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首页> 外文期刊>Journal of orthopaedic research >Metaphyseal fracture healing follows similar biomechanical rules as diaphyseal healing.
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Metaphyseal fracture healing follows similar biomechanical rules as diaphyseal healing.

机译:干fracture端骨折的愈合遵循与干dia端愈合相似的生物力学规则。

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摘要

It is generally supposed that the pattern of fracture healing in trabecular metaphyseal bone differs from that of diaphyseal fractures. However, few experimental studies to date have been performed, even though clinically many fractures occur in metaphyseal bone. Particularly, the influence of biomechanical factors has not yet been investigated under standardized conditions. Our aim was to correlate the interfragmentary strain (IFS) with the bone-healing outcome in a controlled metaphyseal fracture model in sheep. Twelve sheep received a partial osteotomy in the distal femoral condyle close to the trochlea. The determination of the IFS by in vivo X-ray analyses and a finite element model revealed that the deflection of the osteotomy gap by the patello-femoral force during walking provoked increasing strains of up to 40%. Bone healing was evaluated after 8 weeks by the assessment of the bone mineral density and by histomorphometry in regions of interest that displayed differing magnitudes of IFS. In areas with strains below 5% significantly less bone formation occurred compared to areas with higher strains (6-20%). For strains larger than 20% fibrocartilage layers were observed. Low IFS (<5%) led to intramembranous bone formation, whereas higher strains additionally provoked endochondral ossification or fibrocartilage formation. It is therefore proposed that metaphyseal bone healing follows similar biomechanical principles as diaphyseal healing.
机译:一般认为,小梁干bone端骨的骨折愈合方式与干dia端骨折不同。然而,尽管临床上在干phy端骨中发生了许多骨折,但迄今为止尚未进行任何实验研究。特别是,尚未在标准化条件下研究生物力学因素的影响。我们的目标是在绵羊的掌骨干meta端骨折模​​型中,将片段间张力(IFS)与骨愈合结果相关联。十二只绵羊在靠近滑车的股骨远端con中接受了部分截骨术。通过体内X射线分析和有限元模型对IFS进行测定,结果表明,行走过程中pat骨股骨力量对截骨间隙的偏斜引起了高达40%的应变增加。 8周后,通过评估骨矿物质密度并通过组织形态计量学对感兴趣区域中表现出不同IFS幅度的骨愈合情况进行评估。与应变较高的地区(6-20%)相比,应变低于5%的地区发生的骨形成明显减少。对于大于20%的纤维软骨层的菌株,观察到。低IFS(<5%)会导致膜内骨形成,而较高的应变会引起软骨内骨化或纤维软骨形成。因此,提出干meta端骨愈合遵循与干phy端愈合相似的生物力学原理。

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