Comparative Study of External Fixators With Different Spatial Configurations in the Damage Control Surgery of Comminuted Diaphyseal Fracture

IF 1.5 4区 工程技术 Q3 ENGINEERING, MECHANICAL Iranian Journal of Science and Technology-Transactions of Mechanical Engineering Pub Date : 2024-05-25 DOI:10.1007/s40997-024-00777-8
Yousof Mohandes, Mohammad Tahami, Amir R. Askari
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Abstract

Fractures in the lower extremities are sometimes accompanied by severe damage, so definitive treatments with extensive surgical exposure are impractical. Extensive traumatization and swelling of surrounding tissue often dictate the use of external fixators as a temporary treatment for immediate stabilization of compound fractures. External fixation offers a variety of possible spatial configurations. Adequate fracture stabilization demands a good understanding of the stiffness, strength, sustainability, and tilting of external fixators of different frames. An improper frame can result in nonunion, malunion, delayed healing, and bone re-fracture, some of which are indications for revision surgery. This study employs a numerical approach to assess the stiffness, stress distribution, pin loosening, and interfragmentary displacement in different configurations of external fixators applied to a comminuted fracture in the diaphyseal region of the tibia. Unilateral fixators with single and double rods, bilateral, biplanar, and triangular frames with and without end cross-links are different configurations examined in-silico. Results show that the triangular frame with cross-links exhibits the stiffest, strongest, and most sustainable construct in axial, bending, and torsion modes. Except for the torsion mode, adding the end cross-links does little to increase the stiffness and strength of biplanar and triangular frames. Moreover, doubling the rod considerably improves construct stiffness and strength under axial compression load while appearing to be less superior in torsional stiffness and pin loosening. Furthermore, the bilateral frame demonstrates the most uniform displacement across the fracture gap. The results of this study could be used for preoperative planning of diaphyseal fracture management with external fixators.

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不同空间配置的外固定器在粉碎性骺端骨折损伤控制手术中的比较研究
下肢骨折有时会伴有严重的损伤,因此进行大面积手术暴露的明确治疗是不切实际的。大面积的创伤和周围组织的肿胀往往要求使用外固定器作为临时治疗手段,以立即稳定复合骨折。外固定器可提供多种可能的空间结构。要充分稳定骨折,就必须充分了解不同框架的外固定器的硬度、强度、可持续性和倾斜度。不适当的框架会导致骨折不愈合、错位、延迟愈合和骨再骨折,其中一些是翻修手术的适应症。本研究采用数值方法评估了应用于胫骨骺区粉碎性骨折的不同结构外固定器的刚度、应力分布、针松动和节间位移。单侧外固定器包括单杆和双杆、双侧外固定器、双平面外固定器和带或不带末端交叉连接的三角形外固定器,这些都是在实验室中检测的不同配置。结果表明,在轴向、弯曲和扭转模式下,带有交叉连接的三角形框架表现出最坚硬、最强和最持久的结构。除扭转模式外,增加端部交联对提高双平面和三角形框架的刚度和强度几乎没有影响。此外,增加一倍的杆件可显著提高轴向压缩载荷下的结构刚度和强度,但在扭转刚度和销钉松动方面的优势似乎较小。此外,双侧框架在骨折间隙处的位移最为均匀。这项研究的结果可用于使用外固定器治疗骺端骨折的术前规划。
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来源期刊
CiteScore
2.90
自引率
7.70%
发文量
76
审稿时长
>12 weeks
期刊介绍: Transactions of Mechanical Engineering is to foster the growth of scientific research in all branches of mechanical engineering and its related grounds and to provide a medium by means of which the fruits of these researches may be brought to the attentionof the world’s scientific communities. The journal has the focus on the frontier topics in the theoretical, mathematical, numerical, experimental and scientific developments in mechanical engineering as well as applications of established techniques to new domains in various mechanical engineering disciplines such as: Solid Mechanics, Kinematics, Dynamics Vibration and Control, Fluids Mechanics, Thermodynamics and Heat Transfer, Energy and Environment, Computational Mechanics, Bio Micro and Nano Mechanics and Design and Materials Engineering & Manufacturing. The editors will welcome papers from all professors and researchers from universities, research centers, organizations, companies and industries from all over the world in the hope that this will advance the scientific standards of the journal and provide a channel of communication between Iranian Scholars and their colleague in other parts of the world.
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