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首页> 外文期刊>Chemical geology >Editorial Commentary: Taking a 'PEEK' at Suture Anchor Composition following Arthroscopic Rotator Cuff Repair: Is Bio Really Better?
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Editorial Commentary: Taking a 'PEEK' at Suture Anchor Composition following Arthroscopic Rotator Cuff Repair: Is Bio Really Better?

机译:编辑评论:在关节镜转子袖口修复后缝合锚锚组合物的“窥视”:生物真的更好?

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摘要

The advent of modern suture anchor technology has not only revolutionized arthroscopic treatment options for management of complex shoulder pathology, but also engendered a materials science quest to identify the ultimate composition and design. What began as an open procedure with transosseous suture fixation has evolved dramatically with the widespread adoption of an arthroscopic, anchor-based technique for rotator cuff repair. Currently, a litany of commercially available "hard" and "soft" anchors are flooding the market, with limited qualitative comparisons to suggest superiority of one type. Ideally, suture anchor design should permit preservation of native glenohumeral bone stock with gradual osseointegration, limit disruption of local tissue homeostasis, and maintain time-zero mechanical strength until soft-tissue healing has occurred. At present, a vented, open-anchor architecture may facilitate better biologic incorporation with increased bony ingrowth through access to marrow elements, although these radiographic advantages have not conferred any clinically meaningful differences for our rotator cuff repair patients. For anchor composition, the jury is still out, and we need to continue to critically evaluate for perianchor cyst formation and longer term remodeling. In fact, the true merits of increased bony ingrowth and limited osteolysis may only be realized at the time of revision rotator cuff repair, during which prior implant position or secondary cystic change may further dictate suture anchor design, size, and placement.
机译:现代缝合锚技术的出现不仅彻底改变了肩部肩部病理学管理的关节镜治疗方案,而且提出了一种材料科学追求来识别最终的组成和设计。随着传递缝合固定固定的开放程序的开始,随着旋转箍修复的锚定技术的广泛采用,该锚固技术的开放程序已经显着。目前,一连串的商业上可用的“硬”和“软”锚是泛滥市场的,具有有限的定性比较来提出一种类型的优越性。理想情况下,缝合锚设计应允许保存具有渐进骨整合的天然胶质骨骨库存,限制局部组织稳态的破坏,并保持时间零机械强度,直至软组织愈合发生。目前,通风,开放式架构可以通过进入骨髓元素来促进更好的生物学掺入,尽管这些放射线照相的优点没有赋予我们的转子袖带修复患者的任何临床有意义的差异。对于锚组成,陪审团仍在外,我们需要继续批判性地评估Perianchor囊肿形成和长期重塑。事实上,在修改旋转器袖带修复时,可以实现增加的骨囊肿和有限的骨溶解的真正优点,在此期间植入物位置或二次囊性变化可以进一步决定缝合锚设计,尺寸和放置。

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    《Chemical geology》 |2019年第2019期|共3页
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  • 正文语种 eng
  • 中图分类 地球化学;
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