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首页> 外文期刊>Arthroscopy: the journal of arthroscopic & related surgery : official publication of the Arthroscopy Association of North America and the International Arthroscopy Association >The Effect of Screw Design and Cortical Augmentation on Insertional Torque and Compression in Coracoid-Glenoid Fixation in a Sawbones Model
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The Effect of Screw Design and Cortical Augmentation on Insertional Torque and Compression in Coracoid-Glenoid Fixation in a Sawbones Model

机译:螺杆设计和皮质的影响在插入扭矩和增加压缩在Coracoid-Glenoid固定Sawbones Model

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Purpose: To compare screw insertional torque and coracoid-glenoid compression from 4 fixation techniques with different screw design parameters and cortical augmentation for the Latarjet procedure. Methods: Simulated Latarjet procedures were performed with 4 fixation techniques using laminated polyurethane blocks with dimensions similar to the coracoid-glenoid construct. The groups included DePuy Synthes Mitek 3.5-mm partially threaded screws with top hats, Arthrex 3.75-mm fully threaded screws with a 2-hole plate, Arthrex 3.75-mm fully threaded screws, and Smith & Nephew 4.0-mm partially threaded screws. Screws were inserted using a digital torque-measuring screwdriver to determine maximum insertional torque. Pressure-sensitive film was used to measure the maximum contact pressure and the effective pressure distribution (EPD) between the coracoid and glenoid; the EPD represents the percentage of the film's surface area that experienced pressure greater than 10 MPa. One-way analysis of variance and post hoc tests were used for statistical analysis. Results: Significant differences were found between the 4 fixation groups for each variable measured. The 2 cortically augmented systems produced significantly higher maximum insertional torque than the non-cortically augmented systems (P < .001 for both). The 3.75-mm screws with a 2-hole plate yielded significantly higher contact pressures than the 4.0-mm screws (P = .028). This group also had a high EPD, with a mean value more than double the values of the non-cortically augmented systems (P = .037 and P < .001) . Conclusions: Cortically augmented fixation methods showed higher maximum insertional torque, maximum contact pressure, and EPD between the surfaces of the coracoid and glenoid in this Sawbones model.
机译:目的:比较螺钉插入扭矩和coracoid-glenoid压缩从4固定技术与不同的螺杆设计参数和皮质Latarjet增大过程。进行4固定技术使用吗叠层聚氨酯块尺寸类似于coracoid-glenoid构造。组包括DePuy辛迪思Mitek 3.5毫米部分螺纹螺丝礼帽,Arthrex3.75毫米完全螺纹螺丝二号板,Arthrex 3.75毫米全螺纹螺丝,Smith &侄子4.0毫米部分螺纹螺丝。螺丝插入使用数字torque-measuring螺丝刀来确定最大插入扭矩。用来测量最大接触压力和有效压力分布(环保署)之间鸟喙骨和关节窝的;电影的表面积的百分比有经验的压力大于10 MPa。方差分析和事后测试进行统计分析。4固定之间的差异被发现组为每个变量的测量。皮质增广系统产生明显高于最大插入扭矩比non-cortically增广系统(P <)的措施。板产生了更高的接触压力比4.0毫米的螺丝(P = .028)。集团也有一个高环保署,平均值比non-cortically的值的两倍增强系统(P = .037和P <措施)。结论:皮质增强固定方法显示更高的插入的最大扭矩,最大接触压力和环保署之间表面的鸟喙骨和关节窝的Sawbones模特。

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