Is Normal Pressure Hydrocephalus more than a mechanical disruption to CSF flow?
This work proposes a new theoretical framework for the water transport in the cerebral environment. The approach is based on Multiple-Network Poroelastic Theory (MPET) and is a natural extension of poroelasticity, a well reported technique applied to cerebrospinal fluid (CSF) transport. MPET account...
Main Authors: | Tully, B, Byrne, J, Ventikos, Y |
---|---|
Format: | Journal article |
Sprog: | English |
Udgivet: |
2010
|
Lignende værker
-
Is Normal Pressure Hydrocephalus more than a mechanical disruption to CSF flow?
af: Tully, B, et al.
Udgivet: (2010) -
Is Normal Pressure Hydrocephalus more than a mechanical disruption to CSF flow?
af: Tully, B, et al.
Udgivet: (2010) -
Cerebral water transport using multiple-network poroelastic theory: application to normal pressure hydrocephalus
af: Tully, B, et al.
Udgivet: (2011) -
Evidence for CSF-vascular compliance coupling in normal pressure hydrocephalus
af: Luciano Mark, et al.
Udgivet: (2009-02-01) -
Exploring the efficacy of endoscopic ventriculostomy for hydrocephalus treatment via a multicompartmental poroelastic model of CSF transport: a computational perspective.
af: John C Vardakis, et al.
Udgivet: (2013-01-01)