Zheng Xi, Wang Hanzhou, Zhou Junlin, Wang Dong
Department of SICU, Beijing Chaoyang Hospital, Capital Medical University, Beijing, 100020, China.
Department of Orthopedics, Beijing Chaoyang Hospital, Capital Medical University, Beijing, 100020, China.
J Orthop. 2025 May 19;67:223-229. doi: 10.1016/j.jor.2025.05.035. eCollection 2025 Sep.
The biomechanical strength of a new three-dimensional proximal femur intramedullary nail (TD-PFIN) was compared with that of the commonly used internal fixation by finite element analysis.
The femur CT imaging data of a healthy volunteer were collected. Three-dimensional full-length femur was conducted by software and osteotomy was performed at the intertrochanteric crest to make AO/OTA 31-A1.1 fracture model. DHS, PFNA, InterTAN and TD-PFIN fixation systems were simultaneously made.TD-PFIN had three head nails, which were vertically and horizontally dispersed in the proximal femur. Normal physiological weight bearing was simulated by finite element analysis, and peak von Mises stress and the maximum displacement in the femur and internal fixation were recorded.
An axial load of 700N was applied to the femoral head to simulate normal adult weight. Among the fixation systems, the TD-PFIN had the lowest peak von-Mises stress, which was 111.79 MPa. the DHS model had the highest stress concentration, which was 231.71 MPa. In the Von-Mises stress distribution of the femur, the maximum stress was 14.696 MPa in DHS fixed model and the least was 10.162 MPa in TD-PFIN fixed model. In the displacement distribution of the internal fixations, The DHS model was 3.8991 mm, which was the most. The TD-PFIN fixed model had a minimum displacement of 3.1571m. In the displacement distribution in femur, the DHS internal fixation model was the largest (4.017 mm). The TD-PFIN fixed mod was the smallest (3.1886 mm).
TD-PFIN designed by us had the characteristics of multi-plane fixed, with better anti-rotation ability. Its mechanical stability was better than DHS, PFNA, and InterTAN.
通过有限元分析比较新型三维股骨近端髓内钉(TD-PFIN)与常用内固定的生物力学强度。
收集一名健康志愿者的股骨CT成像数据。利用软件构建股骨全长三维模型,并在转子间嵴处进行截骨,制成AO/OTA 31-A1.1骨折模型。同时构建动力髋螺钉(DHS)、股骨近端防旋髓内钉(PFNA)、InterTAN及TD-PFIN固定系统。TD-PFIN有三根头钉,在股骨近端呈垂直和水平分布。通过有限元分析模拟正常生理负重,记录股骨及内固定的峰值冯·米塞斯应力和最大位移。
在股骨头施加700N轴向载荷以模拟正常成人负重。在各固定系统中,TD-PFIN的峰值冯·米塞斯应力最低,为111.79MPa。DHS模型的应力集中最高,为231.71MPa。在股骨的冯·米塞斯应力分布中,DHS固定模型的最大应力为14.696MPa,TD-PFIN固定模型的最小应力为10.162MPa。在内固定的位移分布中,DHS模型为3.8991mm,最大。TD-PFIN固定模型的最小位移为3.1571mm。在股骨的位移分布中,DHS内固定模型最大(4.017mm)。TD-PFIN固定模型最小(3.1886mm)。
我们设计的TD-PFIN具有多平面固定的特点,抗旋转能力较好。其力学稳定性优于DHS、PFNA和InterTAN。