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Editorial Commentary: Biomechanics of All Suture Anchors: What We Know So Far

机译:编辑注:生物力学的缝合主持人:我们知道迄今为止

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摘要

All suture anchors (ASAs) have proven valuable for soft tissue to bone fixation. They have a small footprint and can be inserted in tight spaces where little bone is available. Additionally, more ASAs can be inserted in the same amount of bone than their larger predecessors, and this may improve the overall biomechanics of the repair construct through load sharing at multiple points of fixation. ASAs are more dependent on the cortical bone than the cancellous bone where they are inserted for fixation. Decortication of this bone should be minimized or avoided, and deployed anchors should be seated to the cortical bone as much as possible at the time of insertion to avoid later settling with cyclic loading. In anchor biomechanical studies, it is important to look at gap formation with cyclic loading. This biomechanical property is clinically more significant than catastrophic failure because of anchor pullout or suture breakage, which is uncommon. Finally, regarding shoulder rotator cuff surgery, biological (healing) is our greatest challenge; in general, anchor fixation strength is adequate.
机译:所有缝合锚(研究)被证明是有价值的软组织骨固定。足迹,可以插在狭小空间小骨是可用的。更多的研究可以在相同数量的插入骨头比他们的更大的前辈,这可能提高整体修复的生物力学通过负载共享多个点构造固定。比松质骨的骨密质是固定的插入。骨头应该减少或避免,和部署主持人应该坐在皮质骨尽可能在插入的时候避免与循环荷载后结算。锚生物力学研究,是非常重要的看看差距形成和循环荷载。临床生物力学属性因为比灾难性的失败锚撤军或缝线断裂,这是少见。袖口手术、生物(治疗)是我们的最大的挑战;强度是足够的。

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