articleTop 10% cited
A Semiautomated Method for Measuring Brain Infarct Volume
Journal of Cerebral Blood Flow & Metabolism · 1990 · Vol. 10(2) · pp. 290–293
Raymond A. Swanson✉(San Francisco VA Medical Center)Matthew T. Morton(San Francisco VA Medical Center)George Tsao-Wu(San Francisco VA Medical Center)Robert A. Savalos(San Francisco VA Medical Center)Charisse L. Davidson(San Francisco VA Medical Center)Frank R. Sharp(San Francisco VA Medical Center)
Abstract
An accurate, reproducible method for determining the infarct volumes of gray matter structures is presented for use with presently available image analysis systems. Areas of stained sections with optical densities above that of a threshold value are automatically recognized and measured. This eliminates the potential error and bias inherent in manually delineating infarcted regions. Moreover, the volume of surviving normal gray matter is determined rather than that of the infarct. This approach minimizes the error that is introduced by edema, which distorts and enlarges the infarcted tissue and surrounding white matter.
Brain Tumor Detection and ClassificationAcute Ischemic Stroke ManagementCell Image Analysis TechniquesWhite matterGray (unit)Volume (thermodynamics)Brain tissueBrain edemaNuclear medicineBiomedical engineeringComputer scienceArtificial intelligencePhysics
MeSH terms
AnimalsBasal GangliaCerebral CortexCerebral InfarctionImage Processing, Computer-AssistedMaleRats, Inbred StrainsStaining and LabelingReproducibility of ResultsRats
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References
Focal Brain Ischemia in the Rat: Methods for Reproducible Neocortical Infarction Using Tandem Occlusion of the Distal Middle Cerebral and Ipsilateral Common Carotid Arteries
Journal of Cerebral Blood Flow & Metabolism · 1988 · 489 citations
Reversible middle cerebral artery occlusion without craniectomy in rats.
Stroke · 1989 · 7,411 citations
Rat middle cerebral artery occlusion: evaluation of the model and development of a neurologic examination.
Stroke · 1986 · 2,685 citations
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