A finite element model for analyzing shear wave propagation observed in magnetic resonance elastography

Qingshan Chen, Stacie I. Ringleb, Armando Manduca, Richard L. Ehman, Kai Nan An

研究成果: Article同行評審

36 引文 斯高帕斯(Scopus)

摘要

Magnetic resonance elastography (MRE) is a novel non-invasive approach to determine material stiffness by using a conventional magnetic resonance imaging (MRI) system incorporated with an oscillating motion-sensitizing gradient to detect nodal displacements produced by a shear excitation wave. The effects of material properties, excitation frequency, boundary conditions, and applied tension on shear wavelength measurement must be examined before MRE can become a useful diagnostic tool. We propose finite element (FE) modeling as a robust method to systematically study the effects of these parameters. An axisymmetric FE model was generated with ABAQUS to simulate agarose gel phantoms. The effects of material stiffness, density, and excitation frequency on propagating shear wavelength were examined individually. The effect of the boundary conditions on shear wavelength was also demonstrated. Results of shear wavelength from MRE measurement were compared with the results of FE model, which showed good agreement between the methods.

原文English
頁(從 - 到)2198-2203
頁數6
期刊Journal of Biomechanics
38
發行號11
DOIs
出版狀態Published - 2005 11月

All Science Journal Classification (ASJC) codes

  • 生物物理學
  • 骨科和運動醫學
  • 生物醫學工程
  • 復健

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