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Analysis of the impact of the course of hydration on the mechanical properties of the annulus fibrosus of the intervertebral disc

机译:水化过程对椎间盘纤维环机械性能的影响分析

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PurposeThe aim of this study was to determine the impact of free hydration on the mechanical parameters of the annulus fibrosus (AF) of the intervertebral disc (IVD), determined in a standard manner. Attention was also given to the hydration occurring in real time and geometric changes resulting from swelling of the AF.MethodsUniaxial tensile tests of multilayer samples of the AF with bone attachment were performed for two groups: samples subjected to 30?min of hydration prior to the mechanical test, and control samples, which were not subjected to additional hydration.ResultsAs a result of hydration, the values of both the failure stress (σ UTS) and the tensile modulus (E) were lower than in the control group. A decrease in these values was observed for the AF from both the anterior and posterior parts of the IVD.ConclusionsThe tests showed a significant dependence of the determined mechanical parameters on the cross-sectional area. The larger the cross-sectional area, the lower the obtained value of stress. By contrast, the value of the stiffness coefficient is independent of the cross-sectional area. The differences in mechanical parameters are related mainly to water absorption into structures of the AF during hydration. This is confirmed by microscopic analysis of geometric dimensions of the AF during hydration conducted in real time. The greatest changes occurred in the radial direction, where the thickness increased by 2.05?mm, while in the axial direction the main change concerned an increase in height by 0.69?mm. There were negligible changes in the circumferential direction...
机译:目的本研究的目的是确定游离水合对椎间盘(IVD)纤维环(AF)力学参数的影响,以标准方式确定。方法还应注意实时发生的水合作用以及因AF肿胀而导致的几何变化。方法对两组具有骨附着力的AF多层样品进行单轴拉伸试验:两组样品在进行水合作用之前先进行30分钟的水合作用结果表明,由于水合作用,破坏应力(σUTS)和拉伸模量(E)的值均低于对照组。从IVD的前部和后部观察到AF值均降低。结论试验表明,所确定的机械参数对横截面积的依赖性很大。截面积越大,获得的应力值越低。相反,刚度系数的值与横截面积无关。力学参数的差异主要与水合作用过程中AF的水分吸收有关。实时进行的水合作用过程中,AF的几何尺寸的微观分析证实了这一点。最大的变化发生在径向,厚度增加了2.05?mm,而轴向的主要变化是高度增加了0.69?mm。圆周方向的变化可忽略不计。

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