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Magnetic resonance imaging of acoustic streaming: Absorption coefficient and acoustic field shape estimation

机译:声流的磁共振成像:吸收系数和声场形状估计

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In this study, magnetic resonance imaging (MRI) is used to visualize acoustic streaming in liquids. A single-shot spin echo sequence (HASTE) with a saturation band perpendicular to the acoustic beam permits the acquisition of an instantaneous image of the flow due to the application of ultrasound. An average acoustic streaming velocity can be estimated from the MR images, from which the ultrasonic absorption coefficient and the bulk viscosity of different glycerol-water mixtures can be deduced. In the same way, this MRI method could be used to assess the acoustic field and time-average power of ultrasonic transducers in water (or other liquids with known physical properties), after calibration of a geometrical parameter that is dependent on the experimental setup. (c) 2006 Elsevier B.V. All rights reserved.
机译:在这项研究中,磁共振成像(MRI)用于可视化液体中的声流。具有垂直于声束的饱和带的单次自旋回波序列(HASTE)允许由于施加超声波而获取流动的瞬时图像。可以从MR图像中估计平均声流速度,从中可以推断出不同甘油水混合物的超声吸收系数和体粘度。同样,在校准取决于实验设置的几何参数之后,该MRI方法可用于评估水(或具有已知物理特性的其他液体)中超声换能器的声场和时均功率。 (c)2006 Elsevier B.V.保留所有权利。

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