus. Biochem Biophys Acta Mol Basis Dis 1864:3515–3526CrossRef Trillo-Contreras JL, Ramírez-Lorca R, Hiraldo-González L, Sánchez-Gomar I, Galán-Cobo A, Suárez-Luna N, Sánchez de Rojas-de Pedro E, Toledo-Aral JJ, Villadiego J, Echevarría M (2018) Combined effects of aquaporin-4 and hypoxia produce age-related hydrocephalus. Biochem Biophys Acta Mol Basis Dis 1864:3515–3526CrossRef
121.
go back to reference Nedergaard M (2013) Neuroscience. Garbage truck of the brain Science 340:1529–1530PubMed Nedergaard M (2013) Neuroscience. Garbage truck of the brain Science 340:1529–1530PubMed
122.
go back to reference Benveniste H, Liu X, Koundal S, Sanggaard S, Lee H, Wardlaw J (2019) The glymphatic system and waste clearance with brain aging: a review. Gerontology 65:106–119PubMedCrossRef Benveniste H, Liu X, Koundal S, Sanggaard S, Lee H, Wardlaw J (2019) The glymphatic system and waste clearance with brain aging: a review. Gerontology 65:106–119PubMedCrossRef
123.
go back to reference Redzic ZB, Preston JE, Duncan JA, Chodobski A, Szmydynger-Chodobska J (2005) The choroid plexus-cerebrospinal fluid system: from development to aging. Curr Top Dev Biol 71:1–52PubMedCrossRef Redzic ZB, Preston JE, Duncan JA, Chodobski A, Szmydynger-Chodobska J (2005) The choroid plexus-cerebrospinal fluid system: from development to aging. Curr Top Dev Biol 71:1–52PubMedCrossRef
124.
go back to reference Shibata M, Yamada S, Kumar SR, Calero M, Bading J, Frangione B, Holtzman DM, Miller CA, Strickland DK, Ghiso J, Zlokovic BV (2000) Clearance of Alzheimer’s amyloid-β1-40 peptide from brain by LDL receptor-related protein-1 at the blood-brain barrier. J Clin Invest 106:1489–1499PubMedPubMedCentralCrossRef Shibata M, Yamada S, Kumar SR, Calero M, Bading J, Frangione B, Holtzman DM, Miller CA, Strickland DK, Ghiso J, Zlokovic BV (2000) Clearance of Alzheimer’s amyloid-β1-40 peptide from brain by LDL receptor-related protein-1 at the blood-brain barrier. J Clin Invest 106:1489–1499PubMedPubMedCentralCrossRef
125.
go back to reference Deane R, Du Yan S, Submamaryan RK, LaRue B, Jovanovic S, Hogg E, Welch D, Manness L, Lin C, Yu J, Zhu H, Ghiso J, Frangione B, Stern A, Schmidt AM, Armstrong DL, Arnold B, Liliensiek B, Nawroth P, Hofman F, Kindy M, Stern D, Zlokovic B (2003) RAGE mediates amyloid-β peptide transport across the blood-brain barrier and accumulation in brain. Nat Med 9:907–913PubMedCrossRef Deane R, Du Yan S, Submamaryan RK, LaRue B, Jovanovic S, Hogg E, Welch D, Manness L, Lin C, Yu J, Zhu H, Ghiso J, Frangione B, Stern A, Schmidt AM, Armstrong DL, Arnold B, Liliensiek B, Nawroth P, Hofman F, Kindy M, Stern D, Zlokovic B (2003) RAGE mediates amyloid-β peptide transport across the blood-brain barrier and accumulation in brain. Nat Med 9:907–913PubMedCrossRef
126.
go back to reference Crossgrove JS, Li GJ, Zheng W (2005) The choroid plexus removes β-amyloid from brain cerebrospinal fluid. Exp Biol Med (Maywood) 230:771–776CrossRef Crossgrove JS, Li GJ, Zheng W (2005) The choroid plexus removes β-amyloid from brain cerebrospinal fluid. Exp Biol Med (Maywood) 230:771–776CrossRef
127.
go back to reference Donahue JE, Flaherty SL, Johanson CE, Duncan JA 3rd, Silverberg GD, Miller MC, Tavares R, Yang W, Wu Q, Sabo E, Hovanesian V, Stopa EG (2006) RAGE, LRP-1, and amyloid-beta protein in Alzheimer’s disease. Acta Neuropathol 112:405–415PubMedCrossRef Donahue JE, Flaherty SL, Johanson CE, Duncan JA 3rd, Silverberg GD, Miller MC, Tavares R, Yang W, Wu Q, Sabo E, Hovanesian V, Stopa EG (2006) RAGE, LRP-1, and amyloid-beta protein in Alzheimer’s disease. Acta Neuropathol 112:405–415PubMedCrossRef
128.
go back to reference Li L, Zhang X, Yang D, Luo G, Chen S, Le W (2009) Hypoxia increases Aβ generation by altering β- and γ-cleavage of APP. Neurobiol Aging 30:1091–1098PubMedCrossRef Li L, Zhang X, Yang D, Luo G, Chen S, Le W (2009) Hypoxia increases Aβ generation by altering β- and γ-cleavage of APP. Neurobiol Aging 30:1091–1098PubMedCrossRef
129.
go back to reference Guglielmotto M, Aragno M, Autelli R, Giliberto L, Novo E, Colombatto S, Danni O, Parola M, Smith MA, Perry G, Tamagno E, Tabaton M (2009) The up-regulation of BACE1 mediated by hypoxia and ischemic injury: role of oxidative stress and HIF1α. J Neurochem 108:1045–1056PubMedCrossRef Guglielmotto M, Aragno M, Autelli R, Giliberto L, Novo E, Colombatto S, Danni O, Parola M, Smith MA, Perry G, Tamagno E, Tabaton M (2009) The up-regulation of BACE1 mediated by hypoxia and ischemic injury: role of oxidative stress and HIF1α. J Neurochem 108:1045–1056PubMedCrossRef
130.
go back to reference Bulbarelli A, Lonati E, Brambilla A, Orlando A, Cazzaniga E, Piazza F, Ferrarese C, Masserini M, Sancini G (2012) Aβ42 production in brain capillary endothelial cells after oxygen and glucose deprivation. Mol Cell Neurosci 49:415–422PubMedCrossRef Bulbarelli A, Lonati E, Brambilla A, Orlando A, Cazzaniga E, Piazza F, Ferrarese C, Masserini M, Sancini G (2012) Aβ42 production in brain capillary endothelial cells after oxygen and glucose deprivation. Mol Cell Neurosci 49:415–422PubMedCrossRef
131.
go back to reference Branger P, Arenaza-Urquijo EM, Tomadesso C, Mézenge F, André C, de Flores R, Mutlu J, de la Sayette V, Eustache F, Chételat G, Rauchs G (2016) Relationships between sleep quality and brain volume, metabolism, and amyloid deposition in late adulthood. Neurobiol Aging 41:107–114PubMedCrossRef Branger P, Arenaza-Urquijo EM, Tomadesso C, Mézenge F, André C, de Flores R, Mutlu J, de la Sayette V, Eustache F, Chételat G, Rauchs G (2016) Relationships between sleep quality and brain volume, metabolism, and amyloid deposition in late adulthood. Neurobiol Aging 41:107–114PubMedCrossRef
133.
go back to reference Serot JM, Christmann D, Dubost T, Couturier M (1997) Cerebrospinal fluid transthyretin: aging and late onset Alzheimer’s disease. J Neurol Neurosurg Psychiatry 63:506–508PubMedPubMedCentralCrossRef Serot JM, Christmann D, Dubost T, Couturier M (1997) Cerebrospinal fluid transthyretin: aging and late onset Alzheimer’s disease. J Neurol Neurosurg Psychiatry 63:506–508PubMedPubMedCentralCrossRef
134.
135.
go back to reference Harman D (1956) Aging: a theory based on free radical and radiation chemistry. J Gerontol 11:298–300PubMedCrossRef Harman D (1956) Aging: a theory based on free radical and radiation chemistry. J Gerontol 11:298–300PubMedCrossRef
137.
go back to reference Karlidag R, Unal S, Sezer OH, Bay Karabulut A, Battaloǧlu B, But A, Ozcan C (2006) The role of oxidative stress in postoperative delirium. Gen Hosp Psychiatry 28:418–423PubMedCrossRef Karlidag R, Unal S, Sezer OH, Bay Karabulut A, Battaloǧlu B, But A, Ozcan C (2006) The role of oxidative stress in postoperative delirium. Gen Hosp Psychiatry 28:418–423PubMedCrossRef
138.
go back to reference Eertmans W, De Deyne C, Genbrugge C, Marcus B, Bouneb S, Beran M, Fret T, Gutermann H, Boer W, Vander Laenen M, Heylen R, Mesotten D, Vanelderen P, Jans F (2020) Association between postoperative delirium and postoperative cerebral oxygen desaturation in older patients after cardiac surgery. Br J Anaesth 124:146–153PubMedCrossRef Eertmans W, De Deyne C, Genbrugge C, Marcus B, Bouneb S, Beran M, Fret T, Gutermann H, Boer W, Vander Laenen M, Heylen R, Mesotten D, Vanelderen P, Jans F (2020) Association between postoperative delirium and postoperative cerebral oxygen desaturation in older patients after cardiac surgery. Br J Anaesth 124:146–153PubMedCrossRef
139.
go back to reference Ross JM, Öberg J, Brené S, Coppotelli G, Terzioglu M, Pernold K, Goiny M, Sitnikov R, Kehr J, Trifunovic A, Larsson NG, Hoffer BJ, Olson L (2010) High brain lactate is a hallmark of aging and caused by a shift in the lactate dehydrogenase A/B ratio. Proc Natl Acad Sci USA 107:20087–20092PubMedPubMedCentralCrossRef Ross JM, Öberg J, Brené S, Coppotelli G, Terzioglu M, Pernold K, Goiny M, Sitnikov R, Kehr J, Trifunovic A, Larsson NG, Hoffer BJ, Olson L (2010) High brain lactate is a hallmark of aging and caused by a shift in the lactate dehydrogenase A/B ratio. Proc Natl Acad Sci USA 107:20087–20092PubMedPubMedCentralCrossRef
142.
go back to reference Franceschi C, Bonafé M, Valensin S, Olivieri F, De Luca M, Ottaviani E, De Benedictis G (2000) Inflammaging. An evolutionary perspective on immunosenescence. Ann N Y Acad Sci 908:244–254PubMedCrossRef Franceschi C, Bonafé M, Valensin S, Olivieri F, De Luca M, Ottaviani E, De Benedictis G (2000) Inflammaging. An evolutionary perspective on immunosenescence. Ann N Y Acad Sci 908:244–254PubMedCrossRef
143.
go back to reference Fonken LK, Frank MG, Gaudet AD, Maier SF (2018) Stress and aging act through common mechanisms to elicit neuroinflammatory priming. Brain Behav Immun 73:133–148PubMedPubMedCentralCrossRef Fonken LK, Frank MG, Gaudet AD, Maier SF (2018) Stress and aging act through common mechanisms to elicit neuroinflammatory priming. Brain Behav Immun 73:133–148PubMedPubMedCentralCrossRef
144.
go back to reference Cornejo F, von Bernhardi R (2016) Age-dependent changes in the activation and regulation of microglia. Adv Exp Med Biol 949:205–226PubMedCrossRef Cornejo F, von Bernhardi R (2016) Age-dependent changes in the activation and regulation of microglia. Adv Exp Med Biol 949:205–226PubMedCrossRef
145.
146.
go back to reference Tay TL, Savage JC, Hui CW, Bisht K, Tremblay MÈ (2017) Microglia across the lifespan: from origin to function in brain development, plasticity and cognition. J Physiol 595:1929–1945PubMedCrossRef Tay TL, Savage JC, Hui CW, Bisht K, Tremblay MÈ (2017) Microglia across the lifespan: from origin to function in brain development, plasticity and cognition. J Physiol 595:1929–1945PubMedCrossRef
147.
go back to reference Wolf SA, Boddeke HW, Kettenmann H (2017) Microglia in physiology and disease. Annu Rev Physiol 79:619–643PubMedCrossRef Wolf SA, Boddeke HW, Kettenmann H (2017) Microglia in physiology and disease. Annu Rev Physiol 79:619–643PubMedCrossRef
149.
go back to reference Damani MR, Zhao L, Fontainhas AM, Amaral J, Fariss RN, Wong WT (2011) Age-related alterations in the dynamic behavior of microglia. Aging Cell 10:263–276PubMedCrossRef Damani MR, Zhao L, Fontainhas AM, Amaral J, Fariss RN, Wong WT (2011) Age-related alterations in the dynamic behavior of microglia. Aging Cell 10:263–276PubMedCrossRef
150.
go back to reference Niraula A, Sheridan JF, Godbout JP (2017) Microglia priming with aging and stress. Neuropsychopharmacology 42:318–333PubMedCrossRef Niraula A, Sheridan JF, Godbout JP (2017) Microglia priming with aging and stress. Neuropsychopharmacology 42:318–333PubMedCrossRef
151.
go back to reference Bachstetter AD, Ighodaro ET, Hassoun Y, Aldeiri D, Neltner JH, Patel E, Abner EL, Nelson PT (2017) Rod-shaped microglia morphology is associated with aging in 2 human autopsy series. Neurobiol Aging 52:98–105PubMedPubMedCentralCrossRef Bachstetter AD, Ighodaro ET, Hassoun Y, Aldeiri D, Neltner JH, Patel E, Abner EL, Nelson PT (2017) Rod-shaped microglia morphology is associated with aging in 2 human autopsy series. Neurobiol Aging 52:98–105PubMedPubMedCentralCrossRef
152.
go back to reference Bisht K, Sharma KP, Lecours C, Sánchez MG, El Hajj H, Milior G, Olmos-Alonso A, Gómez-Nicola D, Luheshi G, Vallières L, Branchi I, Maggi L, Limatola C, Butovsky O, Tremblay MÈ (2016) Dark microglia: a new phenotype predominantly associated with pathological states. Glia 64:826–839PubMedPubMedCentralCrossRef Bisht K, Sharma KP, Lecours C, Sánchez MG, El Hajj H, Milior G, Olmos-Alonso A, Gómez-Nicola D, Luheshi G, Vallières L, Branchi I, Maggi L, Limatola C, Butovsky O, Tremblay MÈ (2016) Dark microglia: a new phenotype predominantly associated with pathological states. Glia 64:826–839PubMedPubMedCentralCrossRef
153.
go back to reference Ravji KS, Mishra MK, Michaels NJ, Rivest S, Stys PK, Yong VW (2016) Immunosenescence of microglia and macrophages: impact of the ageing central nervous system. Brain 139:653–661CrossRef Ravji KS, Mishra MK, Michaels NJ, Rivest S, Stys PK, Yong VW (2016) Immunosenescence of microglia and macrophages: impact of the ageing central nervous system. Brain 139:653–661CrossRef
154.
go back to reference Uchikado H, Akiyama H, Kondo H, Ikeda K, Tsushiya K, Kato M, Oda T, Togo T, Iseki E, Kosaka K (2004) Activation of vascular endothelial cells and perivascular cells by systemic inflammation – an immunohistochemical study of postmortem human brain tissues. Acta Neuropathol 107:341–351PubMedCrossRef Uchikado H, Akiyama H, Kondo H, Ikeda K, Tsushiya K, Kato M, Oda T, Togo T, Iseki E, Kosaka K (2004) Activation of vascular endothelial cells and perivascular cells by systemic inflammation – an immunohistochemical study of postmortem human brain tissues. Acta Neuropathol 107:341–351PubMedCrossRef
155.
go back to reference Perry VH, Holmes C (2014) Microglial priming in neurodegenerative diseases. Nat Rev Neurol 10:217–224PubMedCrossRef Perry VH, Holmes C (2014) Microglial priming in neurodegenerative diseases. Nat Rev Neurol 10:217–224PubMedCrossRef
156.
go back to reference Safaiyan S, Kannaiyan N, Snaidero N, Brioschi S, Biber K, Yona S, Edinger AL, Jung S, Rossner MJ, Simons M (2016) Age-related myelin degradation burdens the clearance function of microglia during aging. Nat Neurosci 19:995–998PubMedPubMedCentralCrossRef Safaiyan S, Kannaiyan N, Snaidero N, Brioschi S, Biber K, Yona S, Edinger AL, Jung S, Rossner MJ, Simons M (2016) Age-related myelin degradation burdens the clearance function of microglia during aging. Nat Neurosci 19:995–998PubMedPubMedCentralCrossRef
157.
go back to reference Piva S, McCreadie VA, Latronico N (2015) Neuroinflammation in sepsis: sepsis associated delirium. Cardiovasc Hematol Disord Drug Targets 15:10–18PubMedCrossRef Piva S, McCreadie VA, Latronico N (2015) Neuroinflammation in sepsis: sepsis associated delirium. Cardiovasc Hematol Disord Drug Targets 15:10–18PubMedCrossRef
158.
go back to reference Johanson A, Olsson T, Carlberg B, Karlsson K, Fagerlund M (1997) Hypercorticolism after stroke – partly cytokine-mediated? J Neurol Sci 147:43–47CrossRef Johanson A, Olsson T, Carlberg B, Karlsson K, Fagerlund M (1997) Hypercorticolism after stroke – partly cytokine-mediated? J Neurol Sci 147:43–47CrossRef
159.
go back to reference Cerejeira J, Lagarto L, Mukaetova-Ladinska EB (2014) The immunology of delirium. Neuroimmunomodulation 21:72–78PubMedCrossRef Cerejeira J, Lagarto L, Mukaetova-Ladinska EB (2014) The immunology of delirium. Neuroimmunomodulation 21:72–78PubMedCrossRef
160.
go back to reference Dantzer R, O’Connor JC, Freund GG, Johnson RW, Kelley KW (2008) From inflammation to sickness and depression: when the immune system subjugates the brain. Nat Rev Neurosci 9:46–56PubMedPubMedCentralCrossRef Dantzer R, O’Connor JC, Freund GG, Johnson RW, Kelley KW (2008) From inflammation to sickness and depression: when the immune system subjugates the brain. Nat Rev Neurosci 9:46–56PubMedPubMedCentralCrossRef
161.
go back to reference van Gool WA, van de Beek D, Eikelenboom P (2010) Systemic infection and delirium: when cytokines and acetylcholine collide. Lancet 375:773–775PubMedCrossRef van Gool WA, van de Beek D, Eikelenboom P (2010) Systemic infection and delirium: when cytokines and acetylcholine collide. Lancet 375:773–775PubMedCrossRef
162.
go back to reference van Munster BC, Bisschop PH, Zwinderman AH, Korevaar JC, Endert E, Wiersinga WJ, van Oosten HE, Goslings JC, de Rooij SE (2010) Cortisol, interleukins and S100B in delirium in the elderly. Brain Cogn 74:18–23PubMedCrossRef van Munster BC, Bisschop PH, Zwinderman AH, Korevaar JC, Endert E, Wiersinga WJ, van Oosten HE, Goslings JC, de Rooij SE (2010) Cortisol, interleukins and S100B in delirium in the elderly. Brain Cogn 74:18–23PubMedCrossRef
163.
164.
go back to reference Vasunilashom SM, Ngo L, Inouye SK, Libermann TA, Jones RN, Alsop DC, Guess J, Jastrzebski S, McElhaney JE, Kuchel GA, Marcantonio ER (2015) Cytokines and postoperative delirium in older patients undergoing major elective surgery. J Gerontol A Biol Sci Med Sci 70:1289–1295CrossRef Vasunilashom SM, Ngo L, Inouye SK, Libermann TA, Jones RN, Alsop DC, Guess J, Jastrzebski S, McElhaney JE, Kuchel GA, Marcantonio ER (2015) Cytokines and postoperative delirium in older patients undergoing major elective surgery. J Gerontol A Biol Sci Med Sci 70:1289–1295CrossRef
168.
go back to reference van Munster BC, Aronica E, Zwinderman AH, Eikelenboom P, Cunningham C, de Rooij SE (2011) Neuroinflammation in delirium: a postmortem case-control study. Rejuvenation Res 14:615–622PubMedPubMedCentralCrossRef van Munster BC, Aronica E, Zwinderman AH, Eikelenboom P, Cunningham C, de Rooij SE (2011) Neuroinflammation in delirium: a postmortem case-control study. Rejuvenation Res 14:615–622PubMedPubMedCentralCrossRef
169.
go back to reference Beloosesky Y, Hendel D, Weiss A, Hershkovicz A, Grinblat J, Pirotsky A, Barak V (2007) Cytokines and C-reactive protein production in hip-fracture-operated elderly patients. J Gerontol A Biol Sci Med Sci 62:420–426PubMedCrossRef Beloosesky Y, Hendel D, Weiss A, Hershkovicz A, Grinblat J, Pirotsky A, Barak V (2007) Cytokines and C-reactive protein production in hip-fracture-operated elderly patients. J Gerontol A Biol Sci Med Sci 62:420–426PubMedCrossRef
170.
go back to reference de Rooij SE, van Munster BC, Korevaar JC, Levi M (2007) Cytokines and acute phase response in delirium. J Psychosom Res 62:521–525PubMedCrossRef de Rooij SE, van Munster BC, Korevaar JC, Levi M (2007) Cytokines and acute phase response in delirium. J Psychosom Res 62:521–525PubMedCrossRef
171.
go back to reference Cape E, Hall RJ, van Munster BC, de Vries A, Howie SE, Pearson A, Middleton SD, Gillies F, Armstrong IR, White TO, Cunningham C, de Rooij SE, MacLullich AM (2014) Cerebrospinal fluid markers of neuroinflammation in delirium: a role for interleukin-1β in delirium after hip fracture. J Psychosom Res 77:219–225PubMedPubMedCentralCrossRef Cape E, Hall RJ, van Munster BC, de Vries A, Howie SE, Pearson A, Middleton SD, Gillies F, Armstrong IR, White TO, Cunningham C, de Rooij SE, MacLullich AM (2014) Cerebrospinal fluid markers of neuroinflammation in delirium: a role for interleukin-1β in delirium after hip fracture. J Psychosom Res 77:219–225PubMedPubMedCentralCrossRef
172.
go back to reference Neerland BE, Hall RJ, Seljeflot I, Frihagen F, MacLullich AM, Raeder J, Wyller TB, Watne LO (2016) Associations between delirium and preoperative cerebrospinal fluid C-reactive protein, interleukin-6, and interleukin-6 receptor in individuals with acute hip fracture. J Am Geriatr Soc 64:1456–1463PubMedCrossRef Neerland BE, Hall RJ, Seljeflot I, Frihagen F, MacLullich AM, Raeder J, Wyller TB, Watne LO (2016) Associations between delirium and preoperative cerebrospinal fluid C-reactive protein, interleukin-6, and interleukin-6 receptor in individuals with acute hip fracture. J Am Geriatr Soc 64:1456–1463PubMedCrossRef
173.
go back to reference Slor CJ, Witlox J, Adamis D, Jansen RW, Houdijk AP, van Gool WA, de Jonghe JF, Eikelenboom P (2019) The trajectory of C-reactive protein serum levels in older hip fracture patients with postoperative delirium. Int J Geriatr Psychiatr 34:1438–1446CrossRef Slor CJ, Witlox J, Adamis D, Jansen RW, Houdijk AP, van Gool WA, de Jonghe JF, Eikelenboom P (2019) The trajectory of C-reactive protein serum levels in older hip fracture patients with postoperative delirium. Int J Geriatr Psychiatr 34:1438–1446CrossRef
174.
go back to reference Sajjat MU, Blennow K, Knapskog AB, Idland AV, Chaudhry FA, Wyller TB, Zetterberg H, Watne LO (2020) Cerebrospinal fluid levels of interleukin-8 in delirium, dementia, and cognitively healthy patients. J Alzheimers Dis 73:1363–1372CrossRef Sajjat MU, Blennow K, Knapskog AB, Idland AV, Chaudhry FA, Wyller TB, Zetterberg H, Watne LO (2020) Cerebrospinal fluid levels of interleukin-8 in delirium, dementia, and cognitively healthy patients. J Alzheimers Dis 73:1363–1372CrossRef
176.
go back to reference Jackson JC, Gordon SM, Hart RP, Hopkins RO, Ely EW (2004) The association between delirium and cognitive decline: a review of the empirical literature. Neuropsychol Rev 14:87–98PubMedCrossRef Jackson JC, Gordon SM, Hart RP, Hopkins RO, Ely EW (2004) The association between delirium and cognitive decline: a review of the empirical literature. Neuropsychol Rev 14:87–98PubMedCrossRef
177.
go back to reference MacLullich AM, Beaglehole A, Hall RJ, Meagher DJ (2009) Delirium and long-term cognitive impairment. Int Rev Psychiatry 21:30–42PubMedCrossRef MacLullich AM, Beaglehole A, Hall RJ, Meagher DJ (2009) Delirium and long-term cognitive impairment. Int Rev Psychiatry 21:30–42PubMedCrossRef
178.
go back to reference Goldberg TE, Chen C, Wang Y, Jung E, Swanson A, Ing C, Garcia PS, Whittington RA, Moitra V (2020) Association of delirium with long-term cognitive decline. A meta-analysis JAMA Neurol 77:1–9 Goldberg TE, Chen C, Wang Y, Jung E, Swanson A, Ing C, Garcia PS, Whittington RA, Moitra V (2020) Association of delirium with long-term cognitive decline. A meta-analysis JAMA Neurol 77:1–9
179.
go back to reference Gross AL, Jones RN, Haltemariam DA, Fong TG, Tammet D, Quach L, Schmitt E, Yap L, Inouye SK (2012) Delirium and long-term cognitive trajectory among persons with dementia. Arch Intern Med 172:1324–1331PubMedPubMedCentralCrossRef Gross AL, Jones RN, Haltemariam DA, Fong TG, Tammet D, Quach L, Schmitt E, Yap L, Inouye SK (2012) Delirium and long-term cognitive trajectory among persons with dementia. Arch Intern Med 172:1324–1331PubMedPubMedCentralCrossRef
180.
181.
go back to reference Davis DH, Muniz-Terrera G, Keage H, Rahkonen T, Oinas M, Matthews FE, Cunningham C, Polvikoski T, Sulkava R, MacLullich AM, Brayne C (2012) Delirium is a strong risk factor for dementia in the oldest-old: a population-based cohort study. Brain 135:2809–2816PubMedPubMedCentralCrossRef Davis DH, Muniz-Terrera G, Keage H, Rahkonen T, Oinas M, Matthews FE, Cunningham C, Polvikoski T, Sulkava R, MacLullich AM, Brayne C (2012) Delirium is a strong risk factor for dementia in the oldest-old: a population-based cohort study. Brain 135:2809–2816PubMedPubMedCentralCrossRef
182.
go back to reference Davis DH, Muniz-Terrera G, Keage HA, Stephan BC, Fleming J, Ince PG, Matthews FE, Cunningham C, Ely EW, MacLullick AMJ, Brayne C, Epidemiological Clinicopathological Studies in Europe (EClipSE) Collaborative Members (2017) Association of delirium with cognitive decline in late life. A neuropathologic study of 3 population-based cohort studies. JAMA Psychiatry 74:244–251PubMedPubMedCentralCrossRef Davis DH, Muniz-Terrera G, Keage HA, Stephan BC, Fleming J, Ince PG, Matthews FE, Cunningham C, Ely EW, MacLullick AMJ, Brayne C, Epidemiological Clinicopathological Studies in Europe (EClipSE) Collaborative Members (2017) Association of delirium with cognitive decline in late life. A neuropathologic study of 3 population-based cohort studies. JAMA Psychiatry 74:244–251PubMedPubMedCentralCrossRef
183.
go back to reference Erten-Lyons D, Dodge HH, Woltjer R, Silbert LC, Howieson DB, Kramer P, Kaye JA (2013) Neuropathologic basis of age-associated brain atrophy. JAMA Neurol 70:616–622PubMedPubMedCentralCrossRef Erten-Lyons D, Dodge HH, Woltjer R, Silbert LC, Howieson DB, Kramer P, Kaye JA (2013) Neuropathologic basis of age-associated brain atrophy. JAMA Neurol 70:616–622PubMedPubMedCentralCrossRef
184.
go back to reference Xekardaki A, Kövari E, Gold G, Papadimitropoulou A, Giacobini E, Herrmann F, Giannakopoulos P, Bouras C (2015) Neuropathological changes in aging brain. Adv Exp Med Biol 821:11–17PubMedCrossRef Xekardaki A, Kövari E, Gold G, Papadimitropoulou A, Giacobini E, Herrmann F, Giannakopoulos P, Bouras C (2015) Neuropathological changes in aging brain. Adv Exp Med Biol 821:11–17PubMedCrossRef
187.
go back to reference Sharshar T, Carlier R, Bernard F, Guidoux C, Brouland JP, Nardi O, de la Grandmaison GL, Aboab J, Gray F, Menon D, Annane D (2007) Brain lesions in septic shock: a magnetic resonance imaging study. Intensive Care Med 33:798–806PubMedCrossRef Sharshar T, Carlier R, Bernard F, Guidoux C, Brouland JP, Nardi O, de la Grandmaison GL, Aboab J, Gray F, Menon D, Annane D (2007) Brain lesions in septic shock: a magnetic resonance imaging study. Intensive Care Med 33:798–806PubMedCrossRef
188.
go back to reference Morandi A, Rogers BP, Gunther ML, Merkle K, Pandharipande P, Girard TD, Jackson JC, Thompson J, Shintani AK, Geevarghese S, Miller RR 3rd, Canonico A, Cannistraci CJ, Gore JC, Ely EW, Hopkins RO, VISIONS investigation, VISualizing Icu SurvivOrs Neuroradiological Sequelae (2012) The relationship between delirium duration, white matter integrity, and cognitive impairment in intensive care unit survivors as determined by diffusion tensor imaging: the VISIONS prospective cohort magnetic resonance imaging study. Crit Care Med 40:2182–2189PubMedPubMedCentralCrossRef Morandi A, Rogers BP, Gunther ML, Merkle K, Pandharipande P, Girard TD, Jackson JC, Thompson J, Shintani AK, Geevarghese S, Miller RR 3rd, Canonico A, Cannistraci CJ, Gore JC, Ely EW, Hopkins RO, VISIONS investigation, VISualizing Icu SurvivOrs Neuroradiological Sequelae (2012) The relationship between delirium duration, white matter integrity, and cognitive impairment in intensive care unit survivors as determined by diffusion tensor imaging: the VISIONS prospective cohort magnetic resonance imaging study. Crit Care Med 40:2182–2189PubMedPubMedCentralCrossRef
189.
go back to reference Cavallari M, Dai W, Guttmann CR, Meier DS, Ngo LH, Hshieh TT, Fong TG, Schmitt E, Press DZ, Travison TG, Marcantonio ER, Jones RN, Inouye SK, Alsop DC, SAGES Study Group (2017) Longitudinal diffusion changes following postoperative delirium in older people without dementia. Neurology 89:1020–1027PubMedPubMedCentralCrossRef Cavallari M, Dai W, Guttmann CR, Meier DS, Ngo LH, Hshieh TT, Fong TG, Schmitt E, Press DZ, Travison TG, Marcantonio ER, Jones RN, Inouye SK, Alsop DC, SAGES Study Group (2017) Longitudinal diffusion changes following postoperative delirium in older people without dementia. Neurology 89:1020–1027PubMedPubMedCentralCrossRef
190.
go back to reference Gunther ML, Morandi A, Krauskopf E, Pandharipande P, Girard TD, Jackson JC, Thompson J, Shintani AK, Geevarghese S, Miller RR 3rd, Canonico A, Merkle K, Cannistraci CJ, Rogers BP, Gatenby JC, Heckers S, Gore JC, Hopkins RO, Ely EW, VISIONS investigartion, VISualizing Icu SurvivOrs Neuroradiological Sequelae (2012) The association between brain volumes, delirium duration, and cognitive outcomes in intensive care unit survivors: the VISIONS cohort magnetic resonance imaging study. Clin Care Med 40:2022–2032CrossRef Gunther ML, Morandi A, Krauskopf E, Pandharipande P, Girard TD, Jackson JC, Thompson J, Shintani AK, Geevarghese S, Miller RR 3rd, Canonico A, Merkle K, Cannistraci CJ, Rogers BP, Gatenby JC, Heckers S, Gore JC, Hopkins RO, Ely EW, VISIONS investigartion, VISualizing Icu SurvivOrs Neuroradiological Sequelae (2012) The association between brain volumes, delirium duration, and cognitive outcomes in intensive care unit survivors: the VISIONS cohort magnetic resonance imaging study. Clin Care Med 40:2022–2032CrossRef
191.
go back to reference van Munster BC, Korevaar JC, Korse CM, Bonfrer JM, Zwinderman AH, de Rooij SE (2010) Serum S100B in elderly patients with and without delirium. Int J Geriatr Psychiatry 25:234–239PubMedCrossRef van Munster BC, Korevaar JC, Korse CM, Bonfrer JM, Zwinderman AH, de Rooij SE (2010) Serum S100B in elderly patients with and without delirium. Int J Geriatr Psychiatry 25:234–239PubMedCrossRef
192.
go back to reference Hatherill S, Fisher AJ (2010) Delirium in children and adolescents: a systematic review of the literature. J Psychosom Res 68:337–344PubMedCrossRef Hatherill S, Fisher AJ (2010) Delirium in children and adolescents: a systematic review of the literature. J Psychosom Res 68:337–344PubMedCrossRef
193.
go back to reference Harris J, Ramelet AS, van Dijk M, Pokorna P, Wielenga J, Tume L, Tibboel D, Ista E (2016) Clinical recommendations for pain, sedation, withdrawal and delirium assessment in critically ill infants and children: an ESPNIC position statement for healthcare professionals. Intensive Care Med 42:972–986PubMedPubMedCentralCrossRef Harris J, Ramelet AS, van Dijk M, Pokorna P, Wielenga J, Tume L, Tibboel D, Ista E (2016) Clinical recommendations for pain, sedation, withdrawal and delirium assessment in critically ill infants and children: an ESPNIC position statement for healthcare professionals. Intensive Care Med 42:972–986PubMedPubMedCentralCrossRef
195.
go back to reference Patel AK, Bell MJ, Traube C (2017) Delirium in pediatric critical care. Pediatr Clin N Am 64:1117–1132CrossRef Patel AK, Bell MJ, Traube C (2017) Delirium in pediatric critical care. Pediatr Clin N Am 64:1117–1132CrossRef
196.
go back to reference Smith HA, Gangopadhyay M, Goben CM, Jakobowski NL, Chestnut MH, Savage S, Rutherford MT, Denton D, Thomson JL, Chandrasekhar R, Acton M, Newman J, Noori HP, Terrell MK, Williams SR, Griffith K, Cooper TJ, Ely EW, Fuchs DC, Pandharipande PP (2016) The preschool confusion assessment method for the ICU: valid and reliable delirium monitoring for critically ill infants and children. Crit Care Med 44:592–600PubMedPubMedCentralCrossRef Smith HA, Gangopadhyay M, Goben CM, Jakobowski NL, Chestnut MH, Savage S, Rutherford MT, Denton D, Thomson JL, Chandrasekhar R, Acton M, Newman J, Noori HP, Terrell MK, Williams SR, Griffith K, Cooper TJ, Ely EW, Fuchs DC, Pandharipande PP (2016) The preschool confusion assessment method for the ICU: valid and reliable delirium monitoring for critically ill infants and children. Crit Care Med 44:592–600PubMedPubMedCentralCrossRef
Metadata
Title
Why is delirium more frequent in the elderly?
Author
Orso Bugiani
Publication date
01-08-2021
Publisher
Springer International Publishing
Published in
Neurological Sciences / Issue 8/2021
Print ISSN: 1590-1874
Electronic ISSN: 1590-3478
DOI
https://doi.org/10.1007/s10072-021-05339-3

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