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应用物理力学方法和光声信号动态模型对聚乙烯醇水凝胶的研究

Study of Polyvinyl Alcohol Hydrogels Applying Physical-Mechanical Methods and Dynamic Models of Photoacoustic Signals.

作者信息

Ramírez-Chavarría Roberto G, Pérez-Pacheco Argelia, Terán Emiliano, Quispe-Siccha Rosa M

机构信息

Engineering Institute, National Autonomous University of Mexico, Mexico City 04510, Mexico.

Research and Technological Development Unit, Research Department, General Hospital of Mexico "Dr. Eduardo Liceaga", Mexico City 06726, Mexico.

出版信息

Gels. 2023 Sep 7;9(9):727. doi: 10.3390/gels9090727.

Abstract

This study aims to analyze the physical-mechanical properties and dynamic models of tissue-simulating hydrogels, specifically the photoacoustic (PA) response signals, by varying the concentrations of polyvinyl alcohol (PVA) and molecular weight (MW). A state-space model (SSM) is proposed to study the PVA hydrogels to retrieve the PA-related signal's damping ratio and natural frequency. Nine box-shaped PVA hydrogels containing saline solution were used, with five concentrations of PVA (7, 9, 12, 15, 20%) for MW1 and four for MW2. The results indicated that the concentration of PVA and MW played an important role in the PA wave's amplitude, arrival time, and speed of sound over the hydrogels. The SSM parameters showed that increasing PVA and MW concentrations improved the hydrogels' ability to absorb and transfer energy under the PA effect. These parameters were also found to be correlated with density and modulus of elasticity. Additionally, the concentrations of PVA and MW affected the absorption and optical scattering coefficients. The physical-mechanical properties, including porosity, density, and modulus of elasticity, improved as the concentration of PVA and MW increased. The ultimate goal of this study is to develop hydrogels as phantoms that can be used for tissue simulation and imaging.

摘要

本研究旨在通过改变聚乙烯醇(PVA)的浓度和分子量(MW),分析组织模拟水凝胶的物理力学性能和动态模型,特别是光声(PA)响应信号。提出了一种状态空间模型(SSM)来研究PVA水凝胶,以获取与PA相关信号的阻尼比和固有频率。使用了九个含有盐溶液的箱形PVA水凝胶,其中MW1有五种PVA浓度(7%、9%、12%、15%、20%),MW2有四种。结果表明,PVA的浓度和MW对水凝胶上PA波的振幅、到达时间和声速起着重要作用。SSM参数表明,增加PVA和MW浓度可提高水凝胶在PA效应下吸收和传递能量的能力。还发现这些参数与密度和弹性模量相关。此外,PVA和MW的浓度影响吸收系数和光学散射系数。随着PVA和MW浓度的增加,包括孔隙率、密度和弹性模量在内的物理力学性能得到改善。本研究的最终目标是开发可用于组织模拟和成像的水凝胶体模。

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