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首页> 外文期刊>Journal of orthopaedic trauma >Effect of Off-Axis Screw Insertion, Insertion Torque, and Plate Contouring on Locked Screw Strength
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Effect of Off-Axis Screw Insertion, Insertion Torque, and Plate Contouring on Locked Screw Strength

机译:离轴螺钉插入,插入扭矩和板轮廓对锁定螺钉强度的影响

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Objectives:This study quantifies the effects of insertion torque, off-axis screw angulation, and plate contouring on the strength of locking plate constructs.Methods:Groups of locking screws (n = 6-11 screws) were inserted at 50%, 100%, 150%, and 200% of the manufacturer-recommended torque (3.2 Nm) into locking compression plates at various angles: orthogonal (control), 5-degree angle off-axis, and 10-degree angle off-axis. Screws were loaded to failure by a transverse force (parallel to the plate) either in the same (+) or opposite direction (-) of the initial screw angulation. Separately, locking plates were bent to 5 and 10-degree angles, with the bend apex at a screw hole. Locking screws inserted orthogonally into the apex hole at 100% torque were loaded to failure.Results:Orthogonal insertion resulted in the highest average load to failure, 2577 141 N (range, 2413-2778 N), whereas any off-axis insertion significantly weakened constructs (165-1285 N, at 100% torque) (P < 0.05). For + loading, torque beyond 100% did not increase strength, but 50% torque reduced screw strength (P < 0.05). Loading in the - direction consistently resulted in higher strengths than + loading (P < 0.05). Plate contouring of 5-degree angle did not significantly change screw strength compared with straight plates but contouring of 10-degree angle significantly reduced load to failure (P < 0.05).Conclusions:To maximize the screw plate interface strength, locking screws should be inserted without cross-threading. The mechanical stability of locked screws is significantly compromised by loose insertion, off-axis insertion, or severe distortion of the locking mechanism.
机译:目的:本研究量化了插入扭矩,偏轴螺钉角度和板轮廓对锁紧板结构强度的影响。方法:成组的锁紧螺钉(n = 6-11螺钉)分别插入50%,100% ,制造商推荐的扭矩(3.2 Nm)的150%和200%分别以不同的角度进入锁定压缩板:正交(控制),5度偏轴和10度偏轴。沿初始螺钉角度的相同(+)或相反方向(-)的横向力(平行于板)将螺钉加载至失效。分别将锁定板弯曲成5度和10度角,弯曲顶点在螺孔处。结果是:正交插入导致最大平均破坏载荷为2577 141 N(范围2413-2778 N),而任何偏轴插入都会明显削弱,从而导致最大的平均破坏载荷。 (165-1285 N,100%扭矩)(P <0.05)。对于+负载,超过100%的扭矩不会增加强度,但是50%的扭矩会降低螺钉强度(P <0.05)。 -方向的载荷始终比+载荷产生更高的强度(P <0.05)。与直板相比,5度角的板轮廓不会显着改变螺钉强度,但10度角的板轮廓可以显着降低破坏载荷(P <0.05)。结论:为了最大化螺钉板的界面强度,应插入锁定螺钉没有跨线程。松动的插入,离轴插入或锁定机构的严重变形会严重损害锁定螺钉的机械稳定性。

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