Zhang Qida, Chen Zhenxian, Peng Yinghu, Jin Zhongmin, Qin Ling
Musculoskeletal Research Laboratory, Department of Orthopaedics & Traumatology, The Chinese University of Hong Kong, Hong Kong.
Key Laboratory of Road Construction Technology and Equipment (Ministry of Education), School of Mechanical Engineering, Chang'an University, Xi'an, China.
J Orthop Translat. 2023 Sep 2;42:127-136. doi: 10.1016/j.jot.2023.08.003. eCollection 2023 Sep.
Conventional cannulated screws are commonly used for internal fixation in the treatment of vertical femoral neck fractures. However, the noticeably high rates of undesirable outcomes such as nonunion, malunion, avascular necrosis, and fixation failure still troubled the patients and surgeons. It is urgent to develop new cannulated screws to improve the above clinical problems. The purpose of this study was to design a novel magnesium-titanium hybrid cannulated screw and to further evaluate its biomechanical performance for the treatment of vertical femoral neck fractures.
A novel magnesium-titanium hybrid cannulated screw was designed, and the conventional titanium cannulated screw was also modeled. The finite element models for vertical femoral neck fractures with magnesium-titanium hybrid cannulated screws and conventional cannulated screws were respectively established. The hip joint contact force during walking gait calculated by a subject-specific musculoskeletal multibody dynamics model, was used as loads and boundary conditions for both finite element models. The stress and displacement distributions of the cannulated screws and the femur, the micromotion of the fracture surfaces of the femoral neck, and the overall stiffness were calculated and analyzed using finite element models. The biomechanical performance of the Magnesium-Titanium hybrid cannulated screws was evaluated.
The maximum stresses of the magnesium-titanium hybrid cannulated screws and the conventional cannulated screws were 451.5 MPa and 476.8 MPa, respectively. The maximum stresses of the femur with the above different cannulated screws were 140.3 MPa and 164.8 MPa, respectively. The maximum displacement of the femur with the hybrid cannulated screws was 6.260 mm, lower than the femur with the conventional cannulated screws, which was 7.125 mm. The tangential micromotions in the two orthogonal directions at the fracture surface of the femoral neck with the magnesium-titanium hybrid cannulated screws were comparable to those with the conventional cannulated screws. The overall stiffness of the magnesium-titanium hybrid cannulated screw system was 490.17 N/mm, higher than that of the conventional cannulated screw system, which was 433.92 N/mm.
The magnesium-titanium hybrid cannulated screw had superior mechanical strength and fixation stability for the treatment of the vertical femoral neck fractures, compared with those of the conventional cannulated screw, indicating that the magnesium-titanium hybrid cannulated screw has great potential as a new fixation strategy in future clinical applications.The translational potential of this article: This study highlights an innovative design of the magnesium-titanium hybrid cannulated screw for the treatment of vertical femoral neck fractures. The novel magnesium-titanium hybrid cannulated screw not only to provide sufficient mechanical strength and fixation stability but also to contribute to the promotion of fracture healing, which could provide a better treatment for the vertical femoral neck fractures, beneficially reducing the incidence of nonunion and reoperation rates.
传统空心螺钉常用于股骨颈垂直骨折的内固定治疗。然而,诸如骨不连、畸形愈合、缺血性坏死和固定失败等不良后果的发生率显著较高,这仍然困扰着患者和外科医生。迫切需要开发新型空心螺钉来改善上述临床问题。本研究的目的是设计一种新型镁钛混合空心螺钉,并进一步评估其在治疗股骨颈垂直骨折中的生物力学性能。
设计了一种新型镁钛混合空心螺钉,并对传统钛空心螺钉进行建模。分别建立了使用镁钛混合空心螺钉和传统空心螺钉治疗股骨颈垂直骨折的有限元模型。通过特定受试者的肌肉骨骼多体动力学模型计算出的步行步态期间髋关节接触力,被用作两个有限元模型的载荷和边界条件。使用有限元模型计算并分析空心螺钉和股骨的应力与位移分布、股骨颈骨折面的微动以及整体刚度。评估镁钛混合空心螺钉的生物力学性能。
镁钛混合空心螺钉和传统空心螺钉的最大应力分别为451.5MPa和476.8MPa。使用上述不同空心螺钉时股骨的最大应力分别为140.3MPa和164.8MPa。使用混合空心螺钉时股骨的最大位移为6.260mm,低于使用传统空心螺钉时的7.125mm。镁钛混合空心螺钉在股骨颈骨折面两个正交方向上的切向微动与传统空心螺钉相当。镁钛混合空心螺钉系统的整体刚度为490.17N/mm,高于传统空心螺钉系统的433.92N/mm。
与传统空心螺钉相比,镁钛混合空心螺钉在治疗股骨颈垂直骨折方面具有优异的机械强度和固定稳定性,这表明镁钛混合空心螺钉在未来临床应用中作为一种新的固定策略具有巨大潜力。本文的转化潜力:本研究突出了用于治疗股骨颈垂直骨折的镁钛混合空心螺钉的创新设计。新型镁钛混合空心螺钉不仅能提供足够的机械强度和固定稳定性,还有助于促进骨折愈合,可为股骨颈垂直骨折提供更好的治疗,有益地降低骨不连的发生率和再次手术率。