不同无头压缩螺钉产生压缩力的力学比较及断裂间隙大小的影响

The Hand Pub Date : 2019-09-30 DOI:10.1177/1558944719877890
A. Ilyas, Jonathan M. Mahoney, B. Bucklen
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引用次数: 3

摘要

背景:有证据表明,骨折间隙大小可能会影响现代无头加压螺钉(HCS)的加压效果。这项力学研究比较了3种商用HCS系统在不同骨折间隙中的压缩效果:CAPTIVATE Headless (Globus Medical, Inc, Audubon, Pennsylvania)、Synthes (DePuy Synthes, Westchester, Pennsylvania)和Acumed Acutrak 2 (Acumed LLC, Hillsboro, Oregon)。方法:将螺钉插入由聚氨酯合成骨泡沫碎片组成的定制测试夹具中,由一层易压缩的聚氨酯泡沫模拟骨折间隙隔开。在最终插入和反击后测量压缩。研究了破碎间隙大小对压缩强度的影响。结果:CAPTIVATE无头3.0 mm螺钉(70.1±5.7 N)与Synthes 3.0 mm螺钉(64.9±7.3 N)在最终沉头后获得相似的压缩力。在CAPTIVATE无头2.5 mm和Synthes 2.4 mm螺钉以及CAPTIVATE无头4.0 mm和Acutrak 2 Standard螺钉上发现了类似的比较。当骨折间隙从2到4 mm增加一倍时,CAPTIVATE Headless 2.5 mm和Synthes 2.4 mm螺钉的最终压缩性没有明显影响,但使用Acutrak 2 Micro螺钉时,最终压缩性显著降低了95.9%。结论:在比较相同尺寸的螺钉时,CAPTIVATE、Synthes和Acutrak 2 HCS系统显示出相似的潜在压缩力。然而,与CAPTIVATE Headless和Synthes HCS系统相比,当模拟裂缝间隙尺寸增加到4mm时,Acutrak 2 HCS系统显示出更少的压缩。CAPTIVATE Headless和Synthes HCS系统插入了一个与间隙距离无关的压缩套筒。
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A Mechanical Comparison of the Compressive Force Generated by Various Headless Compression Screws and the Impact of Fracture Gap Size
Background: There is evidence that interfragmentary fracture gap size may affect the compression achievable with a modern headless compression screw (HCS). This mechanical study compared the compression achieved by 3 commercial HCS systems through various fracture gaps: CAPTIVATE Headless (Globus Medical, Inc, Audubon, Pennsylvania), Synthes (DePuy Synthes, Westchester, Pennsylvania), and Acumed Acutrak 2 (Acumed LLC, Hillsboro, Oregon). Methods: Screws were inserted into a custom test fixture composed of polyurethane synthetic bone foam fragments, separated by a layer of easily compressible polyurethane foam simulating a fracture gap. Compression was measured after final insertion and countersinking. The effect of the interfragmentary fracture gap size on the compression generated was also investigated. Results: The CAPTIVATE Headless 3.0 mm screw (70.1 ± 5.7 N) and the Synthes 3.0 mm screw (64.9 ± 7.3 N) achieved similar compressive forces after final countersink. Similar comparisons were found for the CAPTIVATE Headless 2.5 mm and Synthes 2.4 mm screws, and the CAPTIVATE Headless 4.0 mm and Acutrak 2 Standard screws. The final compression of the CAPTIVATE Headless 2.5 mm and Synthes 2.4 mm screws was not significantly affected when the fracture gap was doubled from 2 to 4 mm, but was reduced significantly by 95.9% with the Acutrak 2 Micro screw. Conclusion: When comparing like-sized screws, the CAPTIVATE, Synthes, and Acutrak 2 HCS systems demonstrated similar potential compressive forces. However, compared with the CAPTIVATE Headless and Synthes HCS systems, which are inserted with a compression sleeve that is not gap distance–dependent, the Acutrak 2 HCS system demonstrated less compression when the simulated fracture gap size was increased to 4 mm.
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