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Reflection Matrix Approach for Quantitative Imaging of Scattering Media

机译:散射介质定量成像的反射矩阵方法

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We present a physically intuitive matrix approach for wave imaging and characterization in scattering media. The experimental proof of concept is performed with ultrasonic waves, but this approach can be applied to any field of wave physics for which multielement technology is available. The concept is that focused beam forming enables the synthesis, in transmit and receive, of an array of virtual transducers which map the entire medium to be imaged. The interelement responses of this virtual array form a focused reflection matrix from which spatial maps of various characteristics of the propagating wave can be retrieved. Here we demonstrate (i) a local focusing criterion that enables the image quality and the wave velocity to be evaluated everywhere inside the medium, including in random speckle, and (ii) a highly resolved spatial mapping of the prevalence of multiple scattering, which constitutes a new and unique contrast for ultrasonic imaging. The approach is demonstrated for a controllable phantom system and for in vivo imaging of the human abdomen. More generally, this matrix approach opens an original and powerful route for quantitative imaging in wave physics.
机译:我们在散射介质中提出了一种用于波成像和表征的物理上直观的矩阵方法。概念实验证明是用超声波进行的,但是这种方法可以应用于可用多元素技术的波理体领域。该概念是聚焦光束形成使得在映射整个介质的虚拟换能器阵列中的综合,可以是综合的,该阵列将整个介质映像。该虚拟阵列的时钟响应形成聚焦反射矩阵,可以从哪个传播波的各种特性的空间映射。在这里,我们演示(i)一种局部聚焦标准,其能够在介质内部的各处和所在位置评估的局部聚焦标准,包括随机散斑,以及(ii)多个散射普遍性的高度分辨的空间映射,其构成了多个散射的普遍性超声成像的一种新型和独特的对比度。该方法用于可控幻影系统和用于人腹体的体内成像。更一般地,该矩阵方法打开了波理中定量成像的原始和强大的路线。

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