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首页> 外文期刊>Journal of Hand Surgery. American Volume >A biomechanical modeling of injury, repair, and rehabilitation of ulnar collateral ligament injuries of the thumb.
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A biomechanical modeling of injury, repair, and rehabilitation of ulnar collateral ligament injuries of the thumb.

机译:拇指尺侧副韧带损伤的损伤,修复和康复的生物力学模型。

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PURPOSE: The use of early active motion protocols after repair of the thumb ulnar collateral ligament (UCL) theoretically could avoid the complications of postoperative immobilization and improve ligament healing. The goals of this study were as follows: (1) to develop an accurate model of acute UCL rupture, (2) to determine the strain pattern in the UCL during constrained active thumb motion in intact and repaired thumbs, and (3) to determine the load to failure and strain of the UCL during rupture in forced abduction. METHODS: Sixteen fresh-frozen adult cadaver thumbs were mounted in a testing apparatus designed for testing the strain in the UCL during constrained active motion and abduction load to failure. Strain data for the UCL during motion were measured. Specimens were tested to failure using an MTS machine. Dynamic strain data were acquired throughout the loading cycle. Repair of the torn ligament was performed with a suture anchor technique. Strain and load-to-failure measurements then were repeated in the repaired specimens. Differences in the strain values and failure forces between the intact and repaired specimens then were compared. RESULTS: A reliable model of a UCL rupture was created. Strains in the UCL were similar during active motion in both intact and repaired specimens. A significant decrease in maximum load to failure was noted in repaired specimens but failure reliably occurred at strains 3 times greater than expected with active motion. CONCLUSIONS: A controlled active motion therapy protocol after suture anchor repair of a ruptured UCL of the thumb is safe from a biomechanical point of view.
机译:目的:理论上在拇指尺侧副韧带(UCL)修复后使用早期主动运动方案可以避免术后固定的并发症并改善韧带愈合。这项研究的目标如下:(1)建立精确的急性UCL破裂模型;(2)确定完整和修复的拇指受约束的主动拇指运动过程中UCL的应变模式;以及(3)确定强迫绑架破裂期间UCL的破坏载荷和应变。方法:将十六只新鲜冷冻的成年尸体拇指安装在测试设备中,该设备设计用于在受约束的主动运动和外展负重失败期间测试UCL中的应变。测量了运动期间UCL的应变数据。使用MTS机器对样本进行了测试以测试其是否失效。在整个加载周期中获取动态应变数据。韧带撕裂的修复采用缝合锚固技术进行。然后在修复后的样品中重复进行应变和破坏载荷测量。然后比较完好和修复后的样品之间的应变值和破坏力的差异。结果:创建了一个可靠的UCL破裂模型。在完整运动和修复后的标本中,UCL中的菌株在主动运动期间相似。在修复的样品中,最大破坏载荷显着降低,但是在可靠运动时应变确实比预期运动大3倍。结论:从生物力学的角度来看,对拇指破裂的UCL进行缝合锚定修复后,进行有控制的主动运动疗法是安全的。

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