Search Results - "ZAGZOULE, M"
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Pressure drop reconstruction in the aqueduct of sylvius from MRI acquisitions
Published in Computer methods in biomechanics and biomedical engineering (01-09-2012)“…From measurement of the oscillating flux of the cerebrospinal liquid (CSL) in the aqueduct of Sylvius, we elaborate a patient-based methodology for pressure…”
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Hemodynamic role of the circle of Willis in stenoses of internal carotid arteries. An analytical solution of a linear model
Published in Journal of biomechanics (01-04-2000)“…A mathematical model of blood flow through the circle of Willis was developed, within a linear framework. Comprehensive analytical solutions, including a…”
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Simple Patient-Based Transmantle Pressure and Shear Estimate From Cine Phase-Contrast MRI in Cerebral Aqueduct
Published in IEEE transactions on biomedical engineering (01-10-2012)“…From measurements of the oscillating flux of the cerebrospinal fluid (CSF) in the aqueduct of Sylvius, we elaborate a patient-based methodology for transmantle…”
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4
Unsteady wall shear stress in a distensible tube
Published in Journal of biomechanics (1991)“…An asymptotic expression of the wall shear stress (WSS) in an elastic tube is deduced for small values of the Womersley parameter. In the case of a rigid tube…”
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5
Effects of anterior communicating artery diameter on cerebral hemodynamics in internal carotid artery disease : a model study
Published in Circulation (New York, N.Y.) (15-11-1995)“…Collateral circulatory pathways are considered the primary determinant of cerebral hemodynamics in patients with obstructive lesions of the internal carotid…”
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6
P001 Numerical-experimental confrontation in non invasive determination of hemodynamic parameters
Published in Journal of biomechanics (01-07-1998)Get full text
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P002 Cerebral hemodynamics in obstructive diseases of carotid arteries: An in vitro study of the role of collateral pathways
Published in Journal of biomechanics (01-07-1998)Get full text
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A global mathematical model of the cerebral circulation in man
Published in Journal of biomechanics (1986)“…A mathematical model of the cerebral circulation has been formulated. It was based on non-linear equations of pulsatile fluid flow in distensible conduits and…”
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