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Scapholunate ligament reconstruction using a periosteal flap of the iliac crest: a biomechanical study.

机译:使用髂嵴的骨膜皮瓣进行舟骨韧带重建:一项生物力学研究。

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摘要

INTRODUCTION: Advances continue to improve direct reconstruction of the dorsal scapholunate (SL) ligament, which is the strongest part of the entire SL ligament and is known as the turning point between the scaphoid and lunate. This study was designed to compare the biomechanical properties of the dorsal SL ligament with those of a periosteal flap of the iliac crest, which is a new graft candidate for dorsal SL reconstruction. MATERIALS AND METHODS: A bone-ligament-bone complex was harvested for biomechanical testing from the iliac crest and the dorsal SL complex. Ten specimens could be prepared in each group. After potting the bone blocks in methylmethacrylate for stable fixation, the specimens were tested, using a servohydraulic testing system, at a rate of 10 mm/min. RESULTS: Failure displacement, failure force, failure stress, energy to failure, and stiffness were assessed for both groups. Eight specimens in each group were tested successfully. In the ligament group, six specimens failed at the ligament level, whereas two failed at the insertion of the scaphoid. In the periosteum group, all eight specimens failed at the ligament level. The failure force of the dorsal SL ligament averaged 171.8 N, failure stress was 10.3 N/mm2, and failure displacement amounted to 2.9 mm. Energy to failure was 269.1 N-mm, and stiffness averaged 77.2 N/mm. Failure force of the periosteal flap amounted to 144.3 N, failure stress was 9.9 N/mm2, failure displacement was 3.0 mm, and energy to failure was 217.9 N-mm. Stiffness of the periosteal flap measured 60.5 N/mm. Comparison of the dorsal SL ligament and the periosteal flap of the iliac crest revealed no significant biomechanical differences. CONCLUSION: Therefore, the biomechanical properties of the periosteal flap recommend its use for reconstruction of the dorsal SL ligament.
机译:引言:进展继续改善背肩胛骨韧带 (SL) 韧带的直接重建,肩胛骨背侧韧带是整个 SL 韧带最坚固的部分,被称为舟骨和月骨之间的转折点。本研究旨在比较背侧 SL 韧带的生物力学特性与髂嵴骨膜皮瓣的生物力学特性,髂嵴骨膜瓣是背侧 SL 重建的新移植物候选者。材料和方法:从髂嵴和背侧SL复合体中采集骨-韧带-骨复合物进行生物力学测试。每组可制备10个标本。将骨块灌封在甲基丙烯酸甲酯中稳定固定后,使用伺服液压测试系统以 10 mm/min 的速率测试试样。 结果: 评估了两组的失效位移、失效力、失效应力、失效能量和刚度。每组8个标本成功检测。在韧带组中,6 个标本在韧带水平失败,而 2 个标本在舟骨插入处失败。在骨膜组中,所有 8 个标本在韧带水平均失败。SL韧带背侧破坏力平均为171.8 N,破坏应力为10.3 N/mm2,破坏位移为2.9 mm。破坏能量为269.1 N-mm,平均刚度为77.2 N/mm。骨膜皮瓣的破坏力为144.3 N,破坏应力为9.9 N/mm2,破坏位移为3。0 mm,失效能量为 217.9 N-mm。 骨膜皮瓣的刚度测量为 60.5 N/mm。SL韧带背侧和髂嵴骨膜皮瓣的比较显示没有显着的生物力学差异。结论:因此,骨膜皮瓣的生物力学特性建议将其用于背侧SL韧带的重建。

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