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Optical and acoustic characterization of freeze-thawed polyvinyl alcohol gels

机译:冻融聚乙烯醇凝胶的光学和声学特性

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Preclinical validation of non-invasive photoacoustic imaging of carotid artery atherosclerosis requires vessel phantoms that imitate optical, acoustic and mechanical properties of vascular tissue. Polyvinyl alcohol (PVA) phantoms that are widely used as ultrasound phantoms due to their elastic properties are also promising for photoacoustics. This study contributes to the field by quantifying the optical and acoustic properties of PVA gel, and aims at the characterization of realistic phantoms for future studies. In this study, we investigated the relation between acoustic scatterers and optical absorbers to quantify optical and acoustic properties of the PVA phantoms. Four different concentrations of orgasol acoustic scatterers, and varying concentration of Indian ink and molecular dye absorbers were added to a 15 wt% PVA solution. Samples were subjected to 1 to 5 freeze-thaw cycles and were examined after each cycle to quantify the effect on the optical and the acoustic properties. Optical attenuation was measured between 400 nm and 990 nm using a plate reader. Additionally, pulse-echo plane wave ultrasound was used for acoustic characterization. Changing the concentration of orgasol between 0.5 wt% and 4 wt% increased the mean optical attenuation of PVA by 35% after the first freeze thaw cycle. Likewise, each freeze-thaw cycle increased the optical attenuation due to scattering of light by the microstructure of PVA. The absorbance of pure PVA increased 40% between the first and second cycle and 3% between the fourth and fifth cycle. While the orgasol concentration and the freeze-thaw cycles altered the acoustic speed and attenuation, the ink and the dye inclusions did not significantly affect the acoustic properties of PVA.
机译:对颈动脉粥样硬化的非侵入性光声成像进行临床前验证,需要模仿血管组织的光学,声学和机械特性的血管模型。由于其弹性特性而被广泛用作超声体模的聚乙烯醇(PVA)体模也有望用于光声技术。这项研究通过量化PVA凝胶的光学和声学特性,为该领域做出了贡献,并旨在表征现实的人体模型,以备将来研究之用。在这项研究中,我们调查了声散射体和光吸收体之间的关系,以量化PVA体模的光学和声学特性。将四种不同浓度的orgasol声散射体,以及不同浓度的印度墨水和分子染料吸收剂添加到15 wt%的PVA溶液中。将样品进行1至5个冻融循环,并在每个循环后进行检查,以量化对光学和声学性能的影响。使用酶标仪在400 nm至990 nm之间测量光衰减。此外,脉冲回波平面波超声用于声学表征。在第一个冻融循环后,将Orgasol的浓度更改在0.5 wt%和4 wt%之间会使PVA的平均光学衰减增加35%。同样,由于PVA的微结构对光的散射,每个冻融循环都会增加光衰减。在第一和第二个循环之间,纯PVA的吸光度增加了40%,在第四和第五个循环之间,吸光度增加了3%。尽管orgasol浓度和冻融循环改变了声速和衰减,但墨水和染料夹杂物并未显着影响PVA的声特性。

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