首页> 外文期刊>Journal of the mechanical behavior of biomedical materials >Bone healing response in cyclically loaded implants: Comparing zero, one, and two loading sessions per day
【24h】

Bone healing response in cyclically loaded implants: Comparing zero, one, and two loading sessions per day

机译:循环加载植入物中的骨愈合反应:每天比较零,一,两次装载课程

获取原文
获取原文并翻译 | 示例
           

摘要

When bone implants are loaded, they are inevitably subjected to displacement relative to bone. Such micromotion generates stress/strain states at the interface that can cause beneficial or detrimental sequels. The objective of this study is to better understand the mechanobiology of bone healing at the tissue-implant interface during repeated loading. Machined screw shaped Ti implants were placed in rat tibiae in a hole slightly bigger than the implant diameter. Implants were held stable by a specially-designed bone plate that permits controlled loading. Three loading regimens were applied, (a) zero loading, (b) one daily loading session of 60 cycles with an axial force of 1.5 N/cycle for 7 days, and (c) two such daily sessions with the same axial force also for 7 days. Finite element analysis was used to characterize the mechanobiological conditions produced by the loading sessions. After 7 days, the implants with surrounding interfacial tissue were harvested and processed for histological, histomorphometric and DNA microarray analyses. Histomorphometric analyses revealed that the group subjected to repeated loading sessions exhibited a significant decrease in bone-implant contact and increase in bone-implant distance, as compared to unloaded implants and those subjected to only one loading session. Gene expression profiles differed during osseointegration between all groups mainly with respect to inflammatory and unidentified gene categories. The results indicate that increasing the daily cyclic loading of implants induces deleterious changes in the bone healing response, most likely due to the accumulation of tissue damage and associated inflammatory reaction at the bone-implant interface.
机译:装载骨植入物时,它们不可避免地对骨骼进行位移。这种微调在界面处产生应力/应变状态,导致有益或有害续集。本研究的目的是在重复装载期间更好地了解组织植入界面处的骨愈合的力学学。将机加工螺旋形TI植入物置于大鼠胫骨中,孔略大于植入直径。植入物由允许受控载荷的专门设计的骨板保持稳定。施加三种装载方案,(a)零负荷,(b)60个循环的每日加载会话,轴向力为1.5n /循环,7天,(c)两种如此的每日每日轴向力也是如此7天。有限元分析用于表征装载会话产生的力学条件。在7天后,收获具有周围界面组织的植入物,并加工组织学,组织形态和DNA微阵列分析。组织形态分析显示,与未卸载的植入物相比,经过重复的负载液体的基团表现出骨植入接触的显着降低,并且骨植入距离增加,并且与卸载的植入物相比,但是仅进行一次装载会。基因表达曲线在骨整合期间各组主要关于炎症和未识别的基因类别之间的骨整合。结果表明,增加植入物的日常循环载荷诱导骨愈合反应中的有害变化,很可能是由于骨植入界面的组织损伤和相关炎症反应的积累。

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