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用作治疗性超声组织仿体的聚乙烯醇水凝胶的声学、空化和热学性质表征

Characterization of Acoustic, Cavitation, and Thermal Properties of Poly(vinyl alcohol) Hydrogels for Use as Therapeutic Ultrasound Tissue Mimics.

作者信息

Braunstein Lisa, Brüningk Sarah C, Rivens Ian, Civale John, Haar Gail Ter

机构信息

Joint Department of Physics at The Institute of Cancer Research and The Royal Marsden NHS Foundation Trust, London, United Kingdom.

Joint Department of Physics at The Institute of Cancer Research and The Royal Marsden NHS Foundation Trust, London, United Kingdom; Machine Learning & Computational Biology Lab, Department of Biosystems Science and Engineering, ETH Zurich, Basel, Switzerland; SIB Swiss Institute of Bioinformatics, Lausanne, Switzerland.

出版信息

Ultrasound Med Biol. 2022 Jun;48(6):1095-1109. doi: 10.1016/j.ultrasmedbio.2022.02.007. Epub 2022 Mar 22.

Abstract

The thermal and mechanical effects induced in tissue by ultrasound can be exploited for therapeutic applications. Tissue-mimicking materials (TMMs), reflecting different soft tissue properties, are required for experimental evaluation of therapeutic potential. In the study described here, poly(vinyl alcohol) (PVA) hydrogels were characterized. Hydrogels prepared using different concentrations (5%-20% w/w) and molecular weights of PVA ± cellulose scatterers (2.5%-10% w/w) were characterized acoustically (sound speed, attenuation) as a function of temperature (25°C-45°C), thermally (thermal conductivity, specific heat capacity) and in terms of their cavitation thresholds. Results were compared with measurements in fresh sheep tissue (kidney, liver, spleen). Sound speed depended most strongly on PVA concentration, and attenuation, on cellulose content. For the range of formulations investigated, the PVA gel acoustic properties (sound speed: 1532 ± 17 to 1590 ± 9 m/s, attenuation coefficient: 0.08 ± 0.01 to 0.37 ± 0.02 dB/cm) fell within those measured in fresh tissue. Cavitation thresholds for 10% PVA hydrogels (50% occurrence: 4.1-5.4 MPa, 75% occurrence: 5.4-8.2 MPa) decreased with increasing cellulose content. In summary, PVA cellulose composite hydrogels may be suitable mimics of acoustic, cavitation and thermal properties of soft tissue for a number of therapeutic ultrasound applications.

摘要

超声在组织中产生的热效应和机械效应可用于治疗应用。实验评估治疗潜力需要能反映不同软组织特性的仿组织材料(TMMs)。在本文所述的研究中,对聚乙烯醇(PVA)水凝胶进行了表征。使用不同浓度(5%-20% w/w)和分子量的PVA ± 纤维素散射体(2.5%-10% w/w)制备的水凝胶,根据温度(25°C-45°C)对其声学特性(声速、衰减)、热特性(热导率、比热容)以及空化阈值进行了表征。将结果与在新鲜绵羊组织(肾脏、肝脏、脾脏)中的测量结果进行了比较。声速对PVA浓度的依赖性最强,而衰减则取决于纤维素含量。在所研究的配方范围内,PVA凝胶的声学特性(声速:1532 ± 17至1590 ± 9 m/s,衰减系数:0.08 ± 0.01至0.37 ± 0.02 dB/cm)落在新鲜组织测量值范围内。10% PVA水凝胶的空化阈值(50%发生:4.1-5.4 MPa,75%发生:5.4-8.2 MPa)随纤维素含量的增加而降低。总之,PVA纤维素复合水凝胶可能适用于多种治疗性超声应用,可模拟软组织的声学、空化和热特性。

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