Simulations of ultrasound wave propagation inside biological tissues have a wide range of practical applications. In previous studies, wave propagation equations in lossy biological media are solved either with convolutions, which consume a large amount of memory, or with pseudo-spectral methods, which cannot handle complicated geometries effectively. The approach described in the paper employed a fractional central difference method (FCD), combined with the immersed boundary (IB) method for the finite-difference, time-domain simulation. The FCD method can solve the fractional Laplace terms in Chen and Holm’s lossy-medium equations directly in the physical domain without integral transforms. It also works naturally with the IB method, ...
grantor: University of TorontoA new, computationally efficient approach for modelling fini...
Rigorous and efficient numerical methods are presented for simulation of acoustic propagation in a m...
A simulation method for forward propagation of acoustic pressure pulses in a medium with three-dimen...
Simulations of ultrasound wave propagation inside biological tissues have a wide range of practical ...
A time-domain numerical code based on the constitutive relations of nonlinear acoustics for simulati...
AbstractIncluding non-squared frequency dependent attenuation is essential to obtain accurate acoust...
This dissertation investigates sound propagation in frequency-dependent materials. The study provide...
Abstract—The absorption of ultrasound waves in biological tissue has been experimentally shown to fo...
In this article, a wave propagation model is presented as the first step in the development of a new...
In this article, a wave propagation model is presented as the first step in the development of a new...
Acoustic wave propagations have been studied for a long time with both experimental and numerical me...
In this article, a wave propagation model is presented as the first step in the development of a new...
International audienceA time-domain numerical modeling of transversely isotropic Biot poroelastic wa...
This article belongs to a special issue: 43rd Annual UIA Symposium 23—25 April 2014 CSIC Madrid, Sp...
Thesis (Ph. D.)--University of Washington, 2001In order to simulate ultrasound propagation and subse...
grantor: University of TorontoA new, computationally efficient approach for modelling fini...
Rigorous and efficient numerical methods are presented for simulation of acoustic propagation in a m...
A simulation method for forward propagation of acoustic pressure pulses in a medium with three-dimen...
Simulations of ultrasound wave propagation inside biological tissues have a wide range of practical ...
A time-domain numerical code based on the constitutive relations of nonlinear acoustics for simulati...
AbstractIncluding non-squared frequency dependent attenuation is essential to obtain accurate acoust...
This dissertation investigates sound propagation in frequency-dependent materials. The study provide...
Abstract—The absorption of ultrasound waves in biological tissue has been experimentally shown to fo...
In this article, a wave propagation model is presented as the first step in the development of a new...
In this article, a wave propagation model is presented as the first step in the development of a new...
Acoustic wave propagations have been studied for a long time with both experimental and numerical me...
In this article, a wave propagation model is presented as the first step in the development of a new...
International audienceA time-domain numerical modeling of transversely isotropic Biot poroelastic wa...
This article belongs to a special issue: 43rd Annual UIA Symposium 23—25 April 2014 CSIC Madrid, Sp...
Thesis (Ph. D.)--University of Washington, 2001In order to simulate ultrasound propagation and subse...
grantor: University of TorontoA new, computationally efficient approach for modelling fini...
Rigorous and efficient numerical methods are presented for simulation of acoustic propagation in a m...
A simulation method for forward propagation of acoustic pressure pulses in a medium with three-dimen...