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Stability Analysis of Plate—Screw Fixation for Femoral Midshaft Fractures

机译:钢板稳定性分析——股骨中干骨折的螺钉固定

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摘要

An understanding of the biomechanical characteristics and configuration of flexible and locked plating in order to provide balance stability and flexibility of implant fixation will help to construct and promote fast bone healing. The relationship between applied loading and implantation configuration for best bone healing is still under debate. This study aims to investigate the relationship between implant strength, working length, and interfragmentary strain (εIFM) on implant stability for femoral midshaft transverse fractures. The transverse fracture was fixed with a fragment locking compression plate (LCP) system. Finite element analysis was performed and subsequently characterised based on compression loading (600 N up to 900 N) and screw designs (conventional and locking) with different penetration depths (unicortical and bicortical). Strain theory was used to evaluate the stability of the model. The correlation of screw configuration with screw type shows a unicortical depth for both types (p < 0.01) for 700 N and 800 N loads and (p < 0.05) for configurations 134 and 124. Interfragmentary strain affected only the 600 N load (p < 0.01) for the bicortical conventional type (group BC), and the screw configurations that were influenced were 1234 and 123 (p < 0.05). The low steepness of the slope indicates the least εIFM for the corresponding biomechanical characteristic in good-quality stability. A strain value of ≤2% promotes callus formation and is classified as absolute stability, which is the minimum required value for the induction of callus and the maximum value that allows bony bridging. The outcomes have provided the correlation of screw configuration in femoral midshaft transverse fracture implantation which is important to promote essential primary stability.
机译:了解柔性和锁定板的生物力学特性和配置,以提供植入物固定的平衡、稳定性和柔韧性,将有助于构建和促进快速骨愈合。施加的负荷与最佳骨愈合的植入配置之间的关系仍在争论中。本研究旨在探讨植入物强度、工作长度和骨折块间应变 (εIFM) 对股骨中干横断骨折植入物稳定性的关系。横向骨折用碎片锁定加压板 (LCP) 系统固定。进行有限元分析,随后根据压缩载荷(600 N 至 900 N)和具有不同穿透深度(单皮质和双皮质)的螺钉设计(传统和锁定)进行表征。采用应变理论评价模型的稳定性。螺钉配置与螺钉类型的相关性显示,对于 700 N 和 800 N 负载,两种类型的 (p < 0.01) 和 (p < 0.05) 对于配置 134 和 124。碎片间应变仅影响双皮质常规类型 (BC 组) 的 600 N 负荷 (p < 0.01),受影响的螺钉配置为 1234 和 123 (p < 0.05)。斜率的低陡度表示在高质量稳定性下相应生物力学特性的 εIFM 最小。≤2% 的应变值会促进愈伤组织的形成,并被归类为绝对稳定性,这是诱导愈伤组织的最低要求值和允许骨桥接的最大值。结果提供了股骨中干横断骨折植入中螺钉配置的相关性,这对于促进基本的初级稳定性很重要。

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