Key result
Computer simulation of a three-dimensional human carotid siphon model demonstrated secondary motion effects during the pulsatile flow cycle in multiple three-dimensional curvatures.
Population
Three-dimensional computational model of the human carotid siphon
Design
Preclinical
Authors
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Secondary flow effects in carotid siphon models remain hypothesis-generating; leaves open any role in clinical stroke risk assessment.
This computational study provides numerical results for flow velocity and pressure in a 3D model of the human carotid siphon, highlighting secondary motion effects during pulsatile flow.
Perktold et al. (1987) studied this question. Computer simulation of pulsatile blood flow was evaluated on Axial and secondary flow velocity and pressure. Computer simulation of a three-dimensional human carotid siphon model demonstrated secondary motion effects during the pulsatile flow cycle in multiple three-dimensional curvatures.
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