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Rotator cuff repair: A biomechanical ex vivo ovine study

机译:肩袖修复:体外生物力学研究

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摘要

The purpose of this study was to assess load to failure of sutures, suturing techniques, and suture anchors used in rotator cuff surgery in order to explore their weaknesses. Ten types of sutures (absorbable and nonabsorbable), four types of suturing techniques, and eight types of suture anchors (bioabsorbable and metallic) were tested. Material Testing Machine and attached load cell were used to test the biomaterials in ex vivo ovine tissues. The results show that the mean load to failure and stiffness were higher in nonabsorbable sutures. Massive cuff tear and modified Mason-Allen suturing techniques had higher failure strength and stiffness when compared to simple and mattress techniques, but there was no substantial difference between them. Metallic suture anchors had higher failure strength when compared to bioabsorbable ones. Often either in metallic or in bioabsorbable anchors, the eyelet fails first. The failure sequence in ovine tissues is found to be in the following order: simple and mattress suturing techniques, nonabsorbable sutures, massive cuff tear and modified Mason-Allen suturing techniques, bioabsorbable anchors, and metallic anchors. Thus, it is concluded that metallic anchors mounted with modern nonabsorbable sutures will fail last. If we use simple and mattress techniques, the tendon-suture level will fail first, but it will improve substantially using more sophisticated suturing techniques(massive cuff tear or modified Mason-Allen).
机译:这项研究的目的是评估肩袖手术中使用的缝合线,缝合技术和缝合锚钉的破坏负荷,以探讨其缺点。测试了十种类型的缝合线(可吸收和不可吸收),四种类型的缝合技术和八种类型的缝合锚钉(可生物吸收的和金属的)。使用材料测试机和连接的称重传感器测试离体绵羊组织中的生物材料。结果表明,不可吸收缝线的平均破坏载荷和刚度更高。与简单和床垫技术相比,大规模的袖口撕裂和改良的Mason-Allen缝合技术具有更高的破坏强度和刚度,但两者之间没有实质性差异。与可生物吸收的锚钉相比,金属缝合锚钉具有更高的破坏强度。孔眼通常在金属或生物可吸收锚钉中首先失效。发现绵羊组织中的破坏顺序如下:简单和床垫缝合技术,不可吸收的缝合线,巨大的袖带撕裂和改良的Mason-Allen缝合技术,可生物吸收的锚钉和金属锚钉。因此,得出的结论是,装有现代不可吸收缝合线的金属锚将最后失效。如果我们使用简单的褥垫技术,肌腱缝合的水平将首先失败,但是使用更复杂的缝合技术(大量的袖口撕裂或改良的Mason-Allen)将大大改善。

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