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Copolymer-in-oil tissue-mimicking material with tunable acoustic properties

机译:具有可调声学特性的油包共聚物模拟组织材料

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Phantoms are important tools for image quality control of current and new imaging modalities and medical training procedures. Many phantom materials have been proposed; most of them use water as solvent, but these materials have disadvantages such as dehydration and low temporal stability. In order to overcome these difficulties, copolymer-in-oil gel was proposed as an inert and stable material; however, speed of sound for these materials are still lower than what is described for most biological tissues. Here, we propose the use of glycerol as an additive to tune the acoustic properties of copolymer-in-oil materials. We manufactured copolymer-in-oil gels using styrene-ethylene/butylene-styrene (SEBS), in a mass concentration of 10%. Two types of paraffinic mineral oil with different viscosities were used. Glycerol was added in a mass concentration range of 0-30%. We performed measurements of density, speed of sound, and acoustic attenuation of the samples. Density of the samples varied between 0.77 ± 0.11 g/cm3 and 0.93 ± 0.13 g/cm3. The acoustic parameters of the phantom samples were dependent on oil viscosity and glycerol concentration. Speed of sound ranged from 1423 ± 9 m/s to 1502 ± 10 m/s and acoustic attenuation from 0.05 dB/cm at 1 MHz to 28.6 dB/cm at 10 MHz. These results are consistent to those found in fat and breast tissues. We conclude that glycerol can be used to control acoustic parameters of copolymer-in-oil gels.
机译:幻影是控制当前和新成像方式以及医学培训程序的图像质量的重要工具。已经提出了许多幻影材料。它们中的大多数使用水作为溶剂,但是这些材料具有诸如脱水和低时间稳定性的缺点。为了克服这些困难,提出了油包共聚物凝胶作为一种惰性和稳定的材料。但是,这些材料的声速仍然低于大多数生物组织所描述的速度。在这里,我们建议使用甘油作为添加剂来调节油中共聚物材料的声学性能。我们使用质量分数为10%的苯乙烯-乙烯/丁烯-苯乙烯(SEBS)制造了油包共聚物凝胶。使用了两种粘度不同的石蜡矿物油。加入甘油的质量浓度范围为0-30%。我们对样品的密度,声速和声衰减进行了测量。样品的密度在0.77±0.11 g / cm3和0.93±0.13 g / cm3之间变化。体模样品的声学参数取决于油的粘度和甘油浓度。声速范围从1423±9 m / s到1502±10 m / s,声衰减从1 MHz的0.05 dB / cm到10 MHz的28.6 dB / cm。这些结果与在脂肪和乳腺组织中发现的结果一致。我们得出结论,甘油可用于控制油中共聚物凝胶的声学参数。

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