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使用背向反射式光学相干弹性成像技术在培养皿中对水凝胶进行非接触弹性测量。

Noncontact elasticity measurement of hydrogels in a culture dish using reverberant optical coherence elastography.

机构信息

Orthopedic Institute, Medical College, Soochow University, Suzhou, Jiangsu 215006, PR China; Department of Orthopedics, the First Affiliated Hospital of Soochow University, Suzhou, Jiangsu 215006, PR China.

Orthopedic Institute, Medical College, Soochow University, Suzhou, Jiangsu 215006, PR China; Department of Orthopedics, the First Affiliated Hospital of Soochow University, Suzhou, Jiangsu 215006, PR China.

出版信息

J Biomech. 2024 May;169:112154. doi: 10.1016/j.jbiomech.2024.112154. Epub 2024 May 16.

Abstract

Estimating the elasticity of hydrogel phantoms in a cell culture plane is important for understanding the cell behavior in response to various types of mechanical stimuli. Hence, a noncontact tool for measuring the elastic properties of hydrogel phantoms in such three-dimensional cell cultures is required. A well-known method to determine the mechanical properties of hydrogels is the transient wave method. However, due to the multiple reflections of waves from the boundaries, a bigger cell culture plane or multiple directional filters may be required. In this study, we utilized reverberant shear wave elastography, which is based on the autocorrelation principle, to evaluate the shear wave speed in hydrogel samples within a culture dish. Numerical simulations were performed first to confirm the validity of the reverberant elastography method. Subsequently, we used this method to measure the wave speeds in hydrogel phantoms with different concentrations. Shear rheology tests were also performed, and their results were found to be in good agreement with the measured shear wave speeds. The proposed method could be useful for measuring the elasticity of tissues in tissue engineering applications in an inexpensive and noncontact manner.

摘要

在细胞培养平面上估计水凝胶仿体的弹性对于理解细胞对各种类型机械刺激的反应行为非常重要。因此,需要一种非接触式工具来测量这种三维细胞培养中的水凝胶仿体的弹性特性。一种众所周知的确定水凝胶力学性能的方法是瞬态波法。然而,由于波从边界的多次反射,可能需要更大的细胞培养平面或多个方向滤波器。在这项研究中,我们利用基于自相关原理的混响剪切波弹性成像来评估培养皿内水凝胶样品中的剪切波速度。首先进行了数值模拟以确认混响弹性成像方法的有效性。随后,我们使用该方法测量了不同浓度的水凝胶仿体中的波速。还进行了剪切流变学测试,发现其结果与测量的剪切波速度吻合良好。该方法可用于以经济且非接触的方式测量组织工程应用中组织的弹性。

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