期刊信息
  • 主管单位:
  • 上海市科学技术协会
  • 主办单位:
  • 上海有色金属学会
    上海理工大学
  • 名誉主编:
  • 陈兴章
  • 主    编:
  • 刘平
  • 地    址:
  • 上海市军工路516号
  • 邮政编码:
  • 200093
  • 联系电话:
  • (86)021-55781550
  • 电子邮件:
  • nmme@usst.edu.cn
  • 国际标准刊号:
  • 2096-2983
  • 国内统一刊号:
  • 31-2125/TF
  • 单    价:
  • 8.00
  • 定    价:
  • 60.00
赵虎,杨金帅,李强.基于有限元分析的钛合金椎弓根螺钉插入不同骨质性能研究[J].有色金属材料与工程,2024,45(1):40-48.
基于有限元分析的钛合金椎弓根螺钉插入不同骨质性能研究
Performance study of titanium alloy pedicle screw insertion into different bones based on finite element analysis study on the performance of titanium alloy pedicle screw inserting different bones based on finite element analysis
  
DOI:10.13258/j.cnki.nmme.20230220002
中文关键词:  椎弓根螺钉  骨质疏松  有限元分析  椎骨  力学实验
英文关键词:pedicle screw  osteoporosis  finite element analysis  vertebrae  mechanical experiments
基金项目:上海市自然科学基金资助项目(15ZR1428400);上海高性能医疗器械材料工程技术研究中心资助项目(20DZ2255500)
作者单位E-mail
赵虎 上海理工大学 机械工程学院, 上海 200093  
杨金帅 上海理工大学 机械工程学院, 上海 200093  
李强 上海理工大学 机械工程学院, 上海 200093
上海高性能医疗器械材料工程技术研究中心, 上海 200093 
liqiang@usst.edu.cn 
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中文摘要:
      钛合金因其优异的力学性能和生物相容性,广泛用于椎弓根螺钉的制备。椎弓根螺钉插入椎骨时,松质骨密度和皮质骨厚度都会对椎弓根螺钉插入稳定性产生影响,因此,有必要研究它们对椎弓根螺钉插入性能的影响。先通过有限元仿真方法研究不同骨质对椎弓根螺钉插入阶段的插入扭矩与骨应力的影响;再选用不同密度的聚氨酯泡沫作为骨材料,对标准钛合金椎弓根螺钉的插入过程进行力学性能测试。结果表明:相较于松质骨密度,皮质骨的厚度对螺钉插入稳定性的影响更大;皮质骨厚度的减小和松质骨密度的降低都会削弱椎弓根螺钉在插入时的插入扭矩;仿真结果与力学实验结果具有较高的一致性,表明有限元仿真方法可以用于椎弓根螺钉的插入扭矩预测。
英文摘要:
      Titanium alloys are widely used to make pedicle screws because of their excellent mechanical properties and biocompatibility. When the pedicle screws are implanted into the vertebrae, both trabecular bone density and cortical bone thickness affect the implant stability of pedicle screws. Therefore, it is necessary to study their effects on the implant performance of pedicle screws. Firstly, the influence of different bones on the insertion torque and bone stress during the implantation stage of pedicle screws was studied by finite element simulation method. Then polyurethane foams with different densities were selected as bone materials to test the mechanical properties of standard titanium alloy pedicle screws during implantation. The results indicate that compared with trabecular bone density, cortical bone thickness has a greater impact on the stability of screw implantation. The reduction of cortical bone thickness and the decrease of trabecular bone density both weaken the insertion torque of pedicle screws during implantation. The simulation results are highly consistent with the mechanical experiments, suggesting that the finite element simulation method can be used for predicting the insertion torque of pedicle screws.
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