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Correcting method and correcting system for elastic rebuilding of magnetic resonance elastography (MRE)

A magnetic resonance elasticity and imaging technology, which is applied in the directions of using the nuclear magnetic resonance imaging system for measurement, magnetic resonance measurement, and magnetic variable measurement. It can solve problems such as errors and achieve the effect of accurate elastic reconstruction.

Active Publication Date: 2014-12-10
SHENZHEN INST OF ADVANCED TECH
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Problems solved by technology

[0004] At the same time, there are some other methods, such as local frequency estimation (local frequency estimation, LFE), direct inversion method (Directly Inversion, DI), matched filter method (Matched Filter, MF), phase gradient method (Phase Gradient, PG) ), finite element iterative method (FEM), etc. However, there is a problem in the above-mentioned MRE elastic reconstruction algorithm: the algorithm assumes that the shear wave propagates in the infinite medium
But in fact, due to the influence of the boundary, the shear wave is reflected and refracted, and what MRE captures is the result of the superposition of multiple waves including reflected waves and reflected waves, which is contrary to the assumption, especially when the imaging object When the spatial dimension is close to or smaller than the shear wave wavelength, the elastic value calculated by the LFE, DI and PG methods will be significantly smaller than the actual value, and there is an error

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  • Correcting method and correcting system for elastic rebuilding of magnetic resonance elastography (MRE)
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  • Correcting method and correcting system for elastic rebuilding of magnetic resonance elastography (MRE)

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[0033] In the reconstruction algorithm, the imaging object is stimulated by the outside to generate shear waves, but reflection waves and the like will be generated at the boundary of the imaging object, and what is collected is the superposition result of shear waves and emission waves. Generally, there are three types of boundaries of imaging objects, namely: rigid boundaries, free boundaries, and elastically constrained boundaries. In the rigid boundary condition: the reflection has no waveform change, and the incident shear wave (longitudinal wave) only produces a reflected shear wave (longitudinal wave); in the free boundary condition: the reflected wave is related to the Poisson's ratio of the incident angle; in the elastic constraint Boundary conditions: The reflected wave is related to the angle of incidence, and also depends on the stiffness of the boundary and the wavelength of the incident wave.

[0034] Such as figure 1 As shown, in one embodiment, in the elastic ...

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Abstract

The invention relates to a correcting method and correcting system for elastic rebuilding of magnetic resonance elastography (MRE). The method comprises the following steps: acquiring a shear wave generated by an imaging object; comparing the size of the imaging object with the wavelength of the shear wave, and when the size of the imaging object and the wavelength of the shear wave are of an identical order of magnitude, the shear wave is introduced into a higher order term to correct an equation of motion and then obtain an objective function through calculation, wherein according to the objective function, gamma is the correction factor, mu is the lame constant, rho is the medium density, omega is the angular frequency of an incentive, and U is the displacement vector of a medium. According to the correcting method and correcting system for the elastic rebuilding of the MRE, through acquisition of the shear wave generated by the imaging object, comparison of the wavelength of the shear wave with the size of the imaging object and then adoption of an algorithm of the objective function, the elastic rebuilding can be relatively accurately achieved.

Description

technical field [0001] The present invention relates to magnetic resonance elastography (Magnetic Resonance Elastography, MRE) technology, in particular to an elastic reconstruction correction method and system for magnetic resonance elastography. Background technique [0002] The elasticity reconstruction algorithm is the most important link in the process of magnetic resonance elastography (MRE), which determines the spatial resolution of MRE images and the accuracy of elasticity measurement. [0003] At present, the research on the MRE elastic reconstruction algorithm mainly revolves around solving the Helmholtz algorithm. Assuming that the shear wave propagates in an isotropic infinite medium, and neglecting the influence of the longitudinal wave, the particle motion satisfies the Helmholtz equation Where U is the particle displacement, ρ is the medium density, ω is the angular frequency of the excitation, and μ the shear modulus. [0004] At the same time, there are ...

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): G01R33/56
Inventor 蔡葳蕤朱燕杰钟耀祖刘新郑海荣
Owner SHENZHEN INST OF ADVANCED TECH
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