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聚(乙烯醇)凝胶作为光声乳腺体模的再研究。

Poly(vinyl alcohol) gels as photoacoustic breast phantoms revisited.

机构信息

University of Twente, Biomedical Photonic Imaging group, Mira Institute for Biomedical Technology and Technical Medicine, P.O. Box 217, 7500AE Enschede, The Netherlands.

出版信息

J Biomed Opt. 2011 Jul;16(7):075002. doi: 10.1117/1.3597616.

Abstract

A popular phantom in photoacoustic imaging is poly(vinyl alcohol) (PVA) hydrogel fabricated by freezing and thawing (F-T) aqueous solutions of PVA. The material possesses acoustic and optical properties similar to those of tissue. Earlier work characterized PVA gels in small test specimens where temperature distributions during F-T are relatively homogeneous. In this work, in breast-sized samples we observed substantial temperature differences between the shallow regions and the interior during the F-T procedure. We investigated whether spatial variations were also present in the acoustic and optical properties. The speed of sound, acoustic attenuation, and optical reduced scattering coefficients were measured on specimens sampled at various locations in a large phantom. In general, the properties matched values quoted for breast tissue. But while acoustic properties were relatively homogeneous, the reduced scattering was substantially different at the surface compared with the interior. We correlated these variations with gel microstructure inspected using scanning electron microscopy. Interestingly, the phantom's reduced scattering spatial distribution matches the optical properties of the standard two-layer breast model used in x ray dosimetry. We conclude that large PVA samples prepared using the standard recipe make excellent breast tissue phantoms.

摘要

在光声成象中,一个常见的假像是通过冷冻和解冻(F-T)聚乙烯醇(PVA)水溶液制备的聚(乙烯醇)(PVA)水凝胶。这种材料具有与组织相似的声学和光学特性。早期的工作在小的测试样本中对 PVA 凝胶进行了表征,在这些样本中,F-T 过程中的温度分布相对均匀。在这项工作中,我们在乳房大小的样本中观察到,在 F-T 过程中,浅层区域和内部之间存在显著的温度差异。我们研究了在声学和光学性质中是否也存在空间变化。在大的水凝胶样本中,在不同位置取样,测量了声速、声衰减和光的散射系数。一般来说,这些性质与引用的乳房组织的值相匹配。但是,虽然声学性质相对均匀,但与内部相比,表面的光散射显著不同。我们用扫描电子显微镜检查凝胶的微观结构来关联这些变化。有趣的是,水凝胶的散射空间分布与用于 X 射线剂量测定的标准两层乳房模型的光学性质相匹配。我们的结论是,使用标准配方制备的大 PVA 样本是极好的乳房组织水凝胶模型。

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