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PMID: 29464985 Published · ppublish English Journal Article

Comparison of phase-contrast MR and flow simulations for the study of CSF dynamics in the cervical spine.

The neuroradiology journal ·Vol. 31 ·No. 3 ·2018-06-00 ·页码 292-298

Lindstrøm EK, Schreiner J, Ringstad GA, Haughton V, Eide PK, Mardal KA

Abstract

Background Investigators use phase-contrast magnetic resonance (PC-MR) and computational fluid dynamics (CFD) to assess cerebrospinal fluid dynamics. We compared qualitative and quantitative results from the two methods. Methods Four volunteers were imaged with a heavily T2-weighted volume gradient echo scan of the brain and cervical spine at 3T and with PC-MR. Velocities were calculated from PC-MR for each phase in the cardiac cycle. Mean pressure gradients in the PC-MR acquisition through the cardiac cycle were calculated with the Navier-Stokes equations. Volumetric MR images of the brain and upper spine were segmented and converted to meshes. Models of the subarachnoid space were created from volume images with the Vascular Modeling Toolkit. CFD simulations were performed with a previously verified flow solver. The flow patterns, velocities and pressures were compared in PC-MR and CFD flow images. Results PC-MR images consistently revealed more inhomogeneous flow patterns than CFD, especially in the anterolateral subarachnoid space where spinal nerve roots are located. On average, peak systolic and diastolic velocities in PC-MR exceeded those in CFD by 31% and 41%, respectively. On average, systolic and diastolic pressure gradients calculated from PC-MR exceeded those of CFD by 11% and 39%, respectively. Conclusions PC-MR shows local flow disturbances that are not evident in typical CFD. The velocities and pressure gradients calculated from PC-MR are systematically larger than those calculated from CFD.

Keywords
CSF flow imaging computational fluid dynamics phase-contrast MR
MeSH 主题词
Adult Blood Pressure/physiology Cervical Vertebrae/blood supply,diagnostic imaging Computer Simulation Female Humans Hydrodynamics Magnetic Resonance Imaging Male Models, Biological Young Adult
作者与单位
共 6 位作者,点击展开单位 / ORCID
Lindstrøm Erika Kristina
1 Department of Mathematics, Faculty of Mathematics and Natural Sciences, University of Oslo, Norway.
Schreiner Jakob
2 Center for Biomedical Computation, Simula Research Laboratory, Norway.
Ringstad Geir Andre
3 Department of Radiology and Nuclear Medicine, Oslo University Hospital, Norway.
Haughton Victor
4 Department of Radiology, University of Wisconsin School of Medicine and Public Health, USA.
Eide Per Kristian
5 Department of Neurosurgery, University of Oslo, Norway.
Mardal Kent-Andre
1 Department of Mathematics, Faculty of Mathematics and Natural Sciences, University of Oslo, Norway. | 2 Center for Biomedical Computation, Simula Research Laboratory, Norway.
Article Info
Journal
The neuroradiology journal
Abbr.
Neuroradiol J
ISSN
2385-1996
Published
2018-06-00
电子出版
2018-00-21
页码
292-298
Language
English
Country/Region
United States
NLM ID
101295103
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