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Optimized System for Cerebral Perfusion Monitoring in the Rat Stroke Model of Intraluminal Middle Cerebral Artery Occlusion
Authors:Simone Beretta  Matteo Riva  Davide Carone  Elisa Cuccione  Giada Padovano  Virginia Rodriguez Menendez  Giovanni B Pappadá  Alessandro Versace  Carlo Giussani  Erik P Sganzerla  Carlo Ferrarese
Institution:1.Department of Neuroscience and Biomedical Technologies, University of Milano Bicocca
Abstract:The translational potential of pre-clinical stroke research depends on the accuracy of experimental modeling. Cerebral perfusion monitoring in animal models of acute ischemic stroke allows to confirm successful arterial occlusion and exclude subarachnoid hemorrhage. Cerebral perfusion monitoring can also be used to study intracranial collateral circulation, which is emerging as a powerful determinant of stroke outcome and a possible therapeutic target. Despite a recognized role of Laser Doppler perfusion monitoring as part of the current guidelines for experimental cerebral ischemia, a number of technical difficulties exist that limit its widespread use. One of the major issues is obtaining a secure and prolonged attachment of a deep-penetration Laser Doppler probe to the animal skull. In this video, we show our optimized system for cerebral perfusion monitoring during transient middle cerebral artery occlusion by intraluminal filament in the rat. We developed in-house a simple method to obtain a custom made holder for twin-fibre (deep-penetration) Laser Doppler probes, which allow multi-site monitoring if needed. A continuous and prolonged monitoring of cerebral perfusion could easily be obtained over the intact skull.
Keywords:Medicine  Issue 72  Neuroscience  Neurobiology  Biomedical Engineering  Anatomy  Physiology  Surgery  Brain Ischemia  Stroke  Hemodynamics  middle cerebral artery occlusion  cerebral hemodynamics  perfusion monitoring  Laser Doppler  intracranial collaterals  ischemic penumbra  rat  animal model
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