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High rate of fusion in sheep cervical spines following anterior interbody surgery with absorbable and nonabsorbable implant devices.

机译:使用可吸收和不可吸收植入装置进行前体间手术后绵羊颈椎的融合率很高。

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STUDY DESIGN: Fourteen sheep were fused using anterior interbody implants at C2-C3 and C4-C5 and followed for 6 months. OBJECTIVE: To evaluate the effect of absorbable and nonabsorbable implants on fusion rate, cage migration, and implant integrity. SUMMARY OF BACKGROUND DATA: Despite the high clinical success rate with metallic plates and interbody grafting, complications such as dysphagia, imaging artifacts, and revision difficulties exist. Less permanent and lower profile implants could minimize these problems. METHODS: Four treatments were studied: 1) carbon fiber-reinforced polymer (CFRP) cage alone, 2) CFRP cage with an absorbable tension band, 3) absorbable cage with an absorbable tension band, and 4) absorbable cage with a titanium plate. Fusion was assessed using radiographs, biomechanical testing, and micro-CT analysis. RESULTS: Treatments with the CFRP cage alone had the lowest fusion rate at 3 months (2/6) and 6 months (4/6). The CFRP cage with the absorbable strap treatments had 5/6 fusions at 6 months. The absorbable cage with absorbable strap also had 5/6 fusions, but two of the cages fractured. The absorbable cage with titanium plate had 5/6 fusions, but the one partial fusion was attributed to poor screw and plate placement. CONCLUSION: Using both absorbable and nonabsorbable implants, high fusion rates were achieved in the challenging sheep cervical spine model. However, the absorbable cages were not able to withstand the mechanical forces during the 6-month survival period.
机译:研究设计:使用前体间植入物在C2-C3和C4-C5处融合十四只绵羊,并进行6个月的随访。目的:评估可吸收和不可吸收植入物对融合率,笼迁移和植入物完整性的影响。背景数据概述:尽管金属板和椎间植体的临床成功率很高,但仍存在吞咽困难,影像伪像和翻修困难等并发症。永久性较低且轮廓较小的植入物可以最大程度地减少这些问题。方法:研究了四种处理方法:1)仅碳纤维增强聚合物(CFRP)笼,2)带有可吸收张力带的CFRP笼,3)带有可吸收张力带的可吸收笼,以及4)带有钛板的可吸收笼。使用射线照相,生物力学测试和微CT分析评估融合。结果:单独使用CFRP笼的治疗在3个月(2/6)和6个月(4/6)时融合率最低。带有可吸收带子治疗的CFRP笼在6个月时融合了5/6。带可吸收带的可吸收笼也有5/6融合,但其中两个笼破裂。带有钛板的可吸收笼具有5/6融合,但部分融合归因于螺钉和板放置不良。结论:使用可吸收和不可吸收的植入物,在具有挑战性的绵羊颈椎模型中实现了高融合率。但是,可吸收的笼子在6个月的生存期内无法承受机械力。

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