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首页> 外文期刊>Ultrasound in Medicine and Biology >Characterization of acoustic properties of PVA-shelled ultrasound contrast agents: linear properties (part I).
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Characterization of acoustic properties of PVA-shelled ultrasound contrast agents: linear properties (part I).

机译:装有PVA的超声造影剂的声学特性表征:线性特性(第一部分)。

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This work examines the linear acoustic behavior of ultrasound contrast agents made of three types of poly (vinyl alcohol) (PVA) shelled microbubbles manufactured at different pH and temperature conditions. Backscattered power, attenuation coefficient and phase velocity of ultrasonic waves propagating through suspensions of PVA contrast agents were measured at temperature values ranging between 24 degrees C and 37 degrees C in a frequency range from 3 MHz to 13 MHz. Enhancement of the backscattered power higher than 20 dB and displaying a weak dependence on temperature was observed. Attenuation and phase velocity, on the other hand, showed higher sensitivity to temperature variations. A modified version of the Church model, which accounts for the dispersion of the dynamic modulus of the PVA shells, was developed to simultaneously fit the attenuation and phase velocity data at 24 degrees C. The frequency dependence of the storage modulus was found to be that of semiflexible polymeric networks. On the other hand, the frequency dependence of the dynamic loss modulus suggests that additional mechanisms, which may be related to the finite dimensions of the shell and/or to its inhomogeneity, may play a significant role in the dissipation of the acoustic energy. For the microbubbles of interest, this model predicts frequency dependent resonance frequency higher than 100 MHz.
机译:这项工作检查了超声造影剂的线性声学行为,该超声造影剂是由在不同pH和温度条件下制造的三种类型的带聚乙烯醇(PVA)的带壳微气泡制成的。通过PVA造影剂悬浮液传播的超声波的背向散射功率,衰减系数和相速度是在3 MHz至13 MHz的频率范围内,温度范围介于24摄氏度和37摄氏度之间的温度下测量的。观察到高于20 dB的反向散射功率增强,并且显示出对温度的弱依赖性。另一方面,衰减和相速度对温度变化表现出更高的敏感性。开发了丘奇模型的修改版本,该模型考虑了PVA壳的动态模量的分散性,以同时拟合24摄氏度下的衰减和相速度数据。发现,存储模量的频率依赖性是:半柔性聚合物网络。另一方面,动态损耗模量的频率依赖性表明,可能与壳体的有限尺寸和/或其不均匀性有关的其他机制可能在声能的耗散中起重要作用。对于感兴趣的微泡,该模型预测高于100 MHz的频率相关谐振频率。

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