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对鸽(家鸽)尸体完整肱骨以及用尾侧应用的钛锁定钢板或不锈钢非锁定钢板结构稳定的截骨肱骨进行体外生物力学评估。

Ex vivo biomechanical evaluation of pigeon (Columba livia) cadaver intact humeri and ostectomized humeri stabilized with caudally applied titanium locking plate or stainless steel nonlocking plate constructs.

作者信息

Darrow Brett G, Biskup Jeffrey J, Weigel Joseph P, Jones Michael P, Xie Xie, Liaw Peter K, Tharpe Josh L, Sharma Aashish, Penumadu Dayakar

出版信息

Am J Vet Res. 2017 May;78(5):570-578. doi: 10.2460/ajvr.78.5.570.

Abstract

OBJECTIVE To evaluate mechanical properties of pigeon (Columba livia) cadaver intact humeri versus ostectomized humeri stabilized with a locking or nonlocking plate. SAMPLE 30 humeri from pigeon cadavers. PROCEDURES Specimens were allocated into 3 groups and tested in bending and torsion. Results for intact pigeon humeri were compared with results for ostectomized humeri repaired with a titanium 1.6-mm screw locking plate or a stainless steel 1.5-mm dynamic compression plate; the ostectomized humeri mimicked a fracture in a thin cortical bone. Locking plates were secured with locking screws (2 bicortical and 4 monocortical), and nonlocking plates were secured with bicortical nonlocking screws. Constructs were cyclically tested nondestructively in 4-point bending and then tested to failure in bending. A second set of constructs were cyclically tested non-destructively and then to failure in torsion. Stiffness, strength, and strain energy of each construct were compared. RESULTS Intact specimens were stiffer and stronger than the repair groups for all testing methods, except for nonlocking constructs, which were significantly stiffer than intact specimens under cyclic bending. Intact bones had significantly higher strain energies than locking plates in both bending and torsion. Locking and nonlocking plates were of equal strength and strain energy, but not stiffness, in bending and were of equal strength, stiffness, and strain energy in torsion. CONCLUSIONS AND CLINICAL RELEVANCE Results for this study suggested that increased torsional strength may be needed before bone plate repair can be considered as the sole fixation method for avian species.

摘要

目的 评估鸽(家鸽)完整肱骨与用锁定或非锁定钢板固定的截骨肱骨的力学性能。样本 30 只鸽尸体的肱骨。方法 将标本分为 3 组,进行弯曲和扭转测试。将完整鸽肱骨的结果与用 1.6 毫米钛质锁定螺钉钢板或 1.5 毫米不锈钢动力加压钢板修复的截骨肱骨的结果进行比较;截骨肱骨模拟薄皮质骨骨折。锁定钢板用锁定螺钉固定(2 枚双皮质和 4 枚单皮质),非锁定钢板用双皮质非锁定螺钉固定。构建物在四点弯曲中进行无损循环测试,然后进行弯曲破坏测试。第二组构建物进行无损循环测试,然后进行扭转破坏测试。比较每个构建物的刚度、强度和应变能。结果 对于所有测试方法,完整标本比修复组更硬更强,但非锁定构建物在循环弯曲下比完整标本显著更硬。在弯曲和扭转中,完整骨骼的应变能均显著高于锁定钢板。锁定和非锁定钢板在弯曲中的强度和应变能相等,但刚度不相等,在扭转中的强度、刚度和应变能相等。结论及临床意义 本研究结果表明,在将骨板修复视为禽类唯一固定方法之前,可能需要提高扭转强度。

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