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Image Reconstruction Utilizing Algebraic Helmoltz Inversion and Passband Filtering Applied to Viscoelasticity

Quang-Huy, T. and Duong, V.T. and Hai, L.Q. and Duc-Tan, T. (2020) Image Reconstruction Utilizing Algebraic Helmoltz Inversion and Passband Filtering Applied to Viscoelasticity. In: 3rd International Conference on Multimedia Analysis and Pattern Recognition, MAPR 2020, 8 October 2020 through 9 October 2020.

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Abstract

Shear wave viscoelasticity imaging is a quick and convenient imaging model for collecting images of tissues. The mechanical properties of soft tissues (elasticity, viscosity) are expressed through the complex shear modulus (CSM) parameter, a useful information for tissue pathological diagnosis. In this paper, we proposed a new solution in which we use FDTD method for modeling the wave propagation in 2D environment using FDTD method; then apply the a band-pass filter (BPF) to reduce the noise from the measured particle velocity of the shear wave; finally, we use the Algebraic Helmholtz Inversion (AHI) algorithm to directly estimate CSM. The results of numerical simulation have proven the effectiveness of the proposed algorithm. © 2020 IEEE.

Item Type: Conference or Workshop Item (Paper)
Divisions: Faculties > Faculty of Control Engineering
Identification Number: 10.1109/MAPR49794.2020.9237774
Uncontrolled Keywords: Algebra; Bandpass filters; Biomechanics; Finite difference time domain method; Histology; Information analysis; Pattern recognition; Shear flow; Shear waves; Tissue; Velocity control; Viscoelasticity; Wave propagation; Complex shear modulus; Helmholtz; Imaging model; Particle velocities; Pass bands; Soft tissue; Viscoelasticity imaging; Image reconstruction
Additional Information: Conference code: 164647. Language of original document: English.
URI: http://eprints.lqdtu.edu.vn/id/eprint/8912

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