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Chapter 15 - Behavioral Neurology of Stroke

from Section 3 - Diagnostics and Syndromes

Published online by Cambridge University Press:  16 May 2019

Michael Brainin
Affiliation:
Donau-Universität Krems, Austria
Wolf-Dieter Heiss
Affiliation:
Universität zu Köln
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Publisher: Cambridge University Press
Print publication year: 2019

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References

Binder, JR, Desai, RH. The neurobiology of semantic memory. Trends Cogn Sci 2011; 15: 527–36.CrossRefGoogle ScholarPubMed
González-Fernández, M, Christian, AB, Davis, C, Hillis, AE. Role of aphasia in discharge location after stroke. Arch Phys Med Rehabil 2013; 94: 851–5.CrossRefGoogle ScholarPubMed
Kümmerer, D, Hartwigsen, G, Kellmeyer, P, et al. Damage to ventral and dorsal language pathways in acute aphasia. Brain 2013; 136: 619–29.Google Scholar
Kreisler, A, Godefroy, O, Delmaire, C, et al. The anatomy of aphasia revisited. Neurology 2000; 4: 1117–23.Google Scholar
Capitani, E, Laiacona, M, Pagani, R, et al. Posterior cerebral artery infarcts and semantic category dissociations: a study of 28 patients. Brain 2009; 132: 965–81.Google Scholar
Hickok, G, Poeppel, D. The cortical organization of speech processing. Nat Rev Neurosci 2007; 8: 393402.CrossRefGoogle ScholarPubMed
Egidi, G, Caramazza, A. Cortical systems for local and global integration in discourse comprehension. Neuroimage 2013; 71: 5974.CrossRefGoogle ScholarPubMed
Kümmerer, D, Hartwigsen, G, Kellmeyer, P, et al. Damage to ventral and dorsal language pathways in acute aphasia. Brain 2013; 136: 619–29.CrossRefGoogle ScholarPubMed
Saur, D, Lange, R, Baumgaertner, A, et al. Dynamics of language reorganization after stroke. Brain 2006; 129: 1371–84.CrossRefGoogle ScholarPubMed
Fridriksson, J, Richardson, JD, Fillmore, P, Cai, B. Left hemisphere plasticity and aphasia recovery. Neuroimage 2012; 60: 854–63.CrossRefGoogle ScholarPubMed
Plaut, D, McClelland, J, Seidenberg, M, Patterson, K. Understanding normal and impaired word reading. Psychol Rev 1996; 103: 56115.CrossRefGoogle ScholarPubMed
Cloutman, LL, Newhart, M, Davis, CL, Heidler-Gary, J, Hillis, AE. Neuroanatomical correlates of oral reading in acute left hemispheric stroke. Brain Lang 2011; 116: 1421.Google Scholar
Philipose, LE, Gottesman, RF, Newhart, M, et al. Neural regions essential for reading and spelling of words and pseudowords. Ann Neurol 2007; 62: 481–92.Google Scholar
Azouvi, P, Samuel, C, Louis-Dreyfus, A, et al. French Collaborative Study Group on Assessment of Unilateral Neglect (GEREN/GRECO). Sensitivity of clinical and behavioural tests of spatial neglect after right hemisphere stroke. J Neurol Neurosurg Psychiatry 2002; 73: 160–6.Google Scholar
Corbetta, M, Shulman, GL. Spatial neglect and attention networks. Ann Rev Neurosci 2011; 34: 569–99.Google Scholar
Shirani, P, Thorn, J, Davis, C, et al. Severity of hypoperfusion in distinct brain regions predicts severity of hemispatial neglect in different reference frames. Stroke 2009; 40: 3563–6.Google Scholar
Szabo, K, Förster, A, Jäger, T, et al. Hippocampal lesion patterns in acute posterior cerebral artery stroke: clinical and MRI findings. Stroke 2009; 40: 2042–5.Google Scholar
Graff-Radford, NR, Damasio, H, Yamada, T, Eslinger, PJ, Damasio, AR. Nonhaemorrhagic thalamic infarction. Clinical, neuropsychological and electrophysiological findings in four anatomical groups defined by computerized tomography. Brain 1985; 108: 485516.Google Scholar
Hackett, ML, Anderson, CS. Health outcomes 1 year after subarachnoid hemorrhage: an international population-based study. The Australian Cooperative Research on Subarachnoid Hemorrhage Study Group. Neurology 2000; 55: 658–62.CrossRefGoogle Scholar
Bendel, P, Koivisto, T, Hänninen, T, et al. Subarachnoid hemorrhage is followed by temporomesial volume loss: MRI volumetric study. Neurology 2006; 67: 575–82.Google Scholar
Gilboa, A, Alain, C, Stuss, DT, et al. Mechanisms of spontaneous confabulations: a strategic retrieval account. Brain 2006; 129: 1399–414.CrossRefGoogle ScholarPubMed
Collette, F, Hogge, M, Salmon, E, van der Linden, M. Exploration of the neural substrates of executive functioning by functional neuroimaging. Neuroscience 2006; 139: 209–21.Google Scholar
Nys, GM, van Zandvoort, MJ, de Kort, PL, et al. Cognitive disorders in acute stroke: prevelance and clinical determinants. Cerebrovasc Dis 2007; 23: 408–16.Google Scholar
Zinn, S, Bosworth, HB, Hoenig, HM, Swartzwelder, HS. Executive function deficits in acute stroke. Arch Phys Med Rehabil 2007; 88: 173–80.Google Scholar
Keiter, KT, Copeland, D, Bernardini, GL, et al. Predictors of cognitive dysfunction after subarachnoid hemorrhage. Stroke 2002; 33: 200–8.Google Scholar
James, TW, Culham, J, Humphrey, GK, Milner, AD, Goodale, MA. Ventral occipital lesions impair object recognition but not object-directed grasping: an fMRI study. Brain 2003; 126: 2463–75.CrossRefGoogle Scholar
Bouvier, SE, Engel, SA. Behavioral deficits and cortical damage loci in cerebral achromatopsia. Cereb Cortex 2006; 16: 183–91.Google Scholar
Gobbini, MI, Haxby, JV. Neural systems for recognition of familiar faces. Neuropsychologia 2007; 45: 3241.Google Scholar
Sorger, B, Goebel, R, Schiltz, C, Rossion, B. Understanding the functional neuroanatomy of acquired prosopagnosia. Neuroimage 2007; 35: 836–52.Google Scholar
Brandt, T, Steinke, W, Thie, A, Pessin, MS, Caplan, LR. Posterior cerebral artery territory infarcts: clinical features, infarct topography, causes and outcome. Multicenter results and a review of the literature. Cerebrovasc Dis 2000; 10: 170–82.Google Scholar
Dahl, MH, Rønning, OM, Thommessen, B. Delirium in acute stroke – prevalence and risk factors. Acta Neurol Scand Suppl 2010; 190: 3943.Google Scholar
Dostović, Z, Smajlović, D, Sinanović, O, Vidović, M. Duration of delirium in the acute stage of stroke. Acta Clin Croat 2009; 48: 1317.Google Scholar
Hénon, H, Lebert, F, Durieu, I, et al. Confusional state in stroke: relation to preexisting dementia, patient characteristics, and outcome. Stroke 1999; 30: 773–9.CrossRefGoogle ScholarPubMed
Caeiro, L, Ferro, JM, Albuquerque, R, Figueira, ML. Delirium in the first days of acute stroke. J Neurol 2004; 251: 171–8.Google Scholar
Gustafson, Y, Olsson, T, Eriksson, S, Asplund, K, Bucht, G. Acute confusional states (delirium) in stroke patients. Cerebrovasc Dis 1991; 1: 257–64.Google Scholar
Sheng, AZ, Shen, Q, Cordato, D, Zhang, YY, Yin Chan, DK. Delirium within three days of stroke in a cohort of elderly patients. J Am Geriatr Soc 2006; 54: 1192–8.Google Scholar
Caeiro, L, Menger, C, Ferro, JM, Albuquerque, R, Figueira, ML. Delirium in acute subarachnoid haemorrhage. Cerebrovasc Dis 2005; 19: 31–8.Google Scholar
Shi, Q, Presutti, R, Selchen, D, Saposnik, G. Delirium in acute stroke: a systematic review and meta-analysis. Stroke 2012; 43: 645–9.Google Scholar
Oldenbeuving, AW, de Kort, PL, van Eck van der Sluijs, JF, Kappelle, LJ, Roks, G. An early prediction of delirium in the acute phase after stroke. J Neurol Neurosurg Psychiatry 2014; 85: 431–4.Google Scholar
Kim, JS, Choi, S, Kwon, SU, Seo, YS. Inability to control anger or aggression after stroke. Neurology 2002; 58: 1106–8.CrossRefGoogle ScholarPubMed
Borteyrou, X, Bruchon-Schweitzer, M, Spielberger, CD. The French adaptation of the STAXI-2, C.D. Spielberger's State-trait anger expression inventory. Encephale 2008; 34: 249–55.Google Scholar
Ghika-Schmid, F, van Melle, G, Guex, P, Bogousslavsky, L. Subjective experience and behaviour in acute stroke: the Lausanne Emotion in Acute Stroke Study. Neurology 1999; 52: 22–8.Google Scholar
Paradiso, S, Robinson, RG, Arndt, S. Self-reported aggressive behavior in patients with stroke. J Nerv Ment Dis 1996; 184: 746–53.Google Scholar
Santos, CO, Caeiro, L, Ferro, JM, Albuquerque, R, Luísa Figueira, M. Anger, hostility and aggression in the first days of acute stroke. Eur J Neurol 2006; 13: 351–8.Google Scholar
Chan, KL, Campayo, A, Moser, DJ, Arndt, S, Robinson, RG. Aggressive behavior in patients with stroke: association with psychopathology and results of antidepressant treatment on aggression. Arch Phys Med Rehabil 2006; 87: 793–8.Google Scholar
Ramos-Perdigués, S, Mané-Santacana, A, Pintor-Pérez, L. Prevalence and associated factors of anger post stroke: a systematic review. Rev Neurol 2015; 60: 481–9.Google Scholar
Santos, AC, Ferro, JM. The impact of anger in adherence to treatment and beliefs about disease 1 year after stroke. J Neurol 2017; 264: 1929–38.CrossRefGoogle ScholarPubMed
Choi-Kwon, S, Han, SW, Kwon, SU, et al. Fluoxetine treatment in poststroke depression, emotional incontinence, and anger proneness: a double-blind, placebo-controlled study. Stroke 2006; 37: 156–61.Google Scholar
Kumral, E, Oztürk, O. Delusional state following acute stroke. Neurology 2004; 62: 110–13.Google Scholar
Lampl, Y, Lorberboym, M, Gilad, R, Boaz, M, Sadeh, M. Auditory hallucinations in acute stroke. Behav Neurol 2005; 16: 211–16.CrossRefGoogle ScholarPubMed
House, A, Dennis, M, Molyneux, A, Warlow, C, Hawton, K. Emotionalism after stroke. BMJ 1989; 298: 991–4.Google Scholar
Wilson, SAK. Some problems in neurology. II. Pathological laughing and crying. J Neurol Psychopathol 1923; 4: 299333.Google Scholar
Coelho, M, Ferro, JM. Fou rire prodromique. Case report and systematic review of literature. Cerebrovasc Dis 2003; 16: 101–4.Google Scholar
Campbell Burton, CA, Murray, J, Holmes, J, et al. Frequency of anxiety after stroke: a systematic review and meta-analysis of observational studies. Int J Stroke 2013; 8: 545–59.Google Scholar
Ayerbe, L, Ayis, SA, Crichton, S, Wolfe, CD, Rudd, AG. Natural history, predictors and associated outcomes of anxiety up to 10 years after stroke: the South London Stroke Register. Age Ageing 2014; 43: 542–7.Google Scholar
Morrison, V, Pollard, B, Johnston, M, MacWalter, R. Anxiety and depression 3 years following stroke: demographic, clinical, and psychological predictors. J Psychosom Res 2005; 59: 209–13.Google Scholar
Campbell Burton, CA, Holmes, J, Murray, J, et al. Interventions for treating anxiety after stroke. Cochrane Database Syst Rev 2011; 12: CD008860.Google Scholar
Mead, GE, Hsieh, CF, Lee, R, et al. Selective serotonin reuptake inhibitors (SSRIs) for stroke recovery. Cochrane Database Syst Rev 2012; 11: CD009286.Google Scholar
Favrole, P, Jehel, L, Levy, P, et al. Frequency and predictors of post-traumatic stress disorder after stroke: a pilot study. J Neurol Sci 2013; 327: 3540.Google Scholar
Bruggimann, L, Annoni, JM, Staub, F, et al. Chronic post-traumatic stress symptoms after nonsevere stroke. Neurology 2006; 66: 513–16.Google Scholar
Santos, CO, Caeiro, L, Ferro, JM, Figueira, ML. Mania and stroke: a systematic review. Cerebrovasc Dis 2011; 32: 1121.CrossRefGoogle ScholarPubMed
Hong, JP, Park, S, Ahn, SH, Kim, JS. Factors associated with post-stroke suicidal death. J Psychiatr Res 2018; 96: 135–7.Google Scholar
Santos, CO, Caeiro, L, Ferro, JM, Figueira, ML. A study of suicidal thoughts in acute stroke patients. J Stroke Cerebrovasc Dis 2012; 21: 749–54.Google Scholar
Bartoli, F, Pompili, M, Lillia, N, et al. Rates and correlates of suicidal ideation among stroke survivors: a meta-analysis. J Neurol Neurosurg Psychiatry 2017; 88: 498504.Google Scholar
Ayerbe, L, Ayis, S, Wolfe, CD, Rudd, AG. Natural history, predictors and outcomes of depression after stroke: systematic review and meta-analysis. Br J Psychiatry 2013; 202: 1421.Google Scholar
Hackett, ML, Pickles, K. Part I: frequency of depression after stroke: an updated systematic review and meta-analysis of observational studies. Int J Stroke 2014; 9: 1017–25.Google Scholar
Caeiro, L, Ferro, JM, Santos, CO, Figueira, ML. Depression in acute stroke. J Psychiatry Neurosci 2006; 31: 377–83.Google ScholarPubMed
Douven, E, Köhler, S, Rodriguez, MMF, et al. Imaging markers of post-stroke depression and apathy: a systematic review and meta-analysis. Neuropsychol Rev 2017; 27: 202–19.Google Scholar
Hackett, ML, Anderson, CS, House, A, Xia, J. Interventions for treating depression after stroke. Cochrane Database Syst Rev 2008; 4: CD003437.Google Scholar
Ferro, JM, Caeiro, L, Figueira, ML. Neuropsychiatric sequelae of stroke. Nat Rev Neurol 2016; 12: 269–8.CrossRefGoogle ScholarPubMed
Caeiro, L, Ferro, JM, Costa, J. Apathy secondary to stroke: a systematic review and meta-analysis. Cerebrovasc Dis 2013; 35: 2339.CrossRefGoogle ScholarPubMed
van Dalen, JW, Moll van Charante, EP, Nederkoorn, PJ, van Gool, WA, Richard, E. Poststroke apathy. Stroke 2013; 44: 851–60.Google Scholar

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