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Compensation method for obtaining accurate sub-micrometer displacement measurements of immersed specimens using electronic speckle interferometry

机译:使用电子散斑干涉法获得沉浸样品精确亚微米位移测量值的补偿方法

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摘要

We proposed and validated a compensation method that accounts for the optical distortion inherent in measuring displacements on specimens immersed in aqueous solution. A spherically-shaped rubber specimen was mounted and pressurized on a custom apparatus, with the resulting surface displacements recorded using electronic speckle pattern interferometry (ESPI). Point-to-point light direction computation is achieved by a ray-tracing strategy coupled with customized B-spline-based analytical representation of the specimen shape. The compensation method reduced the mean magnitude of the displacement error induced by the optical distortion from 35% to 3%, and ESPI displacement measurement repeatability showed a mean variance of 16 nm at the 95% confidence level for immersed specimens. The ESPI interferometer and numerical data analysis procedure presented herein provide reliable, accurate, and repeatable measurement of sub-micrometer deformations obtained from pressurization tests of spherically-shaped specimens immersed in aqueous salt solution. This method can be used to quantify small deformations in biological tissue samples under load, while maintaining the hydration necessary to ensure accurate material property assessment.
机译:我们提出并验证了一种补偿方法,该方法考虑了在测量浸入水溶液中的样品的位移时固有的光学畸变。将球形橡胶样品安装在定制设备上并加压,然后使用电子散斑图干涉仪(ESPI)记录所得的表面位移。点到点的光方向计算是通过光线追踪策略以及基于定制的基于B样条的样本形状分析表示来实现的。补偿方法将由光学畸变引起的位移误差的平均幅度从35%降低到3%,并且ESPI位移测量的可重复性显示,在浸入式样品的95%置信度下,平均方差为16 nm。本文介绍的ESPI干涉仪和数值数据分析程序可提供可靠,准确且可重复的亚微米形变测量,该形变是通过将球形试样浸入盐水溶液中进行加压试验而获得的。此方法可用于量化负载下生物组织样本中的小变形,同时保持必要的水合作用,以确保准确的材料特性评估。

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