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Tensioning Ligament and Tendon Repairs to Bone Using a Modified Screw-post Technique

机译:张拉韧带和肌腱修复骨使用修改后的螺旋桨柱技术

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Purpose: The purpose of this study was to demonstrate how to tension tendon and ligament repairs or reconstructions to bone by using an oblique screw-post. A controlled experiment simulating this repair technique is reported,followedby5caseexamples. Methods: A wood frame model was used to test 5 initial exposed screw lengths (4, 8, 12, 16, 20 mm) and 5 screw angles [90 (perpendicular to wood plane), 75, 60, 45, 30 degrees]. A spring-based force gauge was tied to the exposed 3.5 mm cortical screw with a washer using a #2 nonabsorbable braided suture, and the screw was fully advanced. System lengths were measured before and after advancement using digital calipers. Screw angles were measured with a protractor. Analysis of variance with post hoc paired t tests was performed to compare changes in system length with different initial exposed screw length and screw angle. Results: Greater changes in system length was achieved with decreasing screw angle and increasing initial exposed length (P < 0.05). A maximum change in system length of 12.4 mm (SD = 0.4 mm) was achieved with a 45-degree screw with 20 mm initial exposed length (P < 0.05). Five case examples where a screw-post was used to repair tendons and ligaments in the upper extremity are described. Conclusions: An oblique screw-post can advance a tendon or ligament repair to bone. This can result in increased tension of the repaired structure, potentially providing a better repair or greater joint stability.
机译:目的:本研究的目的演示如何紧张肌腱和韧带通过使用一个维修或重建骨斜螺旋桨柱。模拟这种修复技术报道,followedby5caseexamples。框架模型是用来测试5初始接触螺杆长度(4、8、12、16、20毫米)和5螺丝角[90(垂直于木材平面),75年,60岁,45岁,30度)。与公开的3.5毫米皮质螺钉洗衣机使用# 2时编织缝合,和螺丝完全先进。测量之前和之后的发展呢数字卡钳。一个量角器。配对t检验进行比较的变化在系统与不同的初始接触长度螺杆长度和螺旋角。系统实现长度的变化降低螺旋角和增加初始暴露长度(P < 0.05)。系统的长度12.4毫米(SD = 0.4毫米)达到45度的螺钉20毫米最初接触长度(P < 0.05)。例子,一个螺旋桨柱用于修复肌腱和韧带在上肢描述。促进肌腱或韧带修复骨。可能导致增加张力的修复结构,可能提供一个更好的修复或更大关节的稳定性。

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