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Using Digital Image Correlation to Characterize Local Strains on Vascular Tissue Specimens

机译:使用数字图像相关来表征血管组织标本上的局部菌株

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摘要

Characterization of the mechanical behavior of biological and engineered soft tissues is a central component of fundamental biomedical research and product development. Stress-strain relationships are typically obtained from mechanical testing data to enable comparative assessment among samples and in some cases identification of constitutive mechanical properties. However, errors may be introduced through the use of average strain measures, as significant heterogeneity in the strain field may result from geometrical non-uniformity of the sample and stress concentrations induced by mounting/gripping of soft tissues within the test system. When strain field heterogeneity is significant, accurate assessment of the sample mechanical response requires measurement of local strains. This study demonstrates a novel biomechanical testing protocol for calculating local surface strains using a mechanical testing device coupled with a high resolution camera and a digital image correlation technique. A series of sample surface images are acquired and then analyzed to quantify the local surface strain of a vascular tissue specimen subjected to ramped uniaxial loading. This approach can improve accuracy in experimental vascular biomechanics and has potential for broader use among other native soft tissues, engineered soft tissues, and soft hydrogel/polymeric materials. In the video, we demonstrate how to set up the system components and perform a complete experiment on native vascular tissue.
机译:生物和工程软组织的机械行为表征是基础生物医学研究和产品开发的重要组成部分。应力-应变关系通常从机械测试数据中获得,以便能够在样品之间进行比较评估,并在某些情况下可以识别本构机械性能。但是,由于平均应变测量可能会引入误差,因为应变场中的显着异质性可能是由于样品的几何不均匀性以及由测试系统中软组织的安装/抓紧所引起的应力集中所致。当应变场的异质性很明显时,准确评估样品的机械响应需要测量局部应变。这项研究演示了一种新颖的生物力学测试协议,该协议可使用机械测试设备,高分辨率相机和数字图像相关技术来计算局部表面应变。采集一系列样品表面图像,然后进行分析以量化承受倾斜单轴载荷的维管组织样品的局部表面应变。这种方法可以提高实验血管生物力学的准确性,并具有在其他天然软组织,工程软组织和软水凝胶/聚合物材料中广泛使用的潜力。在视频中,我们演示了如何设置系统组件并在天然血管组织上执行完整的实验。

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