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首页> 外文期刊>Veterinary and Comparative Orthopaedics and Traumatology >In vitro mechanical evaluation of a limited contact dynamic compression plate and hybrid carpal arthrodesis plate for canine pancarpal arthrodesis.
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In vitro mechanical evaluation of a limited contact dynamic compression plate and hybrid carpal arthrodesis plate for canine pancarpal arthrodesis.

机译:有限接触动态加压板和混合腕关节固定板治疗犬掌腕关节置换的体外力学评估。

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Objective: To compare the mechanical properties of pancarpal arthrodesis (PCA) constructs stabilized at 20 degrees of extension using either a 3.5 mm limited contact dynamic compression plate (LC-DCP) or a 3.5/2.7 mm hybrid plate (HP). Methods: Seven forelimb pairs were used from dogs of similar size. All soft tissues were removed except for supporting structures of the carpus and proximal metacarpal region. All plates were accurately bent to 20 degrees , and then instrumented with two, 350 Omega strain gauges applied at the level of the bend. Constructs were embedded in epoxy moulds then mounted onto a servo-hydraulic testing machine. Specimens were loaded for 10 cycles at 100N, 200N and 300N. Tenth cycle construct compliance (CC), maximum angular deformation (MAD), and peak plate strain (PPS) were compared using two-factor analysis of variance (ANOVA) and Student-Newman-Keuls post-hoc tests (p<0.05). Results: Regardless of load, CC was 29% to 33% smaller in the HP than the LC-DCP group (p<0.03). In each group, the CC significantly increased with increasing loads (p<0.02). Mean MAD was 19% to 22% less in HP than LC-DCP constructs, with significant differences seen at 200 N and 300 N loads. In both groups, MAD was significantly greater with increasing loads (p<0.02). In addition, PPS was 37% to 43% smaller for HP than LC-DCP. Clinical significance: The mechanical advantages of the HP over the LC-DCP make it a viable alternative for PCA. Smaller CC, MAD and PSS of the HP may reduce the risk of implant failure and postoperative morbidity following PCA.
机译:目的:比较使用3.5毫米有限接触动态压缩板(LC-DCP)或3.5 / 2.7毫米混合板(HP)稳定在20度伸展角的腕掌关节(PCA)构造物的机械性能。方法:从相似大小的狗中使用七对前肢。除腕骨和掌骨近端区域的支撑结构外,所有软组织均被去除。将所有板精确地弯曲到20度,然后在弯曲的水平上安装两个350欧米茄应变仪。将结构嵌入环氧模具中,然后安装到伺服液压测试机上。样品分别以100N,200N和300N加载10个循环。使用二因素方差分析(ANOVA)和Student-Newman-Keuls事后检验,比较了第十个周期的结构顺应性(CC),最大角度变形(MAD)和峰板应变(PPS)(p <0.05)。结果:无论负荷如何,HP中的CC均比LC-DCP组小29%至33%(p <0.03)。在每组中,CC随着负荷的增加而显着增加(p <0.02)。 HP的平均MAD比LC-DCP构建体低19%到22%,在200 N和300 N的负载下差异显着。在两组中,MAD均随着负荷增加而明显增加(p <0.02)。此外,HP的PPS比LC-DCP小37%至43%。临床意义:相对于LC-DCP,HP的机械优势使其成为PCA的可行替代品。较小的HP CC,MAD和PSS可降低PCA术后植入失败和术后发病的风险。

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