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首页> 外文期刊>Journal of Engineering and Science in Medical Diagnostics and Therapy >Mechanical Characterization of Porcine Skin Starting Material
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Mechanical Characterization of Porcine Skin Starting Material

机译:机械特性的猪皮肤起始物料

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Porcine skin has been used as a starting material in several released mesh medical devices. Although this controlled animal derived material is prevalent in tissue engineered medical devices, little is known about its mechanical properties. This study mechanically characterized porcine skin starting material (PSSM), provided by Midwest Research Swine. Uniaxial tensile tests were performed on samples cut from different regions (back and neck) and orientations (parallel and perpendicular to the spine) on the PSSM. The stress-stretch relationship was determined for each sample utilizing a load frame equipped with a Digital Image Correlation measurement system. The PSSM skin demonstrates the classic nonlinear and linear regions seen in other biologic tissues. A bilinear curve fit method was used to separate the nonlinear and linear regions of the tensile curve, and each region was analyzed with an Ogden and linear model, respectively. The results show that the tensile curve is better described with this method as opposed to analyzing the full curve with one model. A comparison was made between samples cut from the different regions and orientations. There were significant differences between the failure measures and mechanical indices from the two regions, and on average the back behaved anisotropically and the neck isotropically. The PSSM mechanical properties from this study could serve as a preliminary guide for those exploring devices or processes in the tissue engineering field. The methods demonstrated in this study could also help characterize other biologic materials, and be used toward the development of tissue specific industrial standards.
机译:猪皮肤已被用作起始物料在几个网发布的医疗设备。虽然这个动物身上提取的材料控制组织工程医疗流行对其机械设备,所知甚少属性。猪皮肤起始物料(PSSM)提供中西部研究猪。进行样品从不同地区(背部和颈部)和方向(平行和垂直于脊柱)PSSM。确定为每个示例使用一个加载框架配备一个数字图像相关性测量系统。经典的非线性和线性区域中看到其他生物组织。方法被用来分离的非线性和拉伸曲线的线性区域,每个奥格登和线性区域进行了分析模型,分别。拉伸曲线更好的描述完整的曲线与分析方法用一个模型。样品从不同的地区取向。措施和机械之间的失败从这两个地区指数,平均的表现anisotropically和颈部各向同性的。从本研究可以作为初步的指导的探索设备或过程组织工程领域。在这项研究中还可以帮助描述其他生物材料,用于特定组织的发展工业标准。

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