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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part H. Journal of Engineering in Medicine >Examination of an in vitro methodology to evaluate the biomechanical performance of nucleus augmentation in axial compression
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Examination of an in vitro methodology to evaluate the biomechanical performance of nucleus augmentation in axial compression

机译:检查体外方法,评价轴压中核核的生物力学性能

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摘要

Intervertebral disc degeneration is one of the leading causes of back pain, but treatment options remain limited. Recently, there have been advances in the development of biomaterials for nucleus augmentation; however, the testing of such materials preclinically has proved challenging. The aim of this study was to develop methods for fabricating and testing bone-disc-bone specimens in vitro for examining the performance of nucleus augmentation procedures. Control, nucleotomy and treated intervertebral disc specimens were fabricated and tested under static load. The nucleus was removed from nucleotomy specimens using a trans-endplate approach with a bone plug used to restore bony integrity. Specimen-specific finite element models were developed to elucidate the reasons for the variations observed between control specimens. Although the computational models predicted a statistically significant difference between the healthy and nucleotomy groups, the differences found experimentally were not significantly different. This is likely due to variations in the material properties, hydration and level of annular collapse. The deformation of the bone was also found to be non-negligible. The study provides a framework for the development of testing protocols for nucleus augmentation materials and highlights the need to control disc hydration and the length of bone retained to reduce inter-specimen variability.
机译:椎间盘变性是背部疼痛的主要原因之一,但治疗方案仍然有限。最近,核心增强的生物材料的发展已经有所进展;然而,迫切证明了这种材料的测试已经证明了具有挑战性。本研究的目的是在体外制造和测试骨盘骨标本的方法,以检查核心增强程序的性能。在静载荷下制造并在静态载荷下制造并测试对照,核术和治疗的椎间盘标本。使用具有用于恢复骨插头的骨插头从核桃膜中取出核从核桃样品中除去核。开发了特定于特定的有限元模型以阐明对照样本之间观察到的变化的原因。虽然计算模型预测了健康和核酸骨髓基团之间的统计学显着差异,但实验发现的差异没有显着差异。这可能是由于材料特性的变化,水合和环形塌陷水平。还发现骨的变形是不可忽略的。该研究提供了一种开发核增强材料的测试协议的框架,并突出了控制盘水合的需要和保留的骨骼的长度,以降低标本间变异性。

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