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Ultrasonic backscatter coefficients for weakly scattering agar spheres in agar phantoms

机译:超声反向散射系数用于琼脂体模中的弱散射琼脂球

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摘要

Applicability of ultrasound phantoms to biological tissue has been limited because most phantoms have generally used strong scatterers. The objective was to develop very weakly scattering phantoms, whose acoustic scattering properties are likely closer to those of tissues and then compare theoretical simulations and experimental backscatter coefficient (BSC) results. The phantoms consisted of agar spheres of various diameters (nominally between 90 and 212 μm), containing ultrafiltered milk, suspended in an agar background. BSC estimates were performed at two institutions over the frequency range 1–13 MHz, and compared to three models. Excellent agreement was shown between the two laboratory results as well as with the three models.
机译:超声体模对生物组织的适用性受到限制,因为大多数体模通常使用强散射体。目的是开发非常弱散射的体模,其体声散射特性可能更接近于组织体,然后比较理论模拟和实验反向散射系数(BSC)结果。体模由各种直径(标称在90至212μm之间)的琼脂球组成,其中包含悬浮在琼脂背景中的超滤牛奶。 BSC估计是在两个机构的1-13 MHz频率范围内进行的,并与三个模型进行了比较。在两个实验室结果以及三个模型之间显示出极好的一致性。

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