Dept. Electrical Engineering, Eindhoven University of Technology, Eindhoven, Netherlands.
Dept. Mechanical Engineering, Institute for Complex Molecular Systems, Eindhoven University of Technology, Eindhoven, Netherlands.
Ultrasound Med Biol. 2022 Jan;48(1):124-142. doi: 10.1016/j.ultrasmedbio.2021.09.004. Epub 2021 Oct 13.
Materials with well-characterized acoustic properties are of great interest for the development of tissue-mimicking phantoms with designed (micro)vasculature networks. These represent a useful means for controlled in-vitro experiments to validate perfusion imaging methods such as Doppler and contrast-enhanced ultrasound (CEUS) imaging. In this work, acoustic properties of seven tissue-mimicking phantom materials at different concentrations of their compounds and five phantom case materials are characterized and compared at room temperature. The goal of this research is to determine the most suitable phantom and case material for ultrasound perfusion imaging experiments. The measurements show a wide range in speed of sound varying from 1057 to 1616 m/s, acoustic impedance varying from 1.09 to 1.71 × 10 kg/ms, and attenuation coefficients varying from 0.1 to 22.18 dB/cm at frequencies varying from 1 MHz to 6 MHz for different phantom materials. The nonlinearity parameter B/A varies from 6.1 to 12.3 for most phantom materials. This work also reports the speed of sound, acoustic impedance and attenuation coefficient for case materials. According to our results, polyacrylamide (PAA) and polymethylpentene (TPX) are the optimal materials for phantoms and their cases, respectively. To demonstrate the performance of the optimal materials, we performed power Doppler ultrasound imaging of a perfusable phantom, and CEUS imaging of that phantom and a perfusion system. The obtained results can assist researchers in the selection of the most suited materials for in-vitro studies with ultrasound imaging.
具有良好声学特性的材料对于开发具有设计(微)脉管网络的组织模拟体具有重要意义。这些代表了一种有用的手段,可以进行受控的体外实验,以验证灌注成像方法,如多普勒和对比增强超声(CEUS)成像。在这项工作中,在不同浓度的化合物下,对七种组织模拟体材料的声学特性进行了表征和比较,并在室温下对五种模拟体案例材料进行了比较。这项研究的目的是确定最适合超声灌注成像实验的幻影和案例材料。测量结果显示,不同的幻影材料的声速在 1057 至 1616 米/秒之间变化,声阻抗在 1.09 至 1.71×10 千克/毫秒之间变化,在 1 至 6 兆赫兹频率范围内,衰减系数在 0.1 至 22.18 分贝/厘米之间变化。大多数幻影材料的非线性参数 B/A 在 6.1 至 12.3 之间变化。这项工作还报告了案例材料的声速、声阻抗和衰减系数。根据我们的结果,聚丙烯酰胺(PAA)和聚甲基戊烯(TPX)分别是幻影及其案例的最佳材料。为了演示最佳材料的性能,我们对可灌注幻影进行了功率多普勒超声成像,对该幻影和灌注系统进行了 CEUS 成像。所得结果可以帮助研究人员选择最适合超声成像体外研究的材料。