胫骨平台外侧骨折内固定生物力学稳定性的计算分析
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1.天津工业大学机械工程学院;2.天津市天津医院创伤骨科

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R318. 01

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天津市应用基础研究多元投入基金(21JCYBJC01400)第一作者:伊鹏(1996-),男,汉族,山东淄博人,硕士研究生。研究方向:骨骼与生物力学。E-mail: pengyi70328@163.com。*通信作者:李雅峰(1979-),男,汉族,天津人,博士,副教授。研究方向:生物力学与仿生材料。E-mail: liyf@tiangong.edu.cn。


Computational analysis of the biomechanical stability of internal fixation of the lateral tibial plateau fracture
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1.School of Mechanical Engineering,Tiangong University;2.Traumatic Orthopedics,Tianjin Hospital

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    摘要:

    为了探究不同内固定方案对胫骨平台外侧骨折愈合过程中的影响。通过建立胫骨平台外侧骨折模型,分析了L型接骨板、T型接骨板和螺钉-垫圈三种不同配置的内固定方案,模拟手术后的三个阶段,评估接骨板、螺钉和垫圈的位移以及骨折区域的应力屏蔽率。研究结果表明:在术后三个阶段,T型接骨板在患者康复期间的稳定性优于其余两种方案,而螺钉-垫圈方案由于位移和骨折区域应力屏蔽率较大,其稳定性最差。相比之下,L型接骨板方案在术后早期表现出较好的稳定性,但在术后中后期的稳定性仅次于螺钉-垫圈方案。可见在术后的三个阶段内,与L型接骨板和螺钉-垫圈方案相比,T型接骨板具有更好的生物力学稳定性,可以作为外科医生治疗胫骨平台外侧骨折患者的新选择。

    Abstract:

    In order to investigate the effect of different internal fixation schemes on the healing process of lateral tibial plateau fracture. A model of the lateral tibial plateau fracture was established. Three different configurations of internal fixators namely L bone plate, T bone plate, and screw-washer were analyzed. Three stages after surgery were simulated to assess the displacement of bone plates, screws, washers, and the stress shielding ratio in the fracture area. The results show that, at three stages after surgery, the T bone plate showed better stability for patients during rehabilitation compared with the remaining two schemes, and the screw-washer scheme was the least stable due to the larger internal fixation displacement and stress shielding ratio in the fracture area. In contrast, the L bone plate scheme showed better stability in the early stages after surgery but was second only to the screw-washer scheme in the middle and late stages after surgery. The T bone plate showed better stability and became a new selection for surgeons to treat related patients. At three stages after surgery., the T bone plate has better biomechanical stability compared to the L bone plate and screw-washer schemes.

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伊鹏,李雅峰,邹子春,等. 胫骨平台外侧骨折内固定生物力学稳定性的计算分析[J]. 科学技术与工程, , ():

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  • 收稿日期:2023-07-01
  • 最后修改日期:2023-10-11
  • 录用日期:2023-10-11
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