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Motion of a solid sphere in a viscoelastic medium in response to applied acoustic radiation force: Theoretical analysis and experimental verification

机译:固体球在粘弹性介质中对声辐射力的响应:理论分析和实验验证

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摘要

The motion of a rigid sphere in a viscoelastic medium in response to an acoustic radiation force of short duration was investigated. Theoretical and numerical studies were carried out first. To verify the developed model, experiments were performed using rigid spheres of various diameters and densities embedded into tissue-like, gel-based phantoms of varying mechanical properties. A 1.5 MHz, single-element, focused transducer was used to apply the desired radiation force. Another single-element, focused transducer operating at 25 MHz was used to track the displacements of the sphere. The results of this study demonstrate good agreement between theoretical predictions and experimental measurements. The developed theoretical model accurately describes the displacement of the solid spheres in a viscoelastic medium in response to the acoustic radiation force.
机译:研究了刚体在粘弹性介质中响应短时声辐射力的运动。首先进行了理论和数值研究。为了验证开发的模型,使用了各种直径和密度的刚性球体进行了实验,这些球体嵌入了具有不同机械特性的组织状,基于凝胶的模型中。使用1.5 MHz单元素聚焦换能器施加所需的辐射力。另一个工作在25 MHz的单元素聚焦换能器用于跟踪球的位移。这项研究的结果证明了理论预测与实验测量之间的良好一致性。建立的理论模型可准确描述固体球在粘弹性介质中响应声辐射力的位移。

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