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Development of a Tissue-Mimicking Phantom of the Brain for Ultrasonic Studies

机译:超声研究脑脑模组模拟幻像的发展

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摘要

Constructing tissue-mimicking phantoms of the brain for ultrasonic studies is complicated by the low backscatter coefficient of brain tissue, causing difficulties in simultaneously matching the backscatter and attenuation properties. In this work, we report on the development of a polyvinyl alcohol-based tissue-mimicking phantom with properties approaching those of human brain tissue. Polyvinyl alcohol was selected as the base material for the phantom as its properties can be varied by freeze–thaw cycling, variations in concentration and the addition of scattering inclusions, allowing some independent control of backscatter and attenuation. The ultrasonic properties (including speed of sound, attenuation and backscatter) were optimized using these methods with talc powder as an additive. It was determined that the ultrasonic properties of the phantom produced in this study are best matched to brain tissue in the frequency range 1–3 MHz, indicating its utility for laboratory ultrasonic studies in this frequency range.
机译:构建大脑的组织模仿超声研究的幽灵,脑组织的低反向散射系数复杂,同时匹配后散射和衰减性能造成困难。在这项工作中,我们报告了具有接近人脑组织的性质的基于聚乙烯醇的组织模拟幻像的发展。选择聚乙烯醇作为幻象的基材,因为其性能可以通过冻融循环,浓缩的变化而变化,并且添加散射夹杂物,允许对反射散射和衰减进行一些独立的控制。使用滑石粉作为添加剂的方法优化超声物性能(包括声音,衰减和反向散射)。据确定该研究中生产的幻象的超声特性与1-3 MHz频率范围内的脑组织最佳匹配,表明其在该频率范围内的实验室超声波研究的实用性。

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