[Biomechanical advantages of personalized Y-shaped plates in treatment of distal humeral intra-articular fractures].

Q3 Medicine
Hao Yu, Jiachen Peng, Jibin Yang, Lidan Yang, Zhi Xu, Chen Yang
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引用次数: 0

Abstract

Objective: To compare the biomechanical properties of personalized Y-shaped plates with horizontal plates, vertical plates, and traditional Y-shaped plates in the treatment of distal humeral intra-articular fractures through finite element analysis, and to evaluate their potential for clinical application.

Methods: The study selected a 38-year-old male volunteer and obtained a three-dimensional model of the humerus by scanning his upper limbs using a 64-slice spiral CT. Four types of fracture-internal fixation models were constructed using Mimics 19.0, Geomagic Wrap 2017, Creo 6.0, and other software: horizontal plates, vertical plates, traditional Y-shaped plate, and personalized Y-shaped plate. The models were then meshed using Hypermesh 14.0 software, and material properties and boundary conditions were defined in Abaqus 6.14 software. AnyBody 7.3 software was used to simulate elbow flexion and extension movements, calculate muscle strength, joint forces, and load torques, and compare the peak stress and maximum displacement of the four fixation methods at different motion angles (10°, 30°, 50°, 70°, 90°, 110°, 130°, 150°) during elbow flexion and extension.

Results: Under dynamic loading during elbow flexion and extension, the personalized Y-shaped plate exhibits significant biomechanical advantages. During elbow flexion, the peak internal fixation stress of the personalized Y-shaped plate was (28.8±0.9) MPa, which was significantly lower than that of the horizontal plates, vertical plates, and traditional Y-shaped plate ( P<0.05). During elbow extension, the peak internal fixation stress of the personalized Y-shaped plate was (18.1±1.6) MPa, which was lower than those of the other three models, with significant differences when compared with horizontal plates and vertical plates ( P<0.05). Regarding the peak humeral stress, the personalized Y-shaped plate model showed mean values of (10.9±0.8) and (13.1±1.4) MPa during elbow flexion and extension, respectively, which were significantly lower than those of the other three models ( P<0.05). Displacement analysis showed that the maximum displacement of the humerus with the personalized Y-shaped plate during elbow flexion was (2.03±0.08) mm, slightly higher than that of the horizontal plates, but significantly lower than that of the vertical plates, showing significant differences ( P<0.05). During elbow extension, the maximum displacement of the humerus with the personalized Y-shaped plate was (1.93±0.13) mm, which was lower than that of the other three models, with significant differences when compared with vertical plates and traditional Y-shaped plates ( P<0.05). Stress contour analysis showed that the stress of the personalized Y-shaped plate was primarily concentrated at the bifurcation of the Y-shaped structure. Displacement contour analysis showed that the personalized Y-shaped plate effectively controlled the displacement of the distal humerus during both flexion and extension, demonstrating excellent stability.

Conclusion: The personalized Y-shaped plate demonstrates excellent biomechanical performance in the treatment of distal humeral intra-articular fractures, with lower stress and displacement, providing more stable fixation effects.

个性化y型钢板治疗肱骨远端关节内骨折的生物力学优势。
目的:通过有限元分析比较个性化y型钢板与水平钢板、垂直钢板及传统y型钢板治疗肱骨远端关节内骨折的生物力学性能,并评价其临床应用潜力。方法:选取一名38岁男性志愿者,采用64排螺旋CT对其上肢进行扫描,获得肱骨三维模型。采用Mimics 19.0、Geomagic Wrap 2017、Creo 6.0等软件构建4种骨折内固定模型:水平钢板、垂直钢板、传统y型钢板和个性化y型钢板。然后使用Hypermesh 14.0软件对模型进行网格划分,在Abaqus 6.14软件中定义材料属性和边界条件。使用任何人7.3软件模拟肘关节屈伸运动,计算肌肉力量、关节力和载荷力矩,比较四种固定方法在肘关节屈伸过程中不同运动角度(10°、30°、50°、70°、90°、110°、130°、150°)下的峰值应力和最大位移。结果:在肘关节屈伸动态载荷下,个性化y型钢板表现出显著的生物力学优势。肘关节屈曲时,个性化y型钢板内固定应力峰值为(28.8±0.9)MPa,显著低于水平钢板、垂直钢板和传统y型钢板(ppppp)。结论:个性化y型钢板治疗肱骨远端关节内骨折具有良好的生物力学性能,应力和位移较小,固定效果更稳定。
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来源期刊
中国修复重建外科杂志
中国修复重建外科杂志 Medicine-Medicine (all)
CiteScore
0.80
自引率
0.00%
发文量
11334
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