首页> 外文期刊>Journal of spinal disorders & techniques. >The effect of angular mismatch between vertebral endplate and vertebral body replacement endplate on implant subsidence
【24h】

The effect of angular mismatch between vertebral endplate and vertebral body replacement endplate on implant subsidence

机译:椎骨终板与椎体置换终板之间的角度不匹配对种植体下陷的影响

获取原文
获取原文并翻译 | 示例
       

摘要

STUDY DESIGN:: Comparative biomechanical study. OBJECTIVE:: To determine whether an angular mismatch between the vertebral body replacement (VBR) endplate and the simulated foam vertebral endplate leads to accelerated subsidence in a cyclic compression model of the VBR-vertebra interface. SUMMARY OF BACKGROUND DATA:: One of the main complications of the VBR surgery is postoperative subsidence and collapse of the VBR implant into the adjacent vertebral bodies. Although numerous factors affecting intervertebral cage subsidence have been cited, few studies have proposed factors responsible for VBR cage subsidence. METHODS:: Hardwood blocks at 0-30-degree angles and polyurethane foam blocs have been used as base for this experimental setting. One end of the Synex (Synthes) expandable cage was attached to a material testing machine. The endplate of the implant was placed at a similar spot on the block in such a manner that there was an exact match between the Synex endplate and the foam block at 0 degrees, subsequent angled blocks would tilt the foam endplates by the 10-, 20-, and 30-degree increments as needed. Cyclic axial loads were applied in 9 load-unload cycles. RESULTS:: Five samples were tested at each mismatch angle (0, 10, 20, and 30 degrees), for a total of 20 trials. Implant subsidence significantly increased for each 10-degree increase in mismatch angle. This effect, however, did not follow a uniform trend at all angles. The curve appeared exponential at 0 degree of angular mismatch, became linear at 10-20 degrees of mismatch, and then demonstrated some ability to resist load at 30 degrees, leading to a plateau at the higher loads. CONCLUSIONS:: Increasing mismatch angles are an important factor in leading to increased cage subsidence into polyurethane blocks. Consequently, the incidence of subsidence in the clinical setting could be reduced by paying careful attention to ensuring that both the prosthetic and bony endplates are well apposed at the end of surgery.
机译:研究设计::比较生物力学研究。目的:确定在VBR-椎骨界面的循环压缩模型中,椎体置换(VBR)终板和模拟的泡沫椎体终板之间的角度不匹配是否导致加速沉降。背景数据摘要:VBR手术的主要并发症之一是术后下陷和VBR植入物塌陷到相邻椎体中。尽管已经提到了影响椎间融合器沉降的众多因素,但很少有研究提出了导致VBR融合器沉降的因素。方法:0-30度角的硬木块和聚氨酯泡沫块已用作该实验装置的基础。 Synex(Synthes)可扩展笼的一端连接到一台材料测试机上。将植入物的终板放置在砌块上的类似位置,以使Synex终板和泡沫砌块在0度处完全匹配,随后的成角度的砌块会使泡沫终板倾斜10、20 -,并根据需要增加30度。循环轴向载荷施加9个载荷-卸载循环。结果:在每个失配角(0、10、20和30度)测试了五个样品,总共进行了20次试验。失配角每增加10度,植入物沉陷就会明显增加。但是,这种效果并非在所有角度都遵循统一的趋势。曲线在角度不匹配度为0时呈指数,在不匹配度为10-20时变为线性,然后表现出一定的抵抗30度负载的能力,从而在较高负载下达到平稳状态。结论:不匹配角的增加是导致笼式沉陷到聚氨酯嵌段中的重要因素。因此,通过仔细注意确保在手术结束时适当放置假体和骨端板,可以减少临床环境中的下陷发生率。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号