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首页> 外文期刊>Foot and ankle international >Locked versus nonlocked plate fixation for first metatarsophalangeal arthrodesis: A biomechanical investigation
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Locked versus nonlocked plate fixation for first metatarsophalangeal arthrodesis: A biomechanical investigation

机译:锁定与非锁定板固定治疗第一meta趾关节固定术:生物力学研究

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摘要

Background: First metatarsophalangeal (MTP) arthrodesis using dorsal plate fixation is a common procedure for painful conditions of the great toe. Locked plates have become increasingly common for arthrodesis procedures in the foot, including the hallux MTP joint. The biomechanical advantages and disadvantages of these plates are currently unknown. The purpose of this study was to compare locked and nonlocked plates used for first MTP fusion for strength and stiffness. Materials and Methods: The first ray of nine matched pairs of fresh-frozen cadaveric feet underwent dissection, preparation with cup-and-cone reamers, and fixation of the MTP joint with a compression screw and either a nonlocked or locked stainless steel dorsal plate. Each specimen was loaded in a cantilever fashion to 90 N at a rate of 3 Hz for a total of 250,000 cycles. The amount of plantar MTP gap was recorded using a calibrated extensometer. Load-to-failure testing was performed for all specimens that endured the entire cyclical loading. Stiffness was calculated from the final loadto- failure test. Results: The locked plate group demonstrated significantly less plantar gapping during fatigue endurance testing from cycle 10,000 through 250,000 (p < .05). Mean stiffness was significantly greater in the locked plate group compared with the nonlocked plate group (p = .02). There was no significant difference in load to failure between the two groups (p = .27). Conclusion: Compared with nonlocked plates, locked hallux MTP arthrodesis plates exhibited significantly less plantar gapping after 10,000 cycles of fatigue endurance testing and significantly greater stiffness in load-to-failure testing. Clinical Relevance: As the use of locked plate technology is becoming increasingly common for applications in the foot, a thorough understanding of the biomechanical characteristics of these implants may help optimize their indications and clinical use.
机译:背景:使用背板固定术进行首次meta趾关节固定术是治疗大脚趾疼痛的常见方法。锁定板已在脚的关节固定手术中变得越来越普遍,包括拇趾MTP关节。这些板的生物力学优缺点目前未知。这项研究的目的是比较用于首次MTP融合的锁定板和非锁定板的强度和刚度。材料和方法:对第一对9对匹配的新鲜冷冻尸体脚进行解剖,用杯形和锥形铰刀进行准备,并用加压螺钉和非锁定或锁定的不锈钢背板固定MTP关节。每个样品以3 Hz的速率以悬臂方式加载到90 N,共进行250,000个循环。使用校准的引伸计记录足底MTP间隙的量。对所有承受整个周期性载荷的样品进行了载荷-破坏测试。刚度是根据最终的载荷至破坏试验计算得出的。结果:在10,000次至250,000次的疲劳耐力测试中,锁定钢板组的足底间隙明显减少(p <.05)。与非锁定钢板组相比,锁定钢板组的平均刚度明显更高(p = .02)。两组之间的失败负荷没有显着差异(p = 0.27)。结论:与无锁钢板相比,经过10,000次疲劳耐力测试后,锁住的拇指MTP关节固定板的足底间隙显着减少,而载荷至断裂试验的刚度则显着提高。临床意义:随着锁板技术在脚部应用中变得越来越普遍,透彻了解这些植入物的生物力学特征可能有助于优化其适应症和临床应用。

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