...
首页> 外文期刊>Foot and ankle international >Biomechanical stability of intramedullary technique for fixation of joint depressed calcaneus fracture.
【24h】

Biomechanical stability of intramedullary technique for fixation of joint depressed calcaneus fracture.

机译:髓内技术固定关节跟骨骨折的生物力学稳定性。

获取原文
获取原文并翻译 | 示例

摘要

BACKGROUND: Internal fixation of the os calcis is often complicated by prolonged soft tissue management and posterior facet disruption. An ideal calcaneal construct would include minimal hardware prominence, sturdy posterior facet fixation and nominal soft tissue disruption. The purpose of this study was to develop such a construct and provide a biomechanical analysis comparing our technique to a standard internal fixation technique. METHODS AND MATERIALS: Twenty fresh-frozen cadaver calcanei were used to create a reproducible Sanders type-IIB calcaneal fracture pattern. One calcaneus of each pair was randomly selected to be fixed using our compressive headless screw technique. The contralateral matched calcaneus was fixed with a nonlocking calcaneal plate in a traditional fashion. Each calcaneus was cyclically loaded at a frequency of 1 Hz for 4000 cycles using an increasing force from 250 N to 1000 N. An Optotrak motion capturing system was used to detect relative motion of the three fracture fragments at eight different points along the fracture lines. Horizontal separation and vertical displacement at the fracture lines was recorded, as well as relative rotation at the primary fracture line. RESULTS: When the data were averaged, there was more horizontal displacement at the primary fracture line of the plate and screw construct compared to the headless screw construct. The headless screw construct also had less vertical displacement at the primary fracture line at every load. On average those fractures fixed with the headless screw technique had less rotation than those fixed with the side plate technique. CONCLUSION: A new headless screw technique for calcaneus fracture fixation was shown to provide stability as good as, or better than, a standard side plating technique under the axial loading conditions of our model. Although further testing is needed, the stability of the proposed technique is similar to that typically provided by intramedullary fixation. CLINICAL RELEVANCE: This fixation technique provides a biomechanically stable construct with the potential for a minimally invasive approach and improved post-operative soft tissue healing.
机译:背景:长时间的软组织处理和后小平面破坏通常会导致输尿管结石的内固定。理想的跟骨构​​造应包括最小的硬件突出,坚固的后小平面固定和标称的软组织破坏。这项研究的目的是开发这种构造,并提供将我们的技术与标准内固定技术进行比较的生物力学分析。方法和材料:使用二十只新鲜冷冻的尸体钙钙皮来制作可再现的Sanders IIB型跟骨骨折型。使用我们的无头螺钉加压技术,随机选择每对中的一个跟骨进行固定。对侧匹配跟骨以传统方式用非锁定跟骨板固定。使用从250 N到1000 N的增加力,将每个跟骨以1 Hz的频率循环加载4000个循环。使用Optotrak运动捕捉系统来检测沿骨折线在八个不同点处的三个骨折片段的相对运动。记录裂缝线上的水平分离和垂直位移,以及主要裂缝线上的相对旋转。结果:将数据平均后,与无头螺钉构造相比,板和螺钉构造的主要断裂线上存在更多的水平位移。无头螺钉构造在每种载荷下在主断裂线上的垂直位移也较小。平均而言,那些用无头螺钉技术固定的骨折比那些用侧板技术固定的骨折旋转少。结论:在我们模型的轴向载荷条件下,一种新的无头螺钉技术用于跟骨骨折固定术显示出与标准侧板技术相同或更好的稳定性。尽管需要进一步测试,但所提出技术的稳定性与髓内固定通常提供的稳定性相似。临床相关性:这种固定技术提供了一种生物力学稳定的结构,具有微创方法和改善术后软组织愈合的潜力。

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