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首页> 外文期刊>Geriatric orthopaedic surgery & rehabilitation. >Proximal Humeral Fractures: A Biomechanical Comparison of Locking Plate Constructs in a Cadaveric 3-Part Fracture Model
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Proximal Humeral Fractures: A Biomechanical Comparison of Locking Plate Constructs in a Cadaveric 3-Part Fracture Model

机译:肱骨近端骨折:尸体三部分骨折模型中锁定板结构的生物力学比较

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摘要

The purpose of our study was to biomechanically compare, under cyclic loading conditions, fracture site motion, humeral head collapse, and intra-articular hardware penetration in simulated 3-part osteoporotic proximal humeral fractures stabilized with 1 of 2 locking-plate constructs. We performed fixation on simulated 3-part proximal humeral fractures in 10 pairs of cadaveric osteoporotic humeri with a Hand Innovations S3 Proximal Humerus Plate (S3 plate) or an LCP Proximal Humerus Plate (LCP plate; 1 each for each pair). The specimens were potted, mounted on a materials testing machine, and subjected to 5000 cycles of abduction in the scapular plane, loading through the supraspinatus tendon. Interfragmentary displacement at 2 virtual points (the most medial aspect of the calcar and the most superior aspect of the osteotomy line between the greater tuberosity and humeral head) was measured using an optical tracking system. Humeral head rotation was also measured. We used a generalized linear latent and mixed model to check for an effect of cyclic loading and treatment on the parameters of interest (significance, P < .05). After cyclic loading, the S3 plate humeri showed significantly greater displacement of the greater tuberosity fragment and rotation of the humeral head and a trend (not a significant difference) toward greater displacement at the calcar. No hardware penetration was noted for either repair. Although the S3 plate repairs resulted in significantly more fracture site motion, it is unknown whether the magnitude of the motion is clinically significant.
机译:我们的研究目的是在循环载荷条件下,用2个锁定板构造中的1个稳定的模拟3部分骨质疏松性肱骨近端骨折,在骨折部位运动,肱骨头塌陷和关节内硬体穿透方面进行生物力学比较。我们使用Hand Innovations S3近端肱骨板(S3板)或LCP近端肱骨板(LCP板;每对各1个)对10对尸体骨质疏松肱骨的模拟的3个肱骨近端骨折进行固定。将标本盆起来,安装在材料测试机上,并在肩cap平面内进行5000次外展绑架,并通过棘上肌腱加载。使用光学跟踪系统测量了2个虚拟点(腓骨的最内侧和最大结节与肱骨头之间的截骨线的最上方)的片段间移位。还测量了肱骨头旋转。我们使用广义线性潜伏和混合模型检查循环载荷和处理对目标参数的影响(显着性,P <.05)。循环加载后,S3板肱骨表现出较大结节碎片的明显较大移位和肱骨头的旋转,并且在颅骨处有朝向较大移位的趋势(无明显差异)。两种维修均未发现硬件渗透。尽管S3钢板修复导致明显的骨折部位运动,但运动幅度是否在临床上尚不明确。

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