Humphrey Victor F
Institute of Sound and Vibration Research, University of Southampton, Southampton SO17 1BJ, UK.
Prog Biophys Mol Biol. 2007 Jan-Apr;93(1-3):195-211. doi: 10.1016/j.pbiomolbio.2006.07.024. Epub 2006 Aug 15.
The basic physical characteristics of ultrasound waves are reviewed in terms of the typical displacements, velocities, accelerations and pressures generated in various fluid media as a function of frequency. The effects on wave propagation of interfaces are considered, and the way in which waves are reflected, transmitted and mode converted at interfaces introduced. Then the nonlinear propagation of high amplitude ultrasound is explained, and its consequences, including the generation of harmonic frequencies and enhanced attenuation, considered. The absorption of ultrasonic waves and the resulting heat deposition in absorbing media are described together with factors determining the resulting temperature rises obtained. In the case of tissue these include conduction and perfusion. The characteristics of cavitation in fluid media are also briefly covered. Finally, secondary nonlinear physical effects are described. These include radiation forces on interfaces and streaming in fluids.
根据不同流体介质中随频率变化而产生的典型位移、速度、加速度和压力,对超声波的基本物理特性进行了综述。考虑了界面处对波传播的影响,并介绍了波在界面处反射、透射和模式转换的方式。接着解释了高振幅超声波的非线性传播及其后果,包括谐波频率的产生和增强的衰减。描述了超声波在吸收介质中的吸收以及由此产生的热沉积,以及决定所产生温度升高的因素。对于组织而言,这些因素包括传导和灌注。还简要介绍了流体介质中空化的特性。最后,描述了二次非线性物理效应。这些效应包括作用在界面上的辐射力和流体中的声流。