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Research Article

Cognitive performance following spontaneous subarachnoid haemorrhage versus other forms of intracranial haemorrhage

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Pages 68-80 | Received 24 Jun 2012, Accepted 09 Jun 2013, Published online: 24 Jul 2013

References

  • Solomon NA, Glick HA, Russo CJ, Lee J, Schulman KA. Patient preferences for stroke outcomes. Stroke 1994;25:1721–5.
  • Mangold R, Wallenfang T. Posttraumatische und psychiatrische Störungen nach Subarachnoidalblutungen. Nervenheilkunde 2000;19:32–37.
  • Trojanowski T. Early effects of experimental arterial subarachnoid haemorrhage on the cerebral circulation. Part I: Experimental subarachnoid haemorrhage in cat and its pathophysiological effects. Methods of regional cerebral blood flow measurement and evaluation of microcirculation. Acta Neurochir 1984;72:79–94.
  • Tanaka A, Nakayama Y, Yoshinaga S. Cerebral blood flow and intracranial pressure in chronic subdural hematomas. Surg Neurol 1997;47:346–51.
  • Diringer MN. Intracerebral hemorrhage: pathophysiology and management. Crit Care Med 1993;21:1591–603.
  • Al-Khindi T, Macdonald RL, Schweizer TA. Cognitive and functional outcome after aneurysmal subarachnoid hemorrhage. Stroke 2010;41:e519–36.
  • Beseoglu K, Pannes S, Steiger HJ, Hanggi D. Long-term outcome and quality of life after nonaneurysmal subarachnoid hemorrhage. Acta Neurochir (Wien) 2010;152:409–16.
  • Alfieri A, Gazzeri R, Pircher M, Unterhuber V, Schwarz A. A prospective long-term study of return to work after nontraumatic nonaneurysmal subarachnoid hemorrhage. J Clin Neurosci 2011;18:1478–80.
  • Scharbrodt W, Stein M, Schreiber V, Boker DK, Oertel MF. The prediction of long-term outcome after subarachnoid hemorrhage as measured by the Short Form-36 Health Survey. J Clin Neurosci 2009;16:1409–13.
  • Alfieri A, Unterhuber V, Pircher M, et al. Psychosocial and neurocognitive performance after spontaneous nonaneurysmal subarachnoid hemorrhage related to the APOE-epsilon4 genotype: a prospective 5-year follow-up study. J Neurosurg 2008;109: 1019–26.
  • Kapapa T, König K, Heissler H, et al. Healt-related quality of life as amendment to clinical outcome in neurosurgery. Neurol Rehabil 2006;12:37–41.
  • Kapapa T, Rickels E. Health-related quality of life after subarachnoid hemorrhage. Neurol Rehabil 2005;11:21–8.
  • Hunt WE, Hess RM. Surgical risk as related to time of intervention in the repair of intracranial aneurysms. J Neurosurg 1968;28: 14–20.
  • Fisher CM, Kistler JP, Davis JM. Relation of cerebral vasospasm to subarachnoid hemorrhage visualized by computerized tomographic scanning. Neurosurgery 1980;6:1–9.
  • Brickenkamp R. Test d2: Aufmerksamkeits-Belastungs-Test. Göttingen: HogrefeVerlag, 2002.
  • Sturm W, Willmes K, W. H. Leistungsprüfsystem. Göttingen: Hogrefe Verlag, 1993.
  • Amthauer R. Intelligenz-Struktur-Test, IST 70. Göttingen: Hogrefe Verlag, 1973.
  • Amthauer R. Intelligenz-Struktur-Test 2000, I-S-T 2000. Göttingen: Hogrefe Verlag, 1999.
  • Tewes U. Hamburg-Wechsler-Intelligenztest für Erwachsene (HAWIE-R). Bern: Hans Huber Verlag, 2008.
  • Helmstaedter C, Lendt M, Lux S. Verbaler Lern- und Merkfähigkeitstest, VLMT. Göttingen: Hogrefe Verlag, 2001
  • Benton AL. Benton-Test. Göttingen: Hogrefe Verlag, 2009.
  • Lezak MD, Howieson DB, Loring DW. Neuropsychological Assessment. New York: Oxford University Press, 2004.
  • Stender B. Revisions-Test. von Marschner G, editor. Göttingen: Hogrefe Verlag, 2003.
  • Teasdale GM, Drake CG, Hunt W, et al. A universal subarachnoid hemorrhage scale: report of a committee of the World Federation of Neurosurgical Societies. J Neurol Neurosurg Psychiatry 1988;51:1457.
  • Teasdale G, Jennett B. Assessment of coma and impaired consciousness. A practical scale. Lancet 1974;2:81–4.
  • Brihaye J, Frowein RA, Lindgren S. Report on the meeting of the WFNS Neuro-Traumatology Committee. Brussels. I. Coma scaling. Acta Neurochir (Wien) 1976;40:181–6.
  • Egge A, Waterloo K, Sjoholm H, et al. Outcome 1 year after aneurysmal subarachnoid hemorrhage: relation between cognitive performance and neuroimaging. Acta Neurol Scand 2005;112:76–80.
  • Haug T, Sorteberg A, Sorteberg W, et al. Cognitive outcome after aneurysmal subarachnoid hemorrhage: time course of recovery and relationship to clinical, radiological, and management parameters. Neurosurgery 2007;60:649–56; discussion 56–7.
  • Hop JW, Rinkel GJ, Algra A, van Gijn J. Quality of life in patients and partners after aneurysmal subarachnoid hemorrhage. Stroke 1998;29:798–804.
  • Hop JW, Rinkel GJ, Algra A, van Gijn J. Changes in functional outcome and quality of life in patients and caregivers after aneurysmal subarachnoid hemorrhage. J Neurosurg 2001;95: 957–63.
  • Hutter BO, Gilsbach JM. Which neuropsychological deficits are hidden behind a good outcome (Glasgow = I) after aneurysmal subarachnoid hemorrhage?Neurosurgery 1993;33:999–1005; discussion 1005–6.
  • Hutter BO, Kreitschmann-Andermahr I, Mayfrank L, et al. Functional outcome after aneurysmal subarachnoid hemorrhage. Acta Neurochir Suppl 1999;72:157–74.
  • Mayer SA, Kreiter KT, Copeland D, et al. Global and domain-specific cognitive impairment and outcome after subarachnoid hemorrhage. Neurology 2002;59:1750–8.
  • Wermer MJ, Kool H, Albrecht KW, Rinkel GJ. Subarachnoid hemorrhage treated with clipping: long-term effects on employment, relationships, personality, and mood. Neurosurgery 2007;60:91–7; discussion 7–8.
  • Yap EC, Chua KS. Rehabilitation outcome after primary subarachnoid haemorrhage. Brain Inj 2002;16:491–9.
  • Bellebaum C, Schafers L, Schoch B, et al. Clipping versus coiling: neuropsychological follow up after aneurysmal subarachnoid haemorrhage (SAH). J Clin Exp Neuropsychol 2004;26:1081–92.
  • Black DW. Mental changes resulting from subdural haematoma. Br J Psychiatry 1984;145:200–3.
  • Dennis MS. Outcome after brain haemorrhage. Cerebrovasc Dis 2003;16:9–13.
  • Eijkenboom M, Gerlach I, Barker A, Luiten P, van der Staay FJ. Chronic cognitive effects of bilateral subdural haematomas in the rat. Neuroscience 2004;124:523–33.
  • Eijkenboom M, Gerlach I, van der Staay FJ. The effects of subdural haematoma on spatial learning in the rat. Neuroscience 1999;94:373–88.
  • MacLellan CL, Langdon KD, Churchill KP, Granter-Button S, Corbett D. Assessing cognitive function after intracerebral hemorrhage in rats. Behav Brain Res 2009;198:321–8.
  • Scott RB, Eccles F, Lloyd A, Carpenter K. From multidimensional neuropsychological outcomes to a cognitive complication rate: the International Subarachnoid Aneurysm Trial. Trials 2008;9:13.
  • Samra SK, Giordani B, Caveney AF, et al. Recovery of cognitive function after surgery for aneurysmal subarachnoid hemorrhage. Stroke 2007;38:1864–72.
  • Hadjivassiliou M, Tooth CL, Romanowski CA, et al. Aneurysmal SAH: cognitive outcome and structural damage after clipping or coiling. Neurology 2001;56:1672–7.
  • Hutter BO, Kreitschmann-Andermahr I, Gilsbach JM. Cognitive deficits in the acute stage after subarachnoid hemorrhage. Neurosurgery 1998;43:1054–65.
  • Kreiter KT, Copeland D, Bernardini GL, et al. Predictors of cognitive dysfunction after subarachnoid hemorrhage. Stroke 2002;33:200–8.
  • Tidswell P, Dias PS, Sagar HJ, Mayes AR, Battersby RD. Cognitive outcome after aneurysm rupture: relationship to aneurysm site and perioperative complications. Neurology 1995;45:875–82.
  • Hutter BO, Gilsbach JM, Kreitschmann I. Quality of life and cognitive deficits after subarachnoid haemorrhage. Br J Neurosurg 1995;9:465–75.
  • Hutter BO, Gilsbach JM. Early neuropsychological sequelae of aneurysm surgery and subarachnoid haemorrhage. Acta Neurochir (Wien) 1996;138:1370–8; discussion 8–9.
  • Schuiling WJ, Rinkel GJ, Walchenbach R, de Weerd AW. Disorders of sleep and wake in patients after subarachnoid hemorrhage. Stroke 2005;36:578–82.
  • Hutter BO, Kreitschmann-Andermahr I, Gilsbach JM. Health-related quality of life after aneurysmal subarachnoid hemorrhage: impacts of bleeding severity, computerized tomography findings, surgery, vasospasm, and neurological grade. J Neurosurg 2001;94:241–51.
  • Ogden JA, Utley T, Mee EW. Neurological and psychosocial outcome 4 to 7 years after subarachnoid hemorrhage. Neurosurgery 1997;41:25–34.
  • Sonesson B, Saveland H, Ljunggren B, Brandt L. Cognitive functioning after subarachnoid haemorrhage of unknown origin. Acta Neurol Scand 1989;80:400–10.
  • Vilkki J, Holst P, Ohman J, Servo A, Heiskanen O. Cognitive deficits related to computed tomographic findings after surgery for a ruptured intracranial aneurysm. Neurosurgery 1989;25:166–72.
  • Vilkki JS, Juvela S, Siironen J, et al. Relationship of local infarctions to cognitive and psychosocial impairments after aneurysmal subarachnoid hemorrhage. Neurosurgery 2004;55:790–802; discussion 802–3.
  • Ropper AH, Davis KR. Lobar cerebral hemorrhages: acute clinical syndromes in 26 cases. Ann Neurol 1980;8:141–7.
  • O’Donnell HC, Rosand J, Knudsen KA, et al. Apolipoprotein E genotype and the risk of recurrent lobar intracerebral hemorrhage. N Engl J Med 2000;342:240–5.
  • Woo D, Sauerbeck LR, Kissela BM, et al. Genetic and environmental risk factors for intracerebral hemorrhage: preliminary results of a population-based study. Stroke 2002;33:1190–5.
  • Bailey RD, Hart RG, Benavente O, Pearce LA. Recurrent brain hemorrhage is more frequent than ischemic stroke after intracranial hemorrhage. Neurology 2001;56:773–7.
  • Gilbert JJ, Vinters HV. Cerebral amyloid angiopathy: incidence and complications in the aging brain. I. Cerebral hemorrhage. Stroke 1983;14:915–23.
  • Greenberg SM, Briggs ME, Hyman BT, et al. Apolipoprotein E epsilon 4 is associated with the presence and earlier onset of hemorrhage in cerebral amyloid angiopathy. Stroke 1996;27: 1333–7.
  • Greenberg SM, Vonsattel JP, Segal AZ, et al. Association of apolipoprotein E epsilon2 and vasculopathy in cerebral amyloid angiopathy. Neurology 1998;50:961–5.
  • Nicoll JA, Burnett C, Love S, et al. High frequency of apolipoprotein E epsilon 2 allele in hemorrhage due to cerebral amyloid angiopathy. Ann Neurol 1997;41:716–21.
  • Esiri MM, Nagy Z, Smith MZ, Barnetson L, Smith AD. Cerebrovascular disease and threshold for dementia in the early stages of Alzheimer's disease. Lancet 1999;354:919–20.
  • Smith EE, Gurol ME, Eng JA, et al. White matter lesions, cognition, and recurrent hemorrhage in lobar intracerebral hemorrhage. Neurology 2004;63:1606–12.
  • Snowdon DA, Greiner LH, Mortimer JA, Riley KP, Greiner PA, Markesbery WR. Brain infarction and the clinical expression of Alzheimer disease. The Nun Study. JAMA 1997;277:813–7.
  • Vermeer SE, Prins ND, den Heijer T, et al. Silent brain infarcts and the risk of dementia and cognitive decline. N Engl J Med 2003;348:1215–22.
  • Karussis D, Leker RR, Abramsky O. Cognitive dysfunction following thalamic stroke: a study of 16 cases and review of the literature. J Neurol Sci 2000;172:25–9.
  • Kuljic-Obradovic D, Labudovic G, Basurovic N, Savic M. Neuropsychological deficits after bithalamic hemorrhages. J Neurol Sci 2007;257:174–6.
  • Kumral E, Kocaer T, Ertubey NO, Kumral K. Thalamic hemorrhage. A prospective study of 100 patients. Stroke 1995;26:964–70.
  • Kwen PL, Pullicino P, Krenzer R. Reversible impairment in cognition and midbrain hematoma. J Neuroimaging 1998;8:54–5.
  • Radanovic M, Azambuja M, Mansur LL, Porto CS, Scaff M. Thalamus and language: interface with attention, memory and executive functions. Arq Neuropsiquiatr 2003;61:34–42.
  • Radanovic M, Scaff M. Speech and language disturbances due to subcortical lesions. Brain Lang 2003;84:337–52.
  • Stanisic M, Lund-Johansen M, Mahesparan R. Treatment of chronic subdural hematoma by burr-hole craniostomy in adults: influence of some factors on postoperative recurrence. Acta Neurochir (Wien) 2005;147:1249–56; discussion 56–7.
  • Schebesch KM, Woertgen C, Rothoerl RD, Ullrich OW, Brawanski AT. Cognitive decline as an important sign for an operable cause of dementia: chronic subdural haematoma. Zentralbl Neurochir 2008;69:61–4.
  • Frati A, Salvati M, Mainiero F, et al. Inflammation markers and risk factors for recurrence in 35 patients with a posttraumatic chronic subdural hematoma: a prospective study. J Neurosurg 2004;100:24–32.
  • Gelabert-Gonzalez M, Iglesias-Pais M, Garcia-Allut A, Martinez-Rumbo R. Chronic subdural haematoma: surgical treatment and outcome in 1000 cases. Clin Neurol Neurosurg 2005;107:223–9.
  • Lee JY, Ebel H, Ernestus RI, Klug N. Various surgical treatments of chronic subdural hematoma and outcome in 172 patients: is membranectomy necessary?Surg Neurol 2004;61:523–7; discussion 7–8.
  • Mori K, Maeda M. Risk factors for the occurrence of chronic subdural haematomas after neurosurgical procedures. Acta Neurochir (Wien) 2003;145:533–39; discussion 539–40.
  • Machulda MM, Haut MW. Clinical features of chronic subdural hematoma: neuropsychiatric and neuropsychologic changes in patients with chronic subdural hematoma. Neurosurg Clin N Am 2000;11:473–7.
  • Fogelholm R, Heiskanen O, Waltimo O. Chronic subdural hematoma in adults. Influence of patient's age on symptoms, signs, and thickness of hematoma. J Neurosurg 1975;42:43–6.
  • Moster ML, Johnston DE, Reinmuth OM. Chronic subdural hematoma with transient neurological deficits: a review of 15 cases. Ann Neurol 1983;14:539–42.
  • Tanaka A, Kimura M, Yoshinaga S, Ohkawa M. Computed tomography and cerebral blood flow correlations of mental changes in chronic subdural hematoma. Neurosurgery 1992;30:370–7; discussion 7–8.
  • Tanaka A, Kimura M, Yoshinaga S, Tomonaga M, Mizoguchi T. Quantitative electroencephalographic correlates of cerebral blood flow in patients with chronic subdural hematomas. Surg Neurol 1998;50:235–40.
  • Sturm W. Evidence-based methods in neuropsychological rehabilitation:retraining of attention deficits. Neuro Rehabil 2010;16:55–62.
  • Thöne-Otto A. Evidence-based methods in neuropsychological rehabilitation: retraining of memory deficits. Neuro Rehabil 2010;16:63–74.
  • Hjaltason H, Tegner R, Tham K, Levander M, Ericson K. Sustained attention and awareness of disability in chronic neglect. Neuropsychologia 1996;34:1229–33.
  • Samuelsson H, Hjelmquist EK, Jensen C, Ekholm S, Blomstrand C. Nonlateralized attentional deficits: an important component behind persisting visuospatial neglect?J Clin Exp Neuropsychol 1998;20:73–88.
  • Robertson IH, Ridgeway V, Greenfield E, Parr A. Motor recovery after stroke depends on intact sustained attention: a 2-year follow-up study. Neuropsychology 1997;11:290–5.
  • Robertson IH, Tegner R, Tham K, Lo A, Nimmo-Smith I. Sustained attention training for unilateral neglect: theoretical and rehabilitation implications. J Clin Exp Neuropsychol 1995;17:416–30.
  • Wagensonner M, Zimmermann P. die Fähigkeit zur länger anhaltenden Aufmerksamkeitszuwendung nach cerebraler Schädigung. Z Neuropsychol 1991;2:41–50.
  • Gazzaley A, D’Esposito M. Top-down modulation and normal aging. Ann N Y Acad Sci 2007;1097:67–83.
  • Müller SV. Evidenc-based procedures in the rehabilitation of executive disorders. Neuro Rehabil 2010;16:75–81.

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