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January 6, 2006Stroke261 citationsOpen Access

Classification and Pathogenesis of Cerebral Hemorrhages After Thrombolysis in Ischemic Stroke

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PTP TrouillasRKRüdiger von Kummer

Key Points

  • To classify brain hemorrhages occurring after thrombolysis in acute ischemic stroke using neuroimaging and evaluate their distinct pathogenetic mechanisms and clinical consequences.
  • Reviewed results from controlled randomized trials and relevant published medical literature concerning post-thrombolysis bleeding complications in ischemic stroke.
  • Hemorrhagic infarctions do not worsen clinical outcomes and are linked to the severity of ischemic tissue damage and ischemic vasculopathy rather than the thrombolytic agent itself.
  • Parenchymal hematomas are clinically significant complications driven by impaired hemostatic control, with risk influenced by the thrombolytic agent, reperfusion strategy, and treatment timing.
  • Extraischemic hematomas occurring remote from the infarct area reflect pre-existing brain vascular pathology, particularly cerebral amyloid angiopathy.

Abstract

Background and Purpose— Brain hemorrhage after ischemic stroke is a serious complication of treatment; however, its pathology is poorly understood. A classification based on brain imaging may help to better understand and avoid causal factors. Methods— Review of the results of controlled randomized trials and the available literature. Results— Hemorrhagic infarctions have no impact on clinical outcome and are probably not associated with the thrombolytic itself and the type of reperfusion strategy. They are associated with the extent of ischemic damage and most probably to an ischemic vasculopathy. Parenchymal hematomas are often clinically relevant. Their incidence is affected by the thrombolytic itself, the type, and probably the time point of reperfusion strategy. The loss of hemostatic control seems important in their pathogenesis. Extraischemic hematomas (remote from the infarct), unique or multiple, suggest pre-existing brain pathology, especially cerebral amyloid angiopathy. Conclusions— The radiological description of 3 different types of brain hemorrhage is useful to better understand the specific pathology and the impact on clinical outcome. It may help to avoid clinically relevant brain hemorrhages.

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Cite This Study

Trouillas et al. (2006) studied this question.

synapsesocial.com/papers/6a0baf189ead71e723c207e9https://doi.org/10.1161/01.str.0000196942.84707.71
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