首页> 外文期刊>International Journal of Nanomedicine >Biomechanical stability of a bioabsorbable self-retaining polylactic acidano-sized β-tricalcium phosphate cervical spine interbody fusion device in single-level anterior cervical discectomy and fusion sheep models
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Biomechanical stability of a bioabsorbable self-retaining polylactic acidano-sized β-tricalcium phosphate cervical spine interbody fusion device in single-level anterior cervical discectomy and fusion sheep models

机译:可生物吸收的自保持性聚乳酸/纳米级β-磷酸三钙颈椎椎间融合器在单层颈椎前路椎间盘切除术和融合羊模型中的生物力学稳定性

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Purpose: The aim of this study was to investigate the biomechanical stability provided by a novel, polylactic acidano-sized, β-tricalcium phosphate, bioabsorbable, self-retaining cervical fusion cage (BCFC).Methods: Quasistatic nonconstraining torques (maximum 1.5 NM) induced flexion, extension, lateral bending (±1.5 NM), and axial rotation (±1.5 NM) on 32 sheep cervical spines (C2–C5). The motion segment C3–C4 was first tested intact; the following groups were tested after complete discectomy: autologous tricortical iliac crest bone graft, Medtronic–Wego polyetheretherketone (PEEK) cage, Solis PEEK cage, and BCFC. The autologous bone graft group was tested with an anterior plate. The mean range of motion (ROM) was calculated from the load-displacement curves.Results: BCFC significantly decreased ROM in lateral bending and axial rotation compared to other implants, and no significant difference in ROM between two types of PEEK cages and BCFC could be observed in flexion and extension. Anterior cervical plate (ACP) significantly decreased ROM in flexion and extension, but no significant difference in ROM between BCFC and bone graft plus ACP could be determined in lateral bending and axial rotation.Conclusion: The BCFC device showed better stability to autologous tricortical iliac crest bone graft and PEEK cages in single-level anterior cervical discectomy and fusion models and thus may be a potential alternative to the current PEEK cages.
机译:目的:本研究的目的是研究一种新型的聚乳酸/纳米级β-磷酸三钙可生物吸收的自保持颈椎融合器(BCFC)提供的生物力学稳定性。方法:拟静态非约束扭矩(最大1.5 NM)在32个绵羊颈椎(C2-C5)上引起屈曲,伸展,横向弯曲(±1.5 NM)和轴向旋转(±1.5 NM)。运动段C3-C4首先完整测试。完整的椎间盘切除术后,对以下组进行了测试:自体三皮质骨移植物,Medtronic-Wego聚醚醚酮(PEEK)笼,Solis PEEK笼和BCFC。用前板测试自体骨移植组。结果表明:与其他植入物相比,BCFC在横向弯曲和轴向旋转中的ROM显着降低,并且两种PEEK笼和BCFC的ROM之间没有显着差异。在屈伸中观察到。颈前板(ACP)的屈曲和伸展ROM明显降低,但BCFC和骨移植加ACP的ROM在侧向弯曲和轴向旋转方面没有显着差异。结论:BCFC装置对自体三层骨显示出更好的稳定性单层颈前路椎间盘切除术和融合模型中的植骨和PEEK笼,因此可能是当前PEEK笼的潜在替代品。

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