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首页> 外文期刊>Journal of Engineering and Science in Medical Diagnostics and Therapy >Effect of Anatomical Sites on the Mechanical Properties of Spinal Dura Subjected to Biaxial Stretching
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Effect of Anatomical Sites on the Mechanical Properties of Spinal Dura Subjected to Biaxial Stretching

机译:解剖网站机械的影响脊髓硬脑膜受双轴的属性伸展运动

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The spinal cord is encased by spinal meninges called the pia, arachnoid, and dura maters. Among these membranes, the dura mater is the thick and outermost layer and is the toughest and strongest. Thus, mechanical failure of the dura mater can lead to spontaneous cerebrospinal fluid leaks or hypovolemia, resulting in a complication or exacerbation of unfavorable symptoms involved in a mild traumatic brain injury. To develop protective equipment that can help prevent such injuries, accurate characterization of the spinal dura mater is required, especially regarding the mechanical properties at different anatomical sites. In this study, we used an equiload biaxial tensile tester to investigate the mechanical properties of porcine meningeal dura mater along the whole length of the spine. The resultant strain of the dorsal side was greater than that of the ventral side (P < 0.01), while the circumferential direction was significantly stiffer than the longitudinal direction (P < 0.01) at lower strains regardless of the spinal level. We also found that the material stiffness progressively increased from the cervical level to the thoracolumbar level at lower strains, which implies that the dura mater inherently possesses structurally preferred features or functions because the neck requires sufficient flexibility for daily activities. Further, Young's modulus was significantly less on the dorsal side than on the ventral side at higher strains (P < 0.05), suggesting that the dorsal side is readily elongated by spinal flexion even within the range of physiological motion.
机译:脊髓是由脊髓髓膜包裹称为pia、蛛网膜和硬脑膜等事宜。这些膜厚和硬脑膜最外层,是最艰难的最强。母亲会导致自发性脑脊液泄漏或血容量减少,导致并发症或涉及的不利的症状恶化轻度创伤性脑损伤。防护设备,可以帮助预防等损伤、脊髓的准确描述硬脑膜是必需的,特别是有关力学性能不同的解剖网站。拉力试验机对机械进行调查猪脑膜硬脑膜的属性整个脊柱的长度。背侧的压力更大的腹侧(P < 0.01),而圆周方向明显硬度比纵向方向(P < 0.01)无论在较低的压力脊髓水平。刚度逐渐增加的颈胸腰椎水平的水平较低的压力,这意味着硬脑膜天生具有结构首选因为脖子需要特性或功能对日常活动足够的灵活性。此外,杨氏模量明显减少比腹一边背一边更高的压力(P < 0.05),这表明背侧脊髓容易拉长弯曲甚至在生理范围运动。

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