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The effect of suture anchor design and orientation on suture abrasion: An in vitro study.

机译:缝合锚设计和定位的影响缝合磨损:体外研究。

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PURPOSE: To evaluate the effects of suture anchor design and orientation on suture abrasion in a cyclic model. Type of Study: In vitro. METHODS: Biomechanical studies have shown suture breakage to be a predominant mode of failure in a suture anchor repair construct. It is possible that suture abrasion during knot tying or in vivo cyclic loading may contribute to early failure. This study specifically investigates suture abrasion caused by 17 commonly used suture anchors and demonstrates the effects of suture anchor angulation and rotation on suture abrasion. To eliminate target tissue as a source of failure, all anchors were implanted into a solid block of sawbones material and tested with No. 2 Ethibond Excel sutures (Ethicon, Somerville, NJ). The testing model focused on 3 variables: suture anchor type, suture pull angle (SA) and angle of anchor rotation (RA). Abrasion testing was then performed on a servohydraulic materials testing system by continually cycling the suture back and forth through eachanchor with an excursion of 4 cm at a rate of 0.5 Hz under a load of 10 N until suture failure occurred. RESULTS: Sutures performed significantly better when cycled in line with the anchor at 0 degrees SA with 0 degrees RA than they did at 45 degrees SA with 0 degrees RA or 45 degrees SA with 90 degrees RA. We found no significant difference between anchors tested at 45 degrees SA with 0 degrees RA and 45 degrees SA with 90 degrees RA. For tests performed using metallic suture anchors, all constructs failed by fraying of the suture. Constructs using biopolymer anchors and nonabsorbable polymeric anchors experienced a mixture of suture and anchor eyelet failures. CONCLUSIONS: In addition to the statistically significant detrimental effects of suture anchor angulation and rotation on suture abrasion, suture anchor eyelet design may also influence suture abrasion. Surgeons should be aware of the effects of anchor angulation, suture position in the eyelet, and design and composition of the eyelet to maximize the durability of the construct.
机译:目的:评价缝合锚的影响设计和定位在缝合磨损循环模型。生物力学研究表明缝合断裂是一个主要的模式失败的缝合锚修复构造。缝合在打结或体内磨损循环荷载可能导致早期失效。本研究专门进行缝合磨损造成的17个常用的缝合主持人和演示了缝合的影响在缝合锚定测角和旋转磨损。失败,所有锚植入外科医生的固体块材料和测试2号Ethibond Excel缝合线(Ethicon萨默维尔市,NJ)。变量:缝合锚类型,缝线拉角(SA)和锚定角旋转(RA)。伺服液压控制的测试被执行材料测试系统不断循环通过eachanchor来回缝合一次短途旅行的4厘米的速度下0.5赫兹加载10 N直到缝合失败的发生。结果:缝合线表现更好骑自行车符合锚在0度SA在0度RA比45度SA与RA 0度或45度和90 SA度RA。在45度SA之间的锚测试0度RA和45度SA RA 90度。测试执行使用金属缝合锚,所有构造失败的磨损缝合。缝合时聚合物主播经历了缝合和锚打眼的失败。结论:除了统计缝合锚的重大不利影响测角和旋转缝合磨损,缝合锚网眼设计也可能影响缝合磨损。锚定测角的影响,缝合的位置网眼,设计和成分网眼最大化的耐久性构造。

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