Numerical simulation of cerebrospinal fluid hydrodynamics in the healing process of hydrocephalus patients

Three-dimensional computational models of the cerebrospinal fluid (CSF) flow and brain tissue are presented for evaluation of their hydrodynamic conditions before and after shunting for seven patients with non-communicating hydrocephalus. One healthy subject is also modeled to compare deviated patie...

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Published inJournal of applied mechanics and technical physics Vol. 58; no. 3; pp. 386 - 391
Main Authors Gholampour, S., Fatouraee, N., Seddighi, A. S., Seddighi, A.
Format Journal Article
LanguageEnglish
Published Moscow Pleiades Publishing 01.05.2017
Springer Nature B.V
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ISSN0021-8944
1573-8620
DOI10.1134/S0021894417030026

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Summary:Three-dimensional computational models of the cerebrospinal fluid (CSF) flow and brain tissue are presented for evaluation of their hydrodynamic conditions before and after shunting for seven patients with non-communicating hydrocephalus. One healthy subject is also modeled to compare deviated patients data to normal conditions. The fluid-solid interaction simulation shows the CSF mean pressure and pressure amplitude (the superior index for evaluation of non-communicating hydrocephalus) in patients at a greater point than those in the healthy subject by 5.3 and 2 times, respectively.
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ISSN:0021-8944
1573-8620
DOI:10.1134/S0021894417030026