Biomechanical Comparison of Three Locking Compression Plate Constructs from Three Manufacturers under Cyclic Torsional Loading in a Fracture Gap Model.

IF 1 2区 农林科学 Q3 VETERINARY SCIENCES Veterinary and Comparative Orthopaedics and Traumatology Pub Date : 2025-01-01 Epub Date: 2024-08-05 DOI:10.1055/s-0044-1788920
Lik Hang Lai, Daniel Reynolds James, Richard Charles Appleyard, Joseph Cadman
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Abstract

Objective:  The aim of the study was to compare the stiffness and cyclic fatigue of locking compression plate constructs from three manufacturers, DePuy Synthes (DPS), Knight Benedikt (KB), and Provet Veterinary Instrumentation (Vi), under cyclic torsion.

Methods:  The constructs of DPS, KB, and Vi were assembled by fixing a 10-hole 3.5-mm stainless steel locking compression plate 1 mm away from a validated bone model with a fracture gap of 47 mm. The corresponding drill guides and locking screws were used. Three groups of six constructs were tested in cyclic torsion until failure.

Results:  There was no significant difference in initial stiffness between DPS constructs (28.83 ± 0.84 N·m/rad) and KB constructs (28.38 ± 0.81 N·m/rad), and between KB constructs and Vi constructs (27.48 ± 0.37 N·m/rad), but the DPS constructs were significantly stiffer than the Vi constructs. The DPS constructs sustained the significantly highest number of cycles (24,833 ± 2,317 cycles) compared with KB constructs (16,167 ± 1,472 cycles) and Vi constructs (19,833 ± 4,792 cycles), but the difference between KB and Vi constructs was not significant. All constructs failed by screw damage at the shaft between the plate and the bone model.

Conclusion:  DPS constructs showed superior initial torsional stiffness and cyclic fatigue life than Vi constructs, whereas KB and Vi constructs shared comparable results. Further investigation is required to assess the clinical significance of these biomechanical differences.

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在骨折间隙模型的循环扭转载荷下,三家制造商生产的三种锁定压缩板结构的生物力学比较。
研究目的该研究旨在比较三家制造商(DePuy Synthes (DPS)、Knight Benedikt (KB)和 Provet Veterinary Instrumentation (Vi))的锁定压缩板结构在循环扭转下的刚度和循环疲劳:组装 DPS、KB 和 Vi 的结构时,将一个 10 孔 3.5 毫米不锈钢锁定压缩板固定在距验证骨模型 1 毫米处,骨折间隙为 47 毫米。使用了相应的钻导和锁定螺钉。对三组共六个结构进行了循环扭转测试,直至失效:结果:DPS结构(28.83 ± 0.84 N-m/rad)和KB结构(28.38 ± 0.81 N-m/rad)以及KB结构和Vi结构(27.48 ± 0.37 N-m/rad)的初始刚度无明显差异,但DPS结构的刚度明显高于Vi结构。与 KB 构件(16,167 ± 1,472 次)和 Vi 构件(19,833 ± 4,792 次)相比,DPS 构件承受的循环次数(24,833 ± 2,317 次)明显最高,但 KB 和 Vi 构件之间的差异并不显著。所有结构均因钢板与骨模型之间的轴部螺钉损坏而失败:结论:DPS结构的初始扭转刚度和循环疲劳寿命均优于Vi结构,而KB和Vi结构的结果相当。要评估这些生物力学差异的临床意义,还需要进一步的研究。
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来源期刊
CiteScore
2.00
自引率
15.40%
发文量
49
审稿时长
18-36 weeks
期刊介绍: Veterinary and Comparative Orthopaedics and Traumatology (VCOT) is the most important single source for clinically relevant information in orthopaedics and neurosurgery available anywhere in the world today. It is unique in that it is truly comparative and there is an unrivalled mix of review articles and basic science amid the information that is immediately clinically relevant in veterinary surgery today.
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