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PMID: 20696607 Published · ppublish English Journal Article

Fluid dynamic simulation of rat brain vessels, geometrically reconstructed from MR-angiography and validated using phase contrast angiography.

Lehmpfuhl MC, Hess A, Gaudnek MA, Sibila M

Abstract

The exact knowledge of the blood vessel geometry plays an important role, not only in clinical applications (stroke diagnosis, detection of stenosis), but also for deeper analysis of hemodynamic functional data, such as fMRI. Such vessel geometries can be obtained by different MR angiographic measurements. It is shown that simulations using computational fluid dynamics (CFD) can be used to validate the vessel geometry, automatically reconstructed from time of flight (TOF) angiograms or phase contrast angiography (PC-MRA) data. CFD simulations are based on PC-MRA data, since these data contain additionally rheological information (phases) besides merely amplitudes as is the case for TOF measurements. Parts of the rat brain vessel system are carefully modeled consisting of a main tube and second order branches. By analyzing velocity changes up and downstream of bifurcations, it is shown that CFD can be used to help detecting missing vessels in the TOF based reconstruction. It is demonstrated by artificially deleting a branch from the reconstruction and compared the flow in both resulting CFD simulations. Finally the simulations help to understand the effects of secondary branches on the flow in the main tube. The aim of this study is to compare the measured (PCA) flow data with the CFD simulation results, based on the vessel geometry gained from the PCA image using an in house reconstruction algorithm. If a more accurate simulation method is found and if in principal the simulation matches the PCA data, it might be possible to deduct that in cases where the measured data varies from the CFD simulation, the reconstruction is not complete, i.e. branches are missing or wrong branches were reconstructed.

MeSH 主题词
Algorithms Animals Blood Flow Velocity Brain/blood supply,metabolism,pathology Cerebrovascular Circulation Computer Simulation Hydrodynamics Image Processing, Computer-Assisted Magnetic Resonance Angiography/instrumentation,methods Magnetic Resonance Imaging/instrumentation,methods Models, Animal Rats Reproducibility of Results
作者与单位
共 4 位作者,点击展开单位 / ORCID
Lehmpfuhl Monika Carola
Northwestern Polytechnical University Xian, School of Electronics, Xian, China. [email protected]
Hess Andreas
Gaudnek M André
Sibila Michael
Article Info
Journal
Physica medica : PM : an international journal devoted to the applications of physics to medicine and biology : official journal of the Italian Association of Biomedical Physics (AIFB)
Abbr.
Phys Med
ISSN
1724-191X
Corresponding email
Published
2011-07-00
电子出版
2010-00-08
页码
169-76
Language
English
Country/Region
Italy
NLM ID
9302888
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