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螺旋钢板与直钢板和钉治疗肱骨近端三分之一骨折的比较-一项生物力学研究。

Helical Plating Compared with Straight Plating and Nailing for Treatment of Proximal Third Humeral Shaft Fractures-A Biomechanical Study.

机构信息

AO Research Institute Davos, 7270 Davos, Switzerland.

Department of Orthopaedic and Trauma Surgery, Lucerne Cantonal Hospital, 6000 Lucerne, Switzerland.

出版信息

Medicina (Kaunas). 2023 Nov 20;59(11):2043. doi: 10.3390/medicina59112043.

Abstract

: The surgical treatment of proximal humeral shaft fractures usually considers application of either long straight plates or intramedullary nails. By being able to spare the rotator cuff and avoid the radial nerve distally, the implementation of helical plates might overcome the downsides of common fixation methods. The aims of the current study were (1) to explore the biomechanical competence of different plate designs and (2) to compare their performance versus the alternative treatment option of using intramedullary nails. : Twenty-four artificial humeri were assigned to the following four groups for simulation of an unstable proximal humeral shaft fracture and instrumentation: Group 1 (Straight-PHILOS), Group 2 (MULTILOC-Nail), Group 3 (45°-Helical-PHILOS), and Group 4 (90°-Helical-PHILOS). All specimens underwent non-destructive, quasi-static biomechanical testing under loading in axial compression, torsion in internal/external rotation, and pure bending in four directions, accompanied by motion tracking. : Axial stiffness/displacement in Group 2 was significantly higher/smaller than in all other groups ( ≤ 0.010). Torsional displacement in Group 2 was significantly bigger than in all other groups ( ≤ 0.017). Significantly smaller coronal plane displacement was identified in Group 2 versus all other groups ( < 0.001) and in Group 4 versus Group 1 ( = 0.022). Significantly bigger sagittal plane displacement was detected in Group 4 versus all other groups ( ≤ 0.024) and in Group 1 versus Group 2 ( < 0.001). : Intramedullary nails demonstrated higher axial stiffness and smaller axial interfragmentary movements compared with all investigated plate designs. However, they were associated with bigger torsional movements at the fracture site. Although 90°-helical plates revealed bigger interfragmentary movements in the sagittal plane, they demonstrated improved resistance against displacements in the coronal plane when compared with straight lateral plates. In addition, 45°-helical plates manifested similar biomechanical competence to straight plates and may be considered a valid alternative to the latter from a biomechanical standpoint.

摘要

: 肱骨近端干骨折的手术治疗通常考虑应用直型钢板或髓内钉。螺旋钢板的应用可以避免肩袖损伤和避开桡神经,从而克服常见固定方法的缺点。本研究的目的是:(1) 探讨不同钢板设计的生物力学性能;(2) 比较它们与髓内钉替代治疗方法的性能。 : 24 个人工肱骨被分为以下四组,用于模拟不稳定的肱骨近端干骨折和内固定:第 1 组(直型 PHILOS)、第 2 组(多锁定钉)、第 3 组(45°螺旋 PHILOS)和第 4 组(90°螺旋 PHILOS)。所有标本在轴向压缩、内外旋扭力和四个方向纯弯曲的加载下进行无损准静态生物力学测试,并伴有运动跟踪。 : 第 2 组的轴向刚度/位移显著高于/小于其他所有组(≤0.010)。第 2 组的扭转位移显著大于其他所有组(≤0.017)。第 2 组的冠状面位移显著小于其他所有组(<0.001)和第 4 组与第 1 组(=0.022)。第 4 组的矢状面位移显著大于其他所有组(≤0.024)和第 1 组与第 2 组(<0.001)。 : 髓内钉与所有研究的钢板设计相比,表现出更高的轴向刚度和更小的轴向断端活动度。然而,它们与骨折部位更大的扭转运动有关。虽然 90°螺旋钢板在矢状面产生更大的断端活动度,但与直型钢板相比,它们在冠状面的位移阻力有所改善。此外,45°螺旋钢板表现出与直型钢板相似的生物力学性能,从生物力学角度来看,它可能是后者的一种有效替代方案。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0403/10672748/eb8fbfee0a7a/medicina-59-02043-g001.jpg

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