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dc.contributor.authorWeickenmeier, J
dc.contributor.authorSaez, P
dc.contributor.authorButler, CAM
dc.contributor.authorYoung, PG
dc.contributor.authorGoriely, A
dc.contributor.authorKuhl, E
dc.date.accessioned2017-03-09T09:22:30Z
dc.date.issued2016-10-24
dc.description.abstractBrain swelling is a serious condition associated with an accumulation of fluid inside the brain that can be caused by trauma, stroke, infection, or tumors. It increases the pressure inside the skull and reduces blood and oxygen supply. To relieve the intracranial pressure, neurosurgeons remove part of the skull and allow the swollen brain to bulge outward, a procedure known as decompressive craniectomy. Decompressive craniectomy has been preformed for more than a century; yet, its effects on the swollen brain remain poorly understood. Here we characterize the deformation, strain, and stretch in bulging brains using the nonlinear field theories of mechanics. Our study shows that even small swelling volumes of 28 to 56 ml induce maximum principal strains in excess of 30 %. For radially outward-pointing axons, we observe maximal normal stretches of 1.3 deep inside the bulge and maximal tangential stretches of 1.3 around the craniectomy edge. While the stretch magnitude varies with opening site and swelling region, our study suggests that the locations of maximum stretch are universally shared amongst all bulging brains. Our model has the potential to inform neurosurgeons and rationalize the shape and position of the skull opening, with the ultimate goal to reduce brain damage and improve the structural and functional outcomes of decompressive craniectomy in trauma patients.en_GB
dc.description.sponsorshipWe thank Allan L. Reiss and his group for providing the MRI scans. This work was supported by the Timoshenko Scholar Award to Alain Goriely and by the Humboldt Research Award and the National Institutes of Health grant U01 HL119578 to Ellen Kuhl.en_GB
dc.identifier.citationPublished online 24 October 2016en_GB
dc.identifier.doi10.1007/s10659-016-9606-1
dc.identifier.urihttp://hdl.handle.net/10871/26358
dc.language.isoenen_GB
dc.publisherSpringer Verlagen_GB
dc.rights.embargoreasonPublisher policyen_GB
dc.subjectSoft matteren_GB
dc.subjectHyperelasticityen_GB
dc.subjectSwellingen_GB
dc.subjectFinite element analysisen_GB
dc.subjectNeuromechanicsen_GB
dc.subjectBrainen_GB
dc.subjectCraniectomyen_GB
dc.titleBulging brainsen_GB
dc.typeArticleen_GB
dc.identifier.issn0374-3535
dc.descriptionThis is the author accepted manuscript. The final version is available from Springer Verlag via the DOI in this record.en_GB
dc.identifier.journalJournal of Elasticityen_GB


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