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掌骨骨折固定中螺钉数量和位置的比较:一项生物力学研究。

Comparison of Screw Quantity and Placement of Metacarpal Fracture Fixation: A Biomechanical Study.

机构信息

University of Pittsburgh, PA, USA.

University of Pennsylvania, Philadelphia, USA.

出版信息

Hand (N Y). 2022 Sep;17(5):879-884. doi: 10.1177/1558944720974116. Epub 2020 Dec 21.

Abstract

BACKGROUND

It is recommended to have 6 bicortical screws for plate fixation of long bone fractures; however, many metacarpal fractures do not allow 6 screws due to size limitations and proximity of crucial anatomical structures. The purpose of this biomechanical study was to determine whether the mechanical properties of a 4-screw nonlocking construct are noninferior to those of a 6-screw nonlocking construct.

METHODS

Metacarpal sawbones were used to simulate a midshaft, transverse fracture. Nonlocking bicortical screws were placed in the 6-hole plate, and the metacarpals were randomly assigned to 2 equal study groups: (1) 4 screws, 2 on either side of the fracture (4S); and (2) 6 screws, 3 on either side of the fracture (6S). The metacarpals were tested in a cyclic loading mode and load to failure in a cantilever bending mode.

RESULTS

Maximum deflection was significantly higher for 4S compared with 6S. Cyclic root mean square (RMS) was also significantly greater for 4S at 70 and 100 N. There were no statistically significant differences observed between the 2 constructs for maximum bending load, bending stiffness, and cyclic RMS at 40 N. The maximum bending load in 4S and 6S was 245.6 ± 37.9 N and 230.8 ± 41.9 N, respectively; 4S was noninferior and not superior to 6S. Noninferiority testing was inconclusive for bending stiffness.

CONCLUSIONS

A 4-screw bicortical nonlocking construct is noninferior to a 6-screw bicortical nonlocking construct for fixation of metacarpal fractures, which may be advantageous to minimize disruption of soft tissues while maintaining sufficient construct stability.

摘要

背景

对于长骨骨折的钢板固定,建议使用 6 枚皮质骨螺钉;然而,由于尺寸限制和关键解剖结构的接近,许多掌骨骨折无法使用 6 枚螺钉。本生物力学研究的目的是确定 4 枚螺钉非锁定结构的力学性能是否不劣于 6 枚螺钉非锁定结构。

方法

使用掌骨干骨模拟中段、横断骨折。将非锁定皮质骨螺钉放置在 6 孔钢板中,将掌骨随机分为 2 个相等的研究组:(1)4 枚螺钉,骨折两侧各 2 枚(4S);(2)6 枚螺钉,骨折两侧各 3 枚(6S)。掌骨在循环加载模式和悬臂弯曲模式下进行测试,直至失效。

结果

4S 的最大挠度明显高于 6S。4S 在 70N 和 100N 时的循环均方根(RMS)也明显大于 6S。在最大弯曲载荷、弯曲刚度和 40N 时的循环 RMS 方面,两种结构之间没有统计学上的显著差异。4S 和 6S 的最大弯曲载荷分别为 245.6±37.9N 和 230.8±41.9N;4S 不劣于 6S。弯曲刚度的非劣性检验结果不确定。

结论

4 枚皮质骨螺钉非锁定结构固定掌骨骨折不劣于 6 枚皮质骨螺钉非锁定结构,这可能有利于最大限度地减少软组织的破坏,同时保持足够的结构稳定性。

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