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Clinical relevance of cortical spreading depression in neurological disorders: migraine, malignant stroke, subarachnoid and intracranial hemorrhage, and traumatic brain injury

Journal

JOURNAL OF CEREBRAL BLOOD FLOW AND METABOLISM
Volume 31, Issue 1, Pages 17-35

Publisher

SAGE PUBLICATIONS INC
DOI: 10.1038/jcbfm.2010.191

Keywords

cerebral blood flow; depolarization; energy metabolism; glutamate; neuronal injury; spreading depression

Funding

  1. Leducq Foundation
  2. Danish Medical Research Council
  3. Lundbeck Research Foundation (LUCENS)
  4. Nordea Foundation
  5. NOVO-Nordisk Foundation
  6. Deutsche Forschungsgemeinschaft (DFG) [DR 323/2-2, 323/3-1, 323/5-1, SFB Tr3 D10]
  7. Bundesministerium fur Bildung und Forschung (Center for Stroke Research Berlin) [01 EO 0801]
  8. Bernstein Center for Computational Neuroscience Berlin [B2]
  9. Kompetenznetz Schlaganfall
  10. US Army PH/TBI
  11. Max Planck Society
  12. Wellcome Trust
  13. HeadFirst

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Cortical spreading depression (CSD) and depolarization waves are associated with dramatic failure of brain ion homeostasis, efflux of excitatory amino acids from nerve cells, increased energy metabolism and changes in cerebral blood flow (CBF). There is strong clinical and experimental evidence to suggest that CSD is involved in the mechanism of migraine, stroke, subarachnoid hemorrhage and traumatic brain injury. The implications of these findings are widespread and suggest that intrinsic brain mechanisms have the potential to worsen the outcome of cerebrovascular episodes or brain trauma. The consequences of these intrinsic mechanisms are intimately linked to the composition of the brain extracellular microenvironment and to the level of brain perfusion and in consequence brain energy supply. This paper summarizes the evidence provided by novel invasive techniques, which implicates CSD as a pathophysiological mechanism for this group of acute neurological disorders. The findings have implications for monitoring and treatment of patients with acute brain disorders in the intensive care unit. Drawing on the large body of experimental findings from animal studies of CSD obtained during decades we suggest treatment strategies, which may be used to prevent or attenuate secondary neuronal damage in acutely injured human brain cortex caused by depolarization waves. Journal of Cerebral Blood Flow & Metabolism (2011) 31, 17-35; doi:10.1038/jcbfm.2010.191; published online 3 November 2010

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