Fixation of transverse midshaft clavicle fractures with nitinol staples vs. superior locked plating: a biomechanical study

IF 0.2 Q4 ORTHOPEDICS
K. Mistretta, Pooyan Abbasi, Melissa A. Wright, A. Murthi
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引用次数: 0

Abstract

Background: Nitinol staples have been used effectively for stabilization and compression at fracture sites. This study compared yield load, fracture displacement, and load to failure between nitinol staples and superior plating for midshaft clavicle fractures. Methods: Ten pairs of cadaveric clavicles underwent midshaft osteotomy. Each specimen in each pair was randomly assigned to fixation with superiorly placed nitinol staples or with superior plating. Specimens were loaded cyclically with increasing loads to a maximum of 1200 cycles and 60 N. Fracture displacement and construct stiffness were compared at each load. Load to failure was performed at the conclusion of testing. Results: The staple group demonstrated lower yield load and higher median fracture displacement at all levels of force compared to the plate group. Median displacement at physiologic load was 15.3 (IQR 12.8-16.5) mm for the staple construct and 2.9 (IQR 2.5-3.6) mm for plated constructs (P=2.04E-07). Median stiffness of plated constructs was significantly higher than staple constructs at all levels (P<0.05). Median cycles to failure for staple constructs was significantly lower compared to plated constructs (P=0.004). Median load to failure was significantly higher for plated constructs compared to staple constructs (P=2.8E-06). Conclusions: Nitinol staple fixation of midshaft clavicle fractures demonstrated lower yield load, stiffness, increased displacement, and lower load to failure compared to superior plate fixation. However, staple constructs provided adequate stability to maintain reduction of the fracture at physiologic levels of repetitive stress, indicating a potential role for nitinol staples in clavicle fracture fixation.
镍钛诺钉与上锁钢板固定横向锁骨中轴骨折的生物力学研究
背景:镍钛诺钉已被有效地用于骨折部位的稳定和压缩。本研究比较了镍钛诺钉和优质钢板治疗锁骨中段骨折的屈服载荷、骨折位移和失效载荷。方法:对10对尸体锁骨进行锁骨中段截骨。每对标本中的每一个样本都被随机分配到上方放置的镍钛诺钉或上方钢板固定。试样循环加载,载荷增加至最大1200个循环和60N。比较每个载荷下的断裂位移和结构刚度。在试验结束时进行加载至失效。结果:与钢板组相比,缝钉组在所有力水平下都表现出较低的屈服载荷和较高的中位骨折位移。生理负荷下,缝钉结构的中位位移为15.3(IQR 12.8-16.5)mm,钢板结构的中位数位移为2.9(IQR 2.5-3.6)mm(P=2.04E-07)。钢板结构在所有水平上的中位刚度均显著高于缝钉结构(P<0.05)。缝钉结构失效的中位周期明显低于钢板结构(P=0.004)。失效的中位数负荷与吻合钉结构相比,钢板结构的骨折发生率明显更高(P=2.8E-06)。结论:镍钛诺吻合钉固定锁骨中段骨折与高级钢板固定相比,屈服负荷、硬度更低,位移增加,失败负荷更低。然而,缝钉结构提供了足够的稳定性,以在重复应力的生理水平下保持骨折复位,这表明镍钛诺缝钉在锁骨骨折固定中的潜在作用。
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来源期刊
CiteScore
0.60
自引率
0.00%
发文量
107
期刊介绍: Lippincott Williams & Wilkins is a leading international publisher of professional health information for physicians, nurses, specialized clinicians and students. For a complete listing of titles currently published by Lippincott Williams & Wilkins and detailed information about print, online, and other offerings, please visit the LWW Online Store. Current Orthopaedic Practice is a peer-reviewed, general orthopaedic journal that translates clinical research into best practices for diagnosing, treating, and managing musculoskeletal disorders. The journal publishes original articles in the form of clinical research, invited special focus reviews and general reviews, as well as original articles on innovations in practice, case reports, point/counterpoint, and diagnostic imaging.
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