Angel Y C, Aristégui C
Therapeutic Applications of Ultrasound Laboratory, INSERM UMR 556, Université Claude Bernard Lyon 1, 151, Cours Albert Thomas, 69424 Lyon Cedex 03, France.
J Acoust Soc Am. 2005 Jul;118(1):72-82. doi: 10.1121/1.1931088.
A multiple scattering analysis in a nonviscous fluid is developed in detail in order to predict the coherent sound motion in the presence of disordered heterogeneities, such as particles, fibers, bubbles, or contrast agents. Scatterers can be homogeneous, layered, shell-like with encapsulated liquids or gas, nonabsorbing, or absorbing, and can take a wide variety of shapes. A priori imposed limitations or physical assumptions are absent in the derivation, whether they concern the expected response of the fluid-scatterer mixture, the scatterer size relative to wavelength, or the scatterer concentration or the screen thickness. However, as in any multiple scattering formulation, a closure assumption is invoked. Closed-form results for the backscattered and forward-scattered wave motions on either side of the screen of scatterers are obtained. The fluid-scatterer mixture is shown to behave as an effective dissipative medium from the standpoint of the coherent motion. It is found that the effective medium is fully described once two parameters are determined: the effective wave number and the reflection coefficient for the associated half-space screen. Remarkably, both parameters depend only on the far-field scattering properties of a single scatterer.
为了预测在存在无序不均匀性(如颗粒、纤维、气泡或造影剂)的情况下的相干声运动,详细开展了非粘性流体中的多重散射分析。散射体可以是均匀的、分层的、带有封装液体或气体的壳状、非吸收性的或吸收性的,并且可以具有多种形状。在推导过程中不存在先验施加的限制或物理假设,无论是关于流体 - 散射体混合物的预期响应、散射体尺寸相对于波长的关系、散射体浓度还是屏蔽厚度。然而,与任何多重散射公式一样,需要引入一个封闭假设。获得了散射体屏两侧后向散射和前向散射波运动的闭式结果。从相干运动的角度来看,流体 - 散射体混合物表现为一种有效的耗散介质。结果发现,一旦确定两个参数,有效介质就得到了充分描述:有效波数和相关半空间屏的反射系数。值得注意的是,这两个参数仅取决于单个散射体的远场散射特性。