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用于光声成像的有机硅/多元醇混合体模

Hybrid organosilicon/polyol phantom for photoacoustic imaging.

作者信息

Ratto Fulvio, Cavigli Lucia, Borri Claudia, Centi Sonia, Magni Giada, Mazzoni Marina, Pini Roberto

机构信息

Istituto di Fisica Applicata 'Nello Carrara' IFAC-CNR, Via Madonna del Piano, 10, 50019 Sesto Fiorentino (FI), Italy.

出版信息

Biomed Opt Express. 2019 Jul 2;10(8):3719-3730. doi: 10.1364/BOE.10.003719. eCollection 2019 Aug 1.

Abstract

The rapid development of hardware and software for photoacoustic technologies is urging the establishment of dedicated tools for standardization and performance assessment. In particular, the fabrication of anatomical phantoms for photoacoustic imaging remains an open question, as current solutions have not yet gained unanimous support. Here, we propose that a hybrid material made of a water-in-oil emulsion of glycerol and polydimethylsiloxane may represent a versatile platform to host a broad taxonomy of hydrophobic and hydrophilic dyes and recapitulate the optical and acoustic features of bio tissue. For a full optical parameterization, we refer to Wróbel, [ Biomed. Opt. Express7, 2088 (2016)], where this material was first presented for optical imaging. Instead, here, we complete the picture and find that its speed of sound and acoustic attenuation resemble those of pure polydimethylsiloxane, i.e. respectively 1150 ± 30 m/s and 3.5 ± 0.4 dB/(MHz·cm). We demonstrate its use under a commercial B-mode scanner and a home-made A-mode stage for photoacoustic analysis to retrieve the ground-truth encoded in a multilayer architecture containing indocyanine green, plasmonic particles and red blood cells. Finally, we verify the stability of its acoustic, optical and geometric features over a time span of three months.

摘要

光声技术硬件和软件的快速发展促使建立用于标准化和性能评估的专用工具。特别是,用于光声成像的解剖学体模的制造仍然是一个悬而未决的问题,因为目前的解决方案尚未获得一致支持。在这里,我们提出一种由甘油和聚二甲基硅氧烷的油包水乳液制成的混合材料,可能代表一个通用平台,可容纳多种疏水和亲水染料,并概括生物组织的光学和声学特征。为了进行完整的光学参数化,我们参考了Wróbel,[Biomed. Opt. Express7, 2088 (2016)],该材料首次用于光学成像。相反,在这里,我们完善了情况,发现其声速和声学衰减与纯聚二甲基硅氧烷相似,即分别为1150±30 m/s和3.5±0.4 dB/(MHz·cm)。我们展示了它在商用B模式扫描仪和自制A模式平台下用于光声分析的用途,以检索包含吲哚菁绿、等离子体颗粒和红细胞的多层结构中编码的真实情况。最后,我们验证了其声学、光学和几何特征在三个月时间跨度内的稳定性。

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