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Effects of exogenous crosslinking on in vitro tensile and compressive moduli of lumbar intervertebral discs.

机译:外源性交联对腰椎间盘体外拉伸和压缩模量的影响。

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BACKGROUND: Collagen crosslinks may play a vital role in preventing ongoing disc degeneration. Age-accumulating crosslinks have been thought to increase brittleness and reduce fatigue resistance. However recent studies have demonstrated increases in fatigue resistance, joint stability and nutritional flow properties resulting from crosslink augmentation. In this study, multi-directional moduli of bovine lumbar intervertebral discs were measured in vitro, including circumferential tension, radial compression, axial tension, and axial compression in control and crosslinked specimens. METHODS: Four types of annulus fibrosus specimens were dissected from control and crosslinked discs. Cross-sectional areas were measured using a non-contact laser measurement system and then four separate mechanical tests were conducted using a materials testing machine with custom-made loading fixtures. FINDINGS: The circumferential specimens demonstrated the highest moduli in both low stiffness and linear elastic regions. After a crosslink treatment, the modulus increased more in circumferential tension compared to axial tension and more in axial compression compared to radial compression. Other tensile properties had higher increases in circumferential tension compared to axial tension after crosslinking. INTERPRETATION: Assuming form follows function, circumferential tension is the predominant type of stress experienced by non-degenerated annulus fibrosus. The anisotropic mechanical properties of the annulus fibrosus is non-uniformly affected by crosslink augmentation. Dominant effects were in the directions with greater inherent stiffnesses. These results suggest some beneficial effects of crosslink augmentation on the mechanical properties of the annulus fibrosus: increase in ultimate strength, yield strength, toughness, and modulus in the principal stress directions.
机译:背景:胶原蛋白交联可能在防止持续的椎间盘退变中起至关重要的作用。人们认为,随着年龄增长的交联会增加脆性并降低抗疲劳性。然而,最近的研究表明,由于交联的增加,抗疲劳性,关节稳定性和营养流动特性均得到提高。在这项研究中,在体外测量牛腰椎间盘的多向模量,包括在对照和交联标本中的周向张力,径向压缩,轴向张力和轴向压缩。方法:从对照和交联的椎间盘中解剖出四种类型的纤维环标本。使用非接触式激光测量系统测量横截面积,然后使用带有定制加载夹具的材料测试机进行四个单独的机械测试。结果:圆周试样在低刚度和线性弹性区域均表现出最高模量。经过交联处理后,与轴向张力相比,模量在周向张力上增加更多,与径向压缩相比,在轴向压缩下增加更多。与交联后的轴向张力相比,其他拉伸性质的周向张力具有更高的增加。解释:假设形式遵循功能,周向张力是非变性纤维环承受的主要应力类型。纤维环的各向异性力学性能不受交联增强的影响。在具有更大固有刚度的方向上起主要作用。这些结果表明交联增强对纤维环的机械性能有一些有益影响:极限强度,屈服强度,韧性和主应力方向模量的增加。

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