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首页> 外文期刊>International journal of oral and maxillofacial surgery >Mandibular reconstruction with a bioactive-coated cementless Ti6Al4V modular endoprosthesis in Macaca fascicularis
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Mandibular reconstruction with a bioactive-coated cementless Ti6Al4V modular endoprosthesis in Macaca fascicularis

机译:用生物活性涂层的非骨水泥Ti6Al4V模块化假体在下颌猕猴中进行下颌重建

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摘要

The titanium mandibular modular endoprosthesis fixed with polymethylmethacrylate cement in the medullary space of the mandible has been introduced in previous studies. However, the internal parts of these devices have been found to be prone to loosening and wound dehiscence. The current study introduces a newly designed bioactive-coated cementless modular mandibular endoprosthesis, which was used for reconstruction in Macaca fascicularis. The devices were coated with hydroxyapatite (HA) and hydroxyapatite/bioglass (HA/BG) and implanted in unilateral mandibular segmental defects in nine monkeys for 6 months. Biomechanical testing found the reconstructed mandible to have a mean stiffness value of 110.43 N/mm. Histologically, there were both fibrous capsule and woven bone around the device body, and histomorphology analysis showed 64.17% bone contact to device stem surface. The percentage bone volume calculated from micro-computed tomography analysis around the stem surface was found to be superior to that reported in previous studies of cemented mandibular endoprostheses. Intermodular connection screw loosening has also been resolved with the dovetail interconnection. In conclusion, the current bioactive-coated cementless mandibular endoprosthesis is feasible for use in mandibular segmental reconstruction. However, insufficient load-bearing capability and a high rate of intraoral wound dehiscence were found in the majority of the study animals. Further device modifications and improvements in the surgical technique need to be addressed in future studies.
机译:在先前的研究中已经介绍了在下颌骨的髓腔中固定有聚甲基丙烯酸甲酯水泥的钛下颌模块化内假体。然而,已经发现这些装置的内部部件容易松动和伤口裂开。当前的研究介绍了一种新设计的生物活性涂层的非骨水泥模块化下颌骨假体,该假体用于在猕猴中进行重建。装置涂有羟基磷灰石(HA)和羟基磷灰石/生物玻璃(HA / BG),并植入9只猴子的单侧下颌节段缺损中,为期6个月。生物力学测试发现,重建的下颌骨的平均刚度值为110.43 N / mm。组织学上,装置主体周围既有纤维囊,也有编织骨,组织形态学分析显示64.17%的骨与装置茎表面接触。通过显微计算机断层扫描分析计算出的茎表面周围的骨体积百分率要优于先前的骨水泥型下颌假体研究报告的百分率。燕尾形互连也解决了模块间连接螺钉松动的问题。总之,当前的生物活性涂层的非骨水泥下颌假体可用于下颌节段重建。然而,在大多数研究动物中发现了不足的承重能力和较高的口内伤口裂开率。将来的研究中需要解决进一步的设备修改和手术技术的改进。

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