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Influence of testing environment and loading rate on intervertebral disc compressive mechanics: An assessment of repeatability at three different laboratories

机译:测试环境和装载率对椎间盘压缩力学的影响:三种不同实验室重复性评估

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摘要

Abstract In vitro mechanical testing of intervertebral discs is crucial for basic science and pre‐clinical testing. Generally, these tests aim to replicate in vivo conditions, but simplifications are necessary in specimen preparation and mechanical testing due to complexities in both structure and the loading conditions required to replicate in vivo conditions. There has been a growing interest in developing a consensus of testing protocols within the spine community to improve comparison of results between studies. The objective of this study was to perform axial compression experiments on bovine bone‐disc‐bone specimens at three institutions. No differences were observed between testing environment being air, with PBS soaked gauze, or a PBS bath (P > .206). A 100‐fold increase in loading rate resulted in a small (2%) but significant increase in compressive mechanics (P < .017). A 7% difference in compressive stiffness between Labs B and C was eliminated when values were adjusted for test system compliance. Specimens tested at Lab A, however, were found to be stiffer than specimens from Lab B and C. Even after normalizing for disc geometry and adjusting for system compliance, an ∼35% difference was observed between UK based labs (B and C) and the USA based lab (A). Large differences in specimen stiffness may be due to genetic differences between breeds or in agricultural feed and use of growth hormones; highlighting significant challenges in comparing mechanics data across studies. This research provides a standardized test protocol for the comparison of spinal specimens and provides steps towards understanding how location and test set‐up may affect biomechanical results.
机译:摘要椎间盘的体外机械测试对于基础科学和临床前测试至关重要。通常,这些测试目的是在体内条件下复制,但由于结构中的复杂性和在体内条件中复制所需的装载条件,因此在样品制备和机械测试中进行简化。在制定对脊椎社区内的测试方案的共识,越来越兴趣,以改善研究结果的比较。本研究的目的是在三个机构对牛骨盘骨标本进行轴向压缩实验。在测试环境中没有观察到空气的差异,PBS浸泡纱布或PBS浴(P> .206)。加载速率增加100倍,导致小(2%),但压缩力学的显着增加(P <.017)。在调整测试系统依从性的情况下,消除了Labs B和C之间的压缩刚度差异的7%差异。然而,在Lab A中测试的标本比来自Lab B和C的标本更硬。即使在椎间盘几何形状标准化和调整系统依从性之后,也观察到英国的实验室(B和C)之间观察到〜35%差异美国的实验室(A)。标本僵硬的大差异可能是由于品种或农业饲料之间的遗传差异和生长激素的使用;突出跨研究机械数据的重大挑战。本研究提供了一种标准化的测试方案,用于比较脊柱标本,并提供了解理解位置和测试设置如何影响生物力学结果的步骤。

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