首页> 外文期刊>Arthroscopy: the journal of arthroscopic & related surgery : official publication of the Arthroscopy Association of North America and the International Arthroscopy Association >A New Anchor Augmentation Technique With a Cancellous Screw in Osteoporotic Rotator Cuff Repair: An In Vitro Biomechanical Study on Sheep Humerus Specimens
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A New Anchor Augmentation Technique With a Cancellous Screw in Osteoporotic Rotator Cuff Repair: An In Vitro Biomechanical Study on Sheep Humerus Specimens

机译:骨质疏松性肩袖修复中采用松动螺钉的新型锚固增强技术:绵羊肱骨标本的体外生物力学研究

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Purpose: The aim of this study was to test a simple technique to augment the pullout resistance of an anchor in an over-drilled sheep humerus model. Methods: Sixty-four paired sheep humeri were harvested from 32 male sheep aged 18 months. Specimens were divided into an augmented group and non-augmented group. FASTIN RC 5-mm titanium screw anchors (DePuy Mitek, Raynham, MA) double loaded with suture material (braided polyester, nonabsorbable USP No. 2) were used in both groups. Osteoporosis was simulated by over-drilling with a 4.5-mm drill. Augmentation was performed by fixing 1 of the sutures 1.5 cm inferior to the anchor insertion site with a washer screw. This was followed by a pull-to-failure test at 50 mm/min. The ultimate load (the highest value of strength before anchor pullout) was recorded. A paired t test was used to compare the biomechanical properties of the augmented and non-augmented groups. Results: In all specimens the failure mode was pullout of the anchor. The ultimate failure loads were statistically significantly higher in the augmented group (P < .0001). The mean pullout strength was 121.1 +/- 10.17 N in the non-augmented group and 176.1 +/- 10.34 N in the augmented group. Conclusions: The described augmentation technique, which is achieved by inferior-lateral fixation of 1 of the sutures of the double-loaded anchor to a fully threaded 6.5-mm cancellous screw with a washer, significantly increases the ultimate failure loads in the over-drilled sheep humerus model. Clinical Relevance: Our technique is simple, safe, and inexpensive. It can be easily used in all osteoporotic patients and will contribute to the reduction of anchor failure. This technique might be difficult to apply arthroscopically. Cannulated smaller screws would probably be more practical for arthroscopic use. Further clinical studies are needed.
机译:目的:本研究的目的是测试一种简单的技术,以增加过度钻孔的绵羊肱骨模型中锚固件的抗拔力。方法:从32只18个月大的雄性绵羊中收获64只成对的绵羊肱骨。标本分为增强组和非增强组。两组均使用FASTIN RC 5毫米钛螺丝锚钉(DePuy Mitek,美国马萨诸塞州雷纳姆),双重负载缝合材料(编织聚酯纤维,不可吸收的USP 2号)。骨质疏松症是通过用4.5毫米钻头过度钻孔来模拟的。通过用垫圈螺钉将1.5厘米以下的缝线中的1个固定在锚钉插入部位来进行增强。随后进行50 mm / min的拉拔测试。记录极限载荷(拉出锚之前的最高强度值)。配对t检验用于比较增强组和非增强组的生物力学性能。结果:在所有标本中,破坏模式均为锚固件拔出。增强组的最终破坏载荷在统计学上显着更高(P <.0001)。非增强组的平均拔出强度为121.1 +/- 10.17 N,增强组的平均拔出强度为176.1 +/- 10.34N。结论:所描述的增强技术是通过将双负载锚钉的缝线的下侧固定至带垫圈的全螺纹6.5 mm松质螺钉而实现的,该技术显着增加了过度钻孔的最终破坏载荷绵羊肱骨模型。临床意义:我们的技术简单,安全且便宜。它可轻松用于所有骨质疏松症患者,并将有助于减少锚固失败。这种技术可能很难通过关节镜应用。较小的空心螺钉可能更适合关节镜检查。需要进一步的临床研究。

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