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使用猫骨替代物对两种小型交锁髓内钉进行扭转力学比较。

Mechanical comparison of two small interlocking nails in torsion using a feline bone surrogate.

作者信息

Marturello Danielle M, von Pfeil Dirsko J F, Déjardin Loïc M

机构信息

Department of Small Animal Clinical Sciences, Michigan State University, East Lansing, Michigan.

出版信息

Vet Surg. 2020 Feb;49(2):380-389. doi: 10.1111/vsu.13364. Epub 2019 Dec 11.

Abstract

OBJECTIVE

To compare the torsional behavior of two small angle-stable interlocking nails (I-Loc and Targon) with that of locking compression plates (LCP). To evaluate the effect of implant removal on the torsional strength of feline bone surrogates.

STUDY DESIGN

Experimental.

SAMPLE POPULATION

Fracture gap constructs and intact explanted bone surrogates.

METHODS

Fracture gap constructs were stabilized with one of six implants (I-Loc 3 and 4, Targon 2.5 and 3.0, LCP 2.0 and 2.4) and then cyclically tested in torsion (n = 4/group). To simulate implant removal, intact surrogates with implant-specific pilot holes were then twisted to failure (n = 4/group). Torsional compliance (TC; °/Nm), angular deformation (AD; °), and failure torque (F ; Nm) were statistically compared (P < .05).

RESULTS

The I-Loc 4 had the smallest TC and AD of all constructs (P < .05). The largest TC (P < .05) was seen with the LCP 2.0. The Targon 2.5 had the largest AD (P < .05) secondary to locking interface slippage. Targon surrogates F were the lowest of all groups (P < .05). Conversely, there was no difference between the F of the I-Loc, LCP, and intact surrogates (P > .05).

CONCLUSION

We showed that I-Loc nails provided greater torsional stability than size-matched Targon nails and LCPs. Conversely, Targon 2.5 locking interface slippage may jeopardize that construct's stability. Furthermore, the significantly reduced bone surrogate torsional strength provided evidence that the large Targon bolt holes increased the risk of postexplantation iatrogenic fracture.

CLINICAL SIGNIFICANCE

Our results provide evidence to conclude that the small I-Loc nails may be valid alternatives to other osteosynthesis options for feline fracture repair.

摘要

目的

比较两种小角度稳定型交锁髓内钉(I-Loc和Targon)与锁定加压钢板(LCP)的扭转行为。评估取出植入物对猫骨替代物扭转强度的影响。

研究设计

实验性研究。

样本群体

骨折间隙构建物和完整的取出骨替代物。

方法

用六种植入物之一(I-Loc 3和4、Targon 2.5和3.0、LCP 2.0和2.4)固定骨折间隙构建物,然后进行扭转循环测试(每组n = 4)。为模拟植入物取出,对带有特定植入物导向孔的完整替代物进行扭转直至破坏(每组n = 4)。对扭转顺应性(TC;°/Nm)、角变形(AD;°)和破坏扭矩(F;Nm)进行统计学比较(P < 0.05)。

结果

I-Loc 4在所有构建物中TC和AD最小(P < 0.05)。LCP 2.0的TC最大(P < 0.05)。由于锁定界面滑动,Targon 2.5的AD最大(P < 0.05)。Targon替代物的F是所有组中最低的(P < 0.05)。相反,I-Loc、LCP和完整替代物的F之间无差异(P > 0.05)。

结论

我们表明I-Loc髓内钉比尺寸匹配的Targon髓内钉和LCP提供更大的扭转稳定性。相反,Targon 2.5锁定界面滑动可能会危及该构建物的稳定性。此外,骨替代物扭转强度显著降低提供了证据,表明大的Targon螺栓孔增加了取出后医源性骨折的风险。

临床意义

我们的结果提供了证据,可得出结论,小的I-Loc髓内钉可能是猫骨折修复中其他骨固定选择的有效替代方案。

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