Don't mind the gap: reframing the Perren strain rule for fracture healing using insights from virtual mechanical testing.

IF 5.1 2区 医学 Q2 CELL & TISSUE ENGINEERING Bone & Joint Research Pub Date : 2025-01-01 DOI:10.1302/2046-3758.141.BJR-2024-0191.R2
Maham Tanveer, Karina Klein, Brigitte von Rechenberg, Salim Darwiche, Hannah L Dailey
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Abstract

Aims: The "2 to 10% strain rule" for fracture healing has been widely interpreted to mean that interfragmentary strain greater than 10% predisposes a fracture to nonunion. This interpretation focuses on the gap-closing strain (axial micromotion divided by gap size), ignoring the region around the gap where osteogenesis typically initiates. The aim of this study was to measure gap-closing and 3D interfragmentary strains in plated ovine osteotomies and associate local strain conditions with callus mineralization.

Methods: MicroCT scans of eight female sheep with plated mid-shaft tibial osteotomies were used to create image-based finite element models. Virtual mechanical testing was used to compute postoperative gap-closing and 3D continuum strains representing compression (volumetric strain) and shear deformation (distortional strain). Callus mineralization was measured in zones in and around the osteotomy gap.

Results: Gap-closing strains averaged 51% (mean) at the far cortex. Peak compressive volumetric strain averaged 32% and only a small tissue volume (average 0.3 cm3) within the gap experienced compressive strains > 10%. Distortional strains were much higher and more widespread, peaking at a mean of 115%, with a mean of 3.3 cm3 of tissue in and around the osteotomy experiencing distortional strains > 10%. Callus mineralization initiated outside the high-strain gap and was significantly lower within the fracture gap compared to around it at nine weeks.

Conclusion: Ovine osteotomies can heal with high gap strains (> 10%) dominated by shear conditions. High gap strain appears to be a transient local limiter of osteogenesis, not a global inhibitor of secondary fracture repair.

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不要介意间隙:利用虚拟力学测试的见解重新构建Perren应变规则用于骨折愈合。
目的:骨折愈合的“2 - 10%应变规则”被广泛解释为骨折块间应变大于10%易导致骨折不愈合。这种解释侧重于裂缝闭合应变(轴向微动除以裂缝大小),忽略了裂缝周围通常开始成骨的区域。本研究的目的是测量间隙关闭和3D碎片间应变在镀羊截骨术和局部应变条件与愈伤组织矿化的关联。方法:对8只母羊行胫骨中骨截骨术,采用微ct扫描建立基于图像的有限元模型。虚拟力学测试用于计算术后间隙闭合和代表压缩(体积应变)和剪切变形(扭曲应变)的三维连续应变。在截骨间隙内和周围区域测量骨痂矿化。结果:在远端皮质区,缺口闭合应变平均为51%(平均值)。峰值压缩体积应变平均为32%,间隙内只有很小的组织体积(平均为0.3 cm3)经历压缩应变bbb10 %。畸变应变高得多,分布也广得多,峰值平均为115%,截骨术内及周围平均3.3 cm3的组织出现畸变应变bbb10 %。伤愈组织矿化始于高应变间隙外,在骨折间隙内的矿化明显低于骨折间隙周围。结论:以剪切条件为主的高间隙应变(bbb10 %)可使羊截骨愈合。高间隙应变似乎是一种短暂的局部成骨限制,而不是二次骨折修复的全局抑制剂。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Bone & Joint Research
Bone & Joint Research CELL & TISSUE ENGINEERING-ORTHOPEDICS
CiteScore
7.40
自引率
23.90%
发文量
156
审稿时长
12 weeks
期刊介绍: The gold open access journal for the musculoskeletal sciences. Included in PubMed and available in PubMed Central.
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