首页> 外文期刊>Journal of the Formosan Medical Association =: Taiwan yi zhi >3D laser-printed porous Ti 6Al 4V dental implants for compromised bone support
【24h】

3D laser-printed porous Ti 6Al 4V dental implants for compromised bone support

机译:3D激光打印的多孔钛 6 Al 4 V牙种植体,用于受损的骨支持

获取原文
获取外文期刊封面目录资料

摘要

Background/PurposeAlveolar bone loss following peri-implantitis remains a clinical challenge. We aimed to design a novel bioactive dental implant to accommodate the large bone defect caused by removal of previously failed implant.MethodsBio-ActiveITRIdental implant was manufactured with laser-sintered additive 3D printing technique. A 7.5?mm diameter?×?7.0?mm depth osteotomy defect was created at the lateral aspect of distal femur of 20 New Zealand white rabbits to simulate the bony defect after removal of failed dental implant. One side of distal femurs was randomly selected for the commercially pure titanium NobelActive? implant (control group) and the other side with Bio-ActiveITRITi6Al4V porous dental implant (ITRI group). Animals were sacrificed at 4, 8 and 12 weeks after the implants' insertion. The samples were processed for gross morphological analysis, radiographic examination, micro-CT evaluation, and mechanical testing.ResultsIn histomorphometrical evaluation and micro-CT analysis, active new bone formation and good osseointegration within the ITRI implants were observed at the bone gap surrounding the dental implants. The biomechanical parameters in the Bio-ActiveITRIdental implants were significantly higher than those of the commercially control samples. For the Bio-ActiveITRIdental implants, the trabecular thickness decreased, while the trabecular separation and total porosity increased from the prescribed 1-month to 3-month time points; reflecting the natural remodeling of surrounding bony tissue in the Bio-ActiveITRIdental implants.ConclusionThe novel porous structured Bio-ActiveITRIdental implants may have a great potential for the prosthetic reconstruction where bone support is compromised after removal of a previously failed implant.
机译:背景/目的种植体周围炎后牙槽骨丢失仍然是一项临床挑战。我们旨在设计一种新型的生物活性牙科植入物,以适应因去除先前失败的植入物而导致的大骨缺损。方法Bio-ActiveITRIdental牙科植入物是采用激光烧结添加剂3D打印技术制造的。在20只新西兰大白兔的股骨远端侧面上开出了一个直径为7.5?mm×?7.0?mm深的截骨缺损,以模拟去除失败的牙齿植入物后的骨缺损。随机选择股骨远端的一侧用于商业纯钛NobelActive?植入物(对照组),另一侧使用Bio-ActiveITRITi6Al4V多孔牙科植入物(ITRI组)。植入物植入后第4、8和12周处死动物。对样品进行处理,以进行总体形态分析,射线照相检查,显微CT评估和力学测试。植入物。 Bio-ActiveITRIdental植入物中的生物力学参数显着高于商业对照样品。对于Bio-ActiveITRIdental植入物,从规定的1个月至3个月的时间点,小梁的厚度减小,而小梁的分离度和总孔隙率增加;结论:这种新型多孔结构的Bio-ActiveITRIdental植入物可能具有巨大的潜力,可用于修复修复,因为在去除先前失败的植入物后,骨骼的支撑受到了损害。

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