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首页> 外文期刊>Journal of mechanics in medicine and biology >BIOMECHANICAL ANALYSIS OF DIFFERENT SURGICAL STRATEGIES FOR THE TREATMENT OF ROTATIONALLY UNSTABLE PELVIC FRACTURE USING FINITE ELEMENT METHOD
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BIOMECHANICAL ANALYSIS OF DIFFERENT SURGICAL STRATEGIES FOR THE TREATMENT OF ROTATIONALLY UNSTABLE PELVIC FRACTURE USING FINITE ELEMENT METHOD

机译:用有限元法治疗旋转不稳定盆腔骨折的不同外科策略的生物力学分析

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摘要

A rotationally unstable pelvic fracture can lead to loss of function and limit moving ability. Immediate fracture fixation is needed for patients with the pelvic fractures. However, it may be difficult to evaluate different surgical strategies for the fracture treatments due to variations in patients’ anatomies and surgical techniques. Thus, the purpose of the present study was to analyze the biomechanical performances of the intact, injured, and treated pelvises based on different physiological movements of the spine using finite element method. Three-dimensional musculoskeletal finite element models of the spine-pelvis-femur complex were developed. The intact pelvis, the rotationally unstable pelvis, and six types of pelvic fixation techniques were analyzed. Additionally, seven types of physiological movements of the spine were also considered. The results showed that the posterior iliosacral screws combined with lower and anterior plate (PIS-LAP) had good fixation stability, lower plate stress, and lower pelvic stress. However, the PIS-LAP increased the stress of the posterior iliosacral screws. The right lateral bending, left lateral bending, and flexion significantly affect all the biomechanical performances compared to the other physiological movements of the spine. The present study can provide engineers and surgeons with the understanding of the biomechanics of various fixation techniques during different physiological movements for the treatment of rotationally unstable pelvic fractures.
机译:旋转不稳定的骨盆骨折可能导致功能丧失和限制移动能力。骨盆骨折患者需要立即骨折固定。然而,由于患者解剖和手术技术的变化,可能难以评估骨折处理的不同外科策略。因此,本研究的目的是根据使用有限元法根据脊柱的不同生理运动来分析完整,受伤和处理的腰围的生物力学性能。开发了脊柱 - 骨盆复合物的三维肌肉骨骼有限元模型。分析了完整的骨盆,旋转不稳定的骨盆和六种类型的盆腔固定技术。此外,还考虑了脊柱的七种类型的生理运动。结果表明,后髂层螺钉与下板(PIS-LAP)合并,具有良好的固定稳定性,下板应力和较低的骨盆应力。然而,PIS-LAP增加了后髂螺钉的应力。与脊柱的其他生理运动相比,右侧弯曲,左侧弯曲和弯曲显着影响所有生物力学性能。本研究可以在不同的生理运动期间了解各种固定技术的生物力学,以治疗旋转不稳定的骨盆骨折。

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