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PMID: 25647090 Published · ppublish English Journal Article Research Support, N.I.H., Extramural Research Support, Non-U.S. Gov't

Characterization of the discrepancies between four-dimensional phase-contrast magnetic resonance imaging and in-silico simulations of cerebrospinal fluid dynamics.

Journal of biomechanical engineering ·Vol. 137 ·No. 5 ·2015-05-00 ·页码 051002

Heidari Pahlavian S, Bunck AC, Loth F, Shane Tubbs R, Yiallourou T, Kroeger JR, Heindel W, Martin BA

Abstract

The purpose of the present study was to compare subject-specific magnetic resonance imaging (MRI)-based computational fluid dynamics (CFD) simulations with time-resolved three-directional (3D) velocity-encoded phase-contrast MRI (4D PCMRI) measurements of the cerebrospinal fluid (CSF) velocity field in the cervical spinal subarachnoid space (SSS). Three-dimensional models of the cervical SSS were constructed based on MRI image segmentation and anatomical measurements for a healthy subject and patient with Chiari I malformation. CFD was used to simulate the CSF motion and compared to the 4D PCMRI measurements. Four-dimensional PCMRI measurements had much greater CSF velocities compared to CFD simulations (1.4 to 5.6× greater). Four-dimensional PCMRI and CFD both showed anterior and anterolateral dominance of CSF velocities, although this flow feature was more pronounced in 4D PCMRI measurements compared to CFD. CSF flow jets were present near the nerve rootlets and denticulate ligaments (NRDL) in the CFD simulation. Flow jets were visible in the 4D PCMRI measurements, although they were not clearly attributable to nerve rootlets. Inclusion of spinal cord NRDL in the cervical SSS does not fully explain the differences between velocities obtained from 4D PCMRI measurements and CFD simulations.

MeSH 主题词
Arnold-Chiari Malformation/physiopathology Cerebrospinal Fluid/physiology Computer Simulation Humans Hydrodynamics Imaging, Three-Dimensional Ligaments/physiology,physiopathology Magnetic Resonance Imaging Male Models, Biological Patient-Specific Modeling Spinal Nerve Roots/physiology,physiopathology Young Adult
作者与单位
共 8 位作者,点击展开单位 / ORCID
Heidari Pahlavian Soroush
Bunck Alexander C
Loth Francis
Shane Tubbs R
Yiallourou Theresia
Kroeger Jan Robert
Heindel Walter
Martin Bryn A
Article Info
Journal
Journal of biomechanical engineering
Abbr.
J Biomech Eng
ISSN
1528-8951
Published
2015-05-00
电子出版
2015-00-20
页码
051002
Language
English
Country/Region
United States
NLM ID
7909584
基金资助
NINDS NIH HHS · R15 NS071455 · United States
NINDS NIH HHS · 1R15NS071455-01 · United States
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