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Characterization of a novel caudal vertebral interbody fusion in a rat tail model: An implication for future material and mechanical testing

机译:在大鼠尾巴模型中新型尾椎椎体间融合的特征:对未来材料和力学测试的启示

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BackgroundOf the proposed animal interbody fusion models, rat caudal discs have gained popularity in disc research due to their strong resemblance to human discs with respect to geometry, composition and mechanical properties. The purpose of this study is to demonstrate an efficient, repeatable and easily accessible animal model of interbody fusion for future research into mechanical testing and graft materials.MethodsTwelve 12-week-old female Sprague–Dawley (SD) rats underwent caudal interbody fusion of the third and fourth coccygeal vertebrae of the tail. Serial radiological evaluation, and histological evaluation and manual palpation after sacrifice were performed to assess the fusion quality. Mechanical testing of functional units (FUs) of non-operated and operated segments was compared using a three-point bending test.ResultsAt postoperative 12 weeks, callus formation was observed at the fusion sites in all rats, with the mean radiological evaluations of 2.75/3 according to the Bransford classification. Newly formed bone tissue was also observed in all rats with the mean histological score of 5.85/7, according to the Emery grading system. No palpable gaps and obvious change of bending stiffness was observed in the operated segments. The mean bending stiffness of the FUs was statistically higher than that of the control FUs (26.57?±?6.71?N/mm vs. 12.45?±?3.21?N/mm, p ConclusionThe rat caudal disc interbody fusion model proved to be an efficient, repeatable and easily accessible model. Future research into adjuvant treatments like growth factor injection and alternative fusion materials under conditions of osteoporosis using this model would be worthwhile.
机译:背景技术在提出的动物椎间融合模型中,大鼠尾椎间盘由于在几何学,成分和力学性能方面与人间盘极相似,因而在椎间盘研究中获得了广泛的应用。这项研究的目的是展示一种有效,可重复且易于使用的椎间融合动物模型,以用于未来的机械测试和移植材料研究。方法12只12周大的Sprague-Dawley(SD)雌性大鼠进行尾椎椎间融合治疗。尾骨的第三和第四尾椎骨。进行系列放射学评估,组织学评估和处死后的手动触诊以评估融合质量。结果采用三点弯曲试验比较了未手术段和已手术段的功能单元(FU)的力学性能。结果术后12周,所有大鼠的融合部位均观察到骨call形成,平均放射学评估值为2.75 / 3根据Bransford分类。根据金刚砂分级系统,在所有大鼠中还观察到新形成的骨组织,其平均组织学评分为5.85 / 7。在手术节段中未观察到明显的缝隙和弯曲刚度的明显变化。 FUs的平均弯曲刚度在统计学上高于对照FUs(26.57?±?6.71?N / mm与12.45?±?3.21?N / mm,p结论)大鼠尾椎椎间椎体间融合模型被证明是一种高效,可重复且易于访问的模型,使用该模型在骨质疏松症条件下进行辅助治疗(如生长因子注射和替代融合材料)的未来研究将是值得的。

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