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首页> 外文期刊>American Journal of Sports Medicine >The effects of augmentation with Swine small intestine submucosa on tendon healing under tension: histologic and mechanical evaluations in sheep.
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The effects of augmentation with Swine small intestine submucosa on tendon healing under tension: histologic and mechanical evaluations in sheep.

机译:猪小肠粘膜下层增强对张力下肌腱愈合的影响:绵羊的组织学和力学评估。

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BACKGROUND: Rotator cuff failure after surgery may be attributed to inferior tissue healing properties that result from repetitive cyclic loading during early rehabilitation. Enhancing the biological healing process may reduce the incidence of failures after rotator cuff repairs. HYPOTHESIS: Augmentation of rotator cuff tissue using swine small intestine submucosa in a sheep model will improve the rate and quality of tissue repair. STUDY DESIGN: Controlled laboratory study. METHODS: We resected and reattached 26 sheep infraspinatus tendons under tension, with 13 animals receiving a small intestine submucosa patch (augmented group). Animals were sacrificed at 12 weeks, and biomechanical testing and histologic evaluation were performed. Biomechanical testing was completed in 10 tendons from each group. Specimens were loaded to failure at a constant displacement to obtain the load deformation curve used to calculate load to failure and stiffness of the healed bone-tendon interface. Histologic testing addressed tissue healing at the bone-tendon interface. RESULTS: The load-to-failure data did not indicate a significant difference between the augmented and nonaugmented groups (1252 +/- 402 N vs 985 +/- 459 N, respectively; P > .05). However, the augmented group had significantly better stiffness than the nonaugmented group (215 +/- 44 N/mm vs 154 +/- 63 N/mm, respectively; P = .03). Histologic data revealed that the infraspinatus tendon in all specimens inserted into the bone through a zone of fibrocartilage, although none of the patches were intact. CONCLUSION: Although there were no differences in the load-to-failure data between the 2 groups, the statistically significant improvement in stiffness for the augmented group is clinically relevant. Stiffness is the biomechanical parameter representing the tissue response to subdestructive loads seen with early rehabilitation. Augmenting the repair with a collagen matrix improved the early healing characteristics of the repair construct. CLINICAL RELEVANCE: Enhancing the biological process of tendon healing under tension by using a collagen matrix patch may improve the ultimate success of rotator cuff repair.
机译:背景:手术后肩袖衰竭可能归因于早期康复期间反复循环负荷导致的组织愈合性能差。加强生物愈合过程可以减少肩袖修复后失败的发生率。假设:在绵羊模型中,使用猪小肠粘膜下层增厚肩袖组织将提高组织修复的速度和质量。研究设计:受控实验室研究。方法:我们在紧张状态下切除并重新附着了26只绵羊下脊肌腱,其中13只动物接受了小肠粘膜下膜片(增强组)。在第12周处死动物,并进行生物力学测试和组织学评估。每组的10条肌腱均完成了生物力学测试。以恒定的位移将样品加载到破坏中,以获得用于计算愈合后的骨腱界面的破坏前载荷和刚度的载荷变形曲线。组织学测试解决了骨腱界面的组织愈合问题。结果:加载失败数据没有显示增强组和非增强组之间的显着差异(分别为1252 +/- 402 N和985 +/- 459 N; P> .05)。但是,增强组的刚度明显优于非增强组(分别为215 +/- 44 N / mm和154 +/- 63 N / mm; P = .03)。组织学数据显示,所有标本中的鼻下肌腱都通过纤维软骨区域插入骨中,尽管这些贴片均未完整。结论:尽管两组的失败负荷数据没有差异,但增强组的僵硬度统计学上显着改善与临床相关。刚度是代表组织对早期康复所见的亚破坏负荷的反应的生物力学参数。用胶原蛋白基质增强修复可以改善修复结构的早期愈合特性。临床意义:通过使用胶原蛋白基质补片增强张力下肌腱愈合的生物学过程,可能会提高肩袖修复的最终成功。

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