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PMID: 26749338 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Investigating cerebral oedema using poroelasticity.

Medical engineering & physics ·Vol. 38 ·No. 1 ·2016-01-00 ·页码 48-57

Vardakis JC, Chou D, Tully BJ, Hung CC, Lee TH, Tsui PH, Ventikos Y

Abstract

Cerebral oedema can be classified as the tangible swelling produced by expansion of the interstitial fluid volume. Hydrocephalus can be succinctly described as the abnormal accumulation of cerebrospinal fluid (CSF) within the brain which ultimately leads to oedema within specific sites of parenchymal tissue. Using hydrocephalus as a test bed, one is able to account for the necessary mechanisms involved in the interaction between oedema formation and cerebral fluid production, transport and drainage. The current state of knowledge about integrative cerebral dynamics and transport phenomena indicates that poroelastic theory may provide a suitable framework to better understand various diseases. In this work, Multiple-Network Poroelastic Theory (MPET) is used to develop a novel spatio-temporal model of fluid regulation and tissue displacement within the various scales of the cerebral environment. The model is applied through two formats, a one-dimensional finite difference - Computational Fluid Dynamics (CFD) coupling framework, as well as a two-dimensional Finite Element Method (FEM) formulation. These are used to investigate the role of endoscopic fourth ventriculostomy in alleviating oedema formation due to fourth ventricle outlet obstruction (1D coupled model) in addition to observing the capability of the FEM template in capturing important characteristics allied to oedema formation, like for instance in the periventricular region (2D model).

Keywords
Aquaporins Cerebral oedema Computational Fluid Dynamics Endoscopic ventriculostomy Finite Element Method Fourth Ventricular Outlet Obstruction Gliosis Hydrocephalus Intracranial Pressure Multiple-Network Poroelastic Theory Periventricular lucency
MeSH 主题词
Biomechanical Phenomena Brain Edema/diagnosis,metabolism,pathology,surgery Elasticity Finite Element Analysis Humans Image Processing, Computer-Assisted Magnetic Resonance Imaging Male Middle Aged Models, Biological Porosity Ventriculostomy
作者与单位
共 7 位作者,点击展开单位 / ORCID
Vardakis John C
Department of Mechanical Engineering, University College London, Torrington Place, London WC1E 7JE, UK.
Chou Dean
Institute of Biomedical Engineering & Department of Engineering Science, University of Oxford, Oxford OX1 3PJ, UK.
Tully Brett J
First Light Fusion Ltd., Begbroke Science Park, Begbroke, Oxfordshire OX5 1PF, UK.
Hung Chang C
Stroke Center and Department of Neurology, Chang Gung Memorial Hospital, Linkou Medical Center and College of Medicine, Taoyuan, Taiwan; Department of Electrical Engineering, College of Engineering, Chang Gung University, Taoyuan, Taiwan.
Lee Tsong H
Stroke Center and Department of Neurology, Chang Gung Memorial Hospital, Linkou Medical Center and College of Medicine, Taoyuan, Taiwan.
Tsui Po-Hsiang
Department of Medical Imaging and Radiological Sciences, College of Medicine, Chang Gung University, Taoyuan, Taiwan; Medical Imaging Research Center, Institute for Radiological Research, Chang Gung University and Chang Gung Memorial Hospital, Taoyuan, Taiwan.
Ventikos Yiannis
Department of Mechanical Engineering, University College London, Torrington Place, London WC1E 7JE, UK. Electronic address: [email protected].
Article Info
Journal
Medical engineering & physics
Abbr.
Med Eng Phys
ISSN
1873-4030
Corresponding email
Published
2016-01-00
电子出版
2015-00-31
页码
48-57
Language
English
Country/Region
England
NLM ID
9422753
基金资助
Medical Research Council · United Kingdom
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