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Effect of Aging and Degeneration on the Human Intervertebral Disc during the Diurnal Cycle: A Finite Element Study

机译:昼夜衰老和变性在人椎间盘上的影响:有限元研究

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Alterations in the major biochemical constituents of intervertebral discs coincide with aging and degeneration, and can alter the disc's ability to support load. The most significant biochemical change that occurs in degeneration is the loss of proteoglycans in the nucleus pulposus. During a diurnal cycle, the disc experiences approximately 16 hours of functional loading, followed by 8 hours of recovery. An axisymmetric, poroelastic model was created using ABAQUS finite element software. Standard poroelastic theory is utilized, but a user-defined material was written to include the effects of osmotic swelling, which is directly related to proteoglycan content. Due to the high stresses in the nucleus, the annulus fibrosus must remodel itself to account for the change in properties of the nucleus. The stress experienced by the nucleus increases greatly in Grade 2 from Grade 1, but then decreases in Grade 3, and even Grade 4 experiences lower stresses than in Grade 2. The osmotic pressure in the central nucleus decreases approximately 75% with degeneration. This explains the increasing inability of Grades 3 through 5 to recover the fluid lost during loading, since the osmotic pressure gradient is the primary mechanism with which fluid flows back into the disc.
机译:椎间盘主要生化成分的改变与老化和变性一致,可以改变盘的支持载荷能力。变性中发生的最显着的生化变化是核髓中蛋白多糖的丧失。在昼夜循环期间,光盘经历大约16小时的功能载荷,然后恢复8小时。使用ABAQUS有限元软件创建轴对称的多孔弹性模型。使用标准的孔弹性理论,但是写入用户定义的材料以包括渗透肿胀的影响,其与蛋白多糖含量直接相关。由于细胞核中的高应力,环纤维蕈类必须重新改造本身以考虑核的性能变化。由1级的2级,核经历的压力从1级,但随后在3年级降低,甚至4级的压力比在2年级中的压力降低。中央核中的渗透压随退变减少约75%。这解释了在装载期间损失的液体3到5的不断增加,因为渗透压梯度是流体流回盘的主要机理。

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