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Optical absorbance measurements and photoacoustic evaluation of freeze-thawed polyvinyl-alcohol vessel phantoms

机译:冷冻冻融聚乙烯醇血管映射的光学吸光度测量和光声评价

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Multispectral photoacoustic (MPA) imaging is a promising tool for the diagnosis of atherosclerotic carotids. Excitation of different constituents of a plaque with different wavelengths of the light may provide morphological information to evaluate plaque vulnerability. Preclinical validation of in vivo photoacoustic (PA) imaging requires a comprehensive phantom study. In this study, the design of optically realistic vessel phantoms for photoacoustics was examined by characterizing their optical properties for different dye concentrations, and comparing those to PA measurements. Four different concentrations of Indian ink and molecular dye were added to a 15 wt% PVA and 1 wt% orgasol mixture. Next, the homogeneously mixed gels were subjected to five freeze - thaw cycles to increase the stiffness of vessel phantoms (r_(inner) = 2.5mm, r_(outer) = 4mm). For each cycle, the optical absorbance was measured between 400 nm 990 nm using a plate reader. Additionally, photoacoustic responses of each vessel phantom at 808 nm were tested with a novel, hand-held, integrated PA probe. Measurements show that the PA signal intensity increases with the optical absorber concentration (0.3 to 0.9) in close agreement with the absorbance measurements. The freeze - thaw process has no significant effect on PA intensity. However, the total attenuation of optical energy increases after each freeze-thaw cycle, which is primarily due to the increase in the scattering coefficient. In future work, the complexity of these phantoms will be increased to examine the feasibility of distinguishing different constituents with MPA imaging.
机译:多光谱光声(MPA)成像是诊断动脉粥样硬化颈动脉的有希望的工具。用不同波长的光的斑块的不同成分的激发可以提供形态学信息以评估斑块脆弱性。体内光声(PA)成像的临床前验证需要全面的幻影研究。在本研究中,通过表征其用于不同染料浓度的光学性质,并将其与PA测量的光学性能进行检查,检查光声血管光学素的设计。将四种不同浓度的印度油墨和分子染料加入15wt%PVA和1wt%的Orgasol混合物中。接下来,对均匀的混合凝胶进行五个冻融循环,以增加容器闪烁的刚度(R_(内)= 2.5mm,R_(外)= 4mm)。对于每个循环,使用板读取器在400nm 990nm之间测量光学吸光度。另外,通过新颖的,手持式集成的PA探针测试每个血管幻像的光声反应。测量表明,与吸光度测量密切一致,PA信号强度随着光学吸收浓度(0.3至0.9)而增加。冻融过程对PA强度没有显着影响。然而,在每个冻融循环后光能的总衰减增加,这主要是由于散射系数的增加。在未来的工作中,将增加这些幽灵的复杂性,以检查与MPA成像区分不同成分的可行性。

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