Serum glial fibrillary acidic protein as a predictive biomarker of neurological outcome after cardiac arrest.
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[1] T. Tatlisumak,et al. The blood–brain barrier is continuously open for several weeks following transient focal cerebral ischemia , 2008, Neuroscience.
[2] K. Blennow,et al. Increased serum-GFAP in patients with severe traumatic brain injury is related to outcome , 2006, Journal of the Neurological Sciences.
[3] T. Heinz,et al. Predictive value of S-100B protein and neuron specific-enolase as markers of traumatic brain damage in clinical use , 2006, Brain injury.
[4] T. Kaneko,et al. SERUM GLIAL FIBRILLARY ACIDIC PROTEIN IN CARDIOPULMONARY RESUSCITATED PATIENTS.: 71 , 2005 .
[5] William Oh,et al. Whole-body hypothermia for neonates with hypoxic-ischemic encephalopathy. , 2005, The New England journal of medicine.
[6] W. Mauritz,et al. NONSPECIFIC INCREASE OF SYSTEMIC NEURON-SPECIFIC ENOLASE AFTER TRAUMA: CLINICAL AND EXPERIMENTAL FINDINGS , 2005, Shock.
[7] S. Narumiya,et al. Augmented Cardiac Hypertrophy in Response to Pressure Overload in Mice Lacking the Prostaglandin I2 Receptor , 2005, Circulation.
[8] M. Norenberg,et al. Astrocytes in cerebral ischemic injury: Morphological and general considerations , 2005, Glia.
[9] H. Sigusch,et al. Outcome after cardiac arrest: predictive values and limitations of the neuroproteins neuron-specific enolase and protein S-100 and the Glasgow Coma Scale. , 2005, Resuscitation.
[10] Y. Michotte,et al. The evolution of serum astroglial S-100 beta protein in patients with cardiac arrest treated with mild hypothermia. , 2005, Resuscitation.
[11] A. Raabe,et al. GFAP versus S100B in serum after traumatic brain injury: relationship to brain damage and outcome. , 2004, Journal of neurotrauma.
[12] A. Raabe,et al. Glial fibrillary acidic protein in serum after traumatic brain injury and multiple trauma. , 2004, The Journal of trauma.
[13] H. Redl,et al. NEURON-SPECIFIC-ENOLASE IS INCREASED IN PLASMA AFTER HEMORRHAGIC SHOCK AND AFTER BILATERAL FEMUR FRACTURE WITHOUT TRAUMATIC BRAIN INJURY IN THE RAT , 2004, Shock.
[14] H. Redl,et al. Release of S100B Differs During Ischemia and Reperfusion of the Liver, the Gut, and the Kidney in Rats , 2004, Shock.
[15] J. Ornato,et al. Cardiopulmonary resuscitation of adults in the hospital: a report of 14720 cardiac arrests from the National Registry of Cardiopulmonary Resuscitation. , 2003, Resuscitation.
[16] Y. Michotte,et al. S-100 protein as early predictor of regaining consciousness after out of hospital cardiac arrest. , 2002, Resuscitation.
[17] W. Silvester,et al. Treatment of comatose survivors of out-of-hospital cardiac arrest with induced hypothermia. , 2002, The New England journal of medicine.
[18] Alan D. Lopez,et al. Mild therapeutic hypothermia to improve the neurologic outcome after cardiac arrest. , 2002, The New England journal of medicine.
[19] E. Martin,et al. Astroglial Protein S-100 Is an Early and Sensitive Marker of Hypoxic Brain Damage and Outcome After Cardiac Arrest in Humans , 2001, Circulation.
[20] C. Blomstrand,et al. Serum levels of the brain-derived proteins S-100 and NSE predict long-term outcome after cardiac arrest. , 2001, Resuscitation.
[21] A. Raabe,et al. Serum S-100 and neuron-specific enolase for prediction of regaining consciousness after global cerebral ischemia. , 1998, Stroke.
[22] Carol L Wagner,et al. Moderate hypothermia in neonatal encephalopathy: efficacy outcomes. , 2005, Pediatric neurology.