Kvikliene Adriana, Jurkonis Rytis, Ressner Marcus, Hoff Lars, Jansson Tomas, Janerot-Sjöberg Birgitta, Lukosevicius Arūnas, Ask Per
Institute of Biomedical Engineering, Kaunas University of Technology, Lithuania.
Ultrasonics. 2004 Apr;42(1-9):301-7. doi: 10.1016/j.ultras.2004.01.023.
The propagation of diagnostic ultrasonic imaging pulses in tissue and their interaction with contrast micro bubbles is a very complex physical process, which we assumed to be separable into three stages: pulse propagation in tissue, the interaction of the pulse with the contrast bubble, and the propagation of the scattered echo. The model driven approach is used to gain better knowledge of the complex processes involved. A simplified way of field simulation is chosen due to the complexity of the task and the necessity to estimate comparative contributions of each component of the process. Simulations are targeted at myocardial perfusion estimation. A modified method for spatial superposition of attenuated waves enables simulations of low intensity pulse pressure fields from weakly focused transducers in a nonlinear, attenuating, and liquid-like biological medium. These assumptions enable the use of quasi-linear calculations of the acoustic field. The simulations of acoustic bubble response are carried out with the Rayleigh-Plesset equation with the addition of radiation damping. Theoretical simulations with synthesised and experimentally sampled pulses show that the interaction of the excitation pulses with the contrast bubbles is the main cause of nonlinear scattering, and a 2-3 dB increase of second harmonic amplitude depends on nonlinear distortions of the incident pulse.
诊断超声成像脉冲在组织中的传播及其与造影微泡的相互作用是一个非常复杂的物理过程,我们假定它可分为三个阶段:脉冲在组织中的传播、脉冲与造影微泡的相互作用以及散射回波的传播。采用模型驱动方法以更好地了解其中涉及的复杂过程。由于任务的复杂性以及估计该过程各组成部分相对贡献的必要性,选择了一种简化的场模拟方法。模拟的目标是心肌灌注估计。一种改进的衰减波空间叠加方法能够在非线性、衰减且类似液体的生物介质中,对来自弱聚焦换能器的低强度脉冲压力场进行模拟。这些假设使得能够使用声场的准线性计算。利用添加了辐射阻尼的瑞利 - 普莱斯方程进行声学气泡响应的模拟。对合成脉冲和实验采样脉冲的理论模拟表明,激发脉冲与造影微泡的相互作用是非线性散射的主要原因,二次谐波幅度增加2 - 3分贝取决于入射脉冲的非线性畸变。