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首页> 外文期刊>Journal of biomedical optics >Single-beam, dual-view digital holographic interferometry for biomechanical strain measurements of biological objects
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Single-beam, dual-view digital holographic interferometry for biomechanical strain measurements of biological objects

机译:单光束,双视图数字全息干涉仪,用于生物物体的生物力学应变测量

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摘要

We describe a method for dual-view biomechanical strain measurements of highly asymmetrical biological objects, like teeth or bones. By using a spherical mirror, we were able to simultaneously record a digital hologram of the object itself and the mirror image of its (otherwise invisible) rear side. A single laser beam was sufficient to illuminate both sides of the object, and to provide a reference beam. As a result, the system was mechanically very stable, enabling long exposure times (up to 2 min) without the need for vibration isolation. The setup is simple to construct and adjust, and can be used to interferometrically observe any object that is smaller than the mirror diameter. Parallel data processing on a CUDA-enabled (compute unified device architecture) graphics card was used to reconstruct digital holograms and to further correct image distortion. We used the setup to measure the deformation of a tooth due to mastication forces. The finite-element method was used to compare experimental results and theoretical predictions.
机译:我们描述了一种用于高度不对称的生物对象(例如牙齿或骨骼)的双视图生物力学应变测量的方法。通过使用球面镜,我们能够同时记录物体本身的数字全息图及其(否则是不可见的)背面的镜像。单个激光束足以照亮物体的两侧并提供参考光束。结果,该系统在机械上非常稳定,可以实现较长的曝光时间(最长2分钟),而无需隔振。该设置易于构造和调整,可用于以干涉法观察小于镜面直径的任何物体。使用支持CUDA(计算统一设备架构)的图形卡上的并行数据处理来重建数字全息图并进一步校正图像失真。我们使用该设置来测量由于咀嚼力引起的牙齿变形。有限元方法用于比较实验结果和理论预测。

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