Open Access. Powered by Scholars. Published by Universities.®

Neurology Commons

Open Access. Powered by Scholars. Published by Universities.®

Female

Department of Neurosurgery Faculty Papers

2012

Articles 1 - 3 of 3

Full-Text Articles in Neurology

Hyperosmolar Therapy For Raised Intracranial Pressure., Ethan A Benardete Dec 2012

Hyperosmolar Therapy For Raised Intracranial Pressure., Ethan A Benardete

Department of Neurosurgery Faculty Papers

No abstract provided.


Early Versus Delayed Decompression For Traumatic Cervical Spinal Cord Injury: Results Of The Surgical Timing In Acute Spinal Cord Injury Study (Stascis), Michael G. Fehlings, Alexander Vaccaro, Jefferson R. Wilson, Anoushka Singh, David W. Cadotte, James S. Harrop, Bizhan Aarabi, Christopher Shaffrey, Marcel Dvorak, Charles Fisher, Paul Arnold, Eric M. Massicotte, Stephen Lewis, Raja Rampersaud Feb 2012

Early Versus Delayed Decompression For Traumatic Cervical Spinal Cord Injury: Results Of The Surgical Timing In Acute Spinal Cord Injury Study (Stascis), Michael G. Fehlings, Alexander Vaccaro, Jefferson R. Wilson, Anoushka Singh, David W. Cadotte, James S. Harrop, Bizhan Aarabi, Christopher Shaffrey, Marcel Dvorak, Charles Fisher, Paul Arnold, Eric M. Massicotte, Stephen Lewis, Raja Rampersaud

Department of Neurosurgery Faculty Papers

Background: There is convincing preclinical evidence that early decompression in the setting of spinal cord injury (SCI) improves neurologic outcomes. However, the effect of early surgical decompression in patients with acute SCI remains uncertain. Our objective was to evaluate the relative effectiveness of early (,24 hours after injury) versus late ($24 hours after injury) decompressive surgery after traumatic cervical SCI.

Methods: We performed a multicenter, international, prospective cohort study (Surgical Timing in Acute Spinal Cord Injury Study: STASCIS) in adults aged 16–80 with cervical SCI. Enrolment occurred between 2002 and 2009 at 6 North American centers. The primary outcome was …


Macrophage Imbalance (M1 Vs. M2) And Upregulation Of Mast Cells In Wall Of Ruptured Human Cerebral Aneurysms: Preliminary Results., David Hasan, Nohra Chalouhi, Pascal Jabbour, Tomoki Hashimoto Jan 2012

Macrophage Imbalance (M1 Vs. M2) And Upregulation Of Mast Cells In Wall Of Ruptured Human Cerebral Aneurysms: Preliminary Results., David Hasan, Nohra Chalouhi, Pascal Jabbour, Tomoki Hashimoto

Department of Neurosurgery Faculty Papers

BACKGROUND: M1 and M2 cells are two major subsets of human macrophages that exert opposite effects on the inflammatory response. This study aims to investigate the role of macrophage M1/M2 imbalance and mast cells in the progression of human cerebral aneurysms to rupture.

METHODS: Ten patients with cerebral aneurysms (five ruptured and five unruptured) underwent microsurgical clipping. During the procedure, a segment of the aneurysm dome was resected and immunostained with monoclonal antibodies for M1 cells (anti-HLA DR), M2 cells (anti-CD 163), and mast cells (anti-tryptase clone AA). A segment of the superficial temporal artery (STA) was also removed and …