首页> 外文期刊>Knee surgery, sports traumatology, arthroscopy: official journal of the ESSKA >Cyclic loading comparison of Bio-SutureTak-#2 FiberWire and Bio Mini-Revo-#2 Hi-Fi suture anchor-sutures in cadaveric scapulae.
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Cyclic loading comparison of Bio-SutureTak-#2 FiberWire and Bio Mini-Revo-#2 Hi-Fi suture anchor-sutures in cadaveric scapulae.

机译:尸体肩s骨中Bio-SutureTak-#2 FiberWire和Bio Mini-Revo-#2 Hi-Fi缝线锚固缝线的循环载荷比较。

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摘要

This study compared tap-in Bio-SutureTak suture anchor-#2 FiberWire suture (Group 1) and screw-in Bio Mini-Revo suture anchor-#2 Hi-Fi suture (Group 2) fixation in the glenoid region of interest for Bankart repair, in addition to evaluation of isolated suture loop biomechanical properties under progressive incremental cyclic loads. With knowledge of glenoid apparent bone mineral density (BMD), implant preparation and fit characteristics, and following application of a light manual tensile load, the primary investigator scored each specimen for perceived within group biomechanical test performance using a 0-10 point modified visual analog scale. After scoring, 12 paired constructs were placed in a servo hydraulic device clamp, preloaded to 25 N, and cycled between 25 and 50 Hz with a 25 N load increase every 25 cycles. Group 2 withstood greater load (104.1 +/- 56 vs. 70 +/- 36.9 N, P = 0.04) and displaced more at failure (13 +/- 4.5 vs. 8.6 +/- 3.3 mm, P = 0.04). All Group 1 specimens failed prior to reaching 150 N, whereas 25% of Group 2 specimens (n = 3) failed at 200 N. All specimens failed by anchor pullout except for three Group 2 specimens that failed by eyelet breakage at 200 N. Isolated suture testing revealed that Group 1 sutures displaced less at each cyclic load (P = 0.028) and withstood greater failure loads (P = 0.028) than that of Group 2 sutures. Group 2 constructs displayed moderately strong relationships between perceived within group biomechanical test performance and ultimate load (r (2) = 0.55) and displacement at failure (r (2) = 0.67). Group 1 did not display significant relationships. Similar biomechanical performance between 50 and 125 N, greater load at failure, and superior biomechanical test prediction accuracy suggest that the screw-in type Bio Mini-Revo suture anchor-#2 Hi-Fi suture combination may be preferred for Bankart lesion repair in low apparent BMD glenoid processes. The #2 Hi-Fi suture, however, allowed significantly greater displacement than the #2 FiberWire suture at each progressive cyclic load interval.
机译:这项研究比较了Bankart感兴趣的关节盂区域的Bio-SutureTak缝线锚栓#2 FiberWire缝线(组1)和Bio Mini-Revo缝线锚栓#2 Hi-Fi缝线(组2)固定修复,以及评估渐进式递增循环载荷下孤立缝线环的生物力学性能。了解关节盂表观骨矿物质密度(BMD),植入物的制备和贴合特性,并在施加轻度手动拉伸载荷后,主要研究人员使用0-10点改进的视觉模拟对每个标本进行了评分,以评估组内生物力学测试性能规模。计分后,将12对配对的结构放置在伺服液压设备夹具中,预加载至25 N,并在25至50 Hz之间循环,每25个循环增加25 N的载荷。第2组承受了更大的载荷(104.1 +/- 56对70 +/- 36.9 N,P = 0.04),并且在失效时位移更大(13 +/- 4.5对8.6 +/- 3.3 mm,P = 0.04)。第一组的所有标本在达到150 N之前均失效,而第二组的25%(n = 3)在200 N时失效。除三组第二组的标本在200 N时由于孔眼断裂而失效外,所有的标本均因锚固拔出而失败。缝线测试显示,与第2组缝线相比,第1组缝线在每个循环载荷下位移较小(P = 0.028),并且承受更大的破坏载荷(P = 0.028)。第2组构造在组生物力学测试性能和极限载荷(r(2)= 0.55)与失效位移(r(2)= 0.67)之间显示出中等程度的强关系。第一组没有显示显着的关系。在50到125 N之间具有相似的生物力学性能,更大的失效载荷以及出色的生物力学测试预测精度,这表明,旋入式Bio Mini-Revo缝线锚定器#2 Hi-Fi缝线组合可能是低位Bankart病变修复的首选明显的BMD关节突。但是,在每个渐进式循环载荷间隔中,#2 Hi-Fi缝线的位移远比#2 FiberWire缝线大。

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