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首页> 外文期刊>Journal of mechanics in medicine and biology >MECHANICAL CHARACTERIZATION OF SPINAL DURA USING A PD-CONTROLLED BIAXIAL TENSILE TESTER
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MECHANICAL CHARACTERIZATION OF SPINAL DURA USING A PD-CONTROLLED BIAXIAL TENSILE TESTER

机译:使用PD控制双轴拉伸试验机的脊柱硬阵的机械表征

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摘要

In this study, we developed an equi-load biaxial tensile tester and applied it to a series of mechanical tests using specimens obtained from the porcine spinal dura mater. The dural sample exhibited a nonlinear and anisotropic behavior as it was more deformable in the longitudinal direction rather than in the circumferential direction at lower strains; i.e., mechanical response of the longitudinal direction was significantly compliant in the Toe region compared to that of the circumferential direction under 1:1 biaxial stretching. However, we have not observed a significant difference with respect to the resultant strain and Young's modulus between the longitudinal and circumferential directions at higher strains or in the Linear region. Our results also indicated that the upper thoracic region (T1) was relatively compliant compared to the lumbar region (L), where the failure load was almost equal between them because the dural thickness of T1 was five-fold greater than that of L; i.e., spinal dura mater became stiffer and stronger at further distances from the brain. This shows structural effectiveness and may be preferable to mechanically protect the vulnerable spinal cord from externally applied impact loads.
机译:在这项研究中,我们开发了一种平衡的双轴拉伸试验机,并使用从猪脊柱硬脑膜MART中获得的样品将其应用于一系列机械测试。多云样品表现出非线性和各向异性的行为,因为它在纵向方向上更可变形而不是在较低菌株处的圆周方向上;即,与圆周方向下方1:1的双轴拉伸相比,纵向方向的机械响应显着符合脚趾区域。然而,我们没有观察到在较高菌株或线性区域中的纵向和圆周方向之间的所得应变和杨氏模量的显着差异。我们的结果还表明,与腰部(L)相比,上胸部(T1)相对符合标准,其中故障载荷在它们之间几乎相等,因为T1的多孔厚度大于L;即,脊柱硬脑膜从大脑的进一步距离变得更加僵硬和更强。这表明结构有效性,并且可能优选地从外部施加的冲击载荷机械地保护脆弱的脊髓。

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