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犬用骨移植的牙种植体延伸的放射分析。

Radiographic analysis of dental implant extensions using bone grafts on dogs.

机构信息

Electrical Engineering Faculty, Federal University of Uberlandia, Uberlândia, Minas Gerais, Brazil.

Veterinary Medicine Faculty, Federal University of Uberlandia, Uberlândia, Minas Gerais, Brazil.

出版信息

Clin Implant Dent Relat Res. 2018 Apr;20(2):222-228. doi: 10.1111/cid.12581. Epub 2018 Jan 10.

Abstract

BACKGROUND

Despite the wide use of dental implants they can bring inconveniences, as the moment one reaches osseointegration, these can no longer be extended. Therefore, if a problem occurs regarding its positioning, the options open are substitution or burial of the implant. With implant substitution, there exists the risk of local bone loss and/or future loss of the new implant.

PURPOSE

This study proposes a new device (implant extender) for extending the dental implant. The feasibility of this technique is verified through installing dental implant extensions onto the humerus bone of dogs with autogenous bone grafts.

MATERIALS AND METHODS

Implants of 3.3 mm in diameter by 6 mm in length and implant extensions with a 3.3 mm diameter and 2.2 mm length were installed onto humerus of 4 healthy dogs, using an autogenous bone graft in a block made from ilium. The biomechanical percussion tests were performed on the implant extensions and then the implant-extension sets were removed for radiographic analysis.

RESULTS

In the biomechanical percussion, none of the extensions present clinical mobility. As for the x-rays, these were analyzed by 20 professionals, who concluded that there was a 100% success rate with bone formation around the implants, 74.1% for bone neoformation of the implant extensions, and 80.1% referring to the adaptation of the implant extension.

DISCUSSION AND CONCLUSION

Bone formation occurred in every installed dental implant. In most cases, there occurred bone neoformation of the extensions and adaptation of the extension/implant set, according to the x-ray analysis performed by the evaluators. An absence of clinical mobility in the extensions was also observed. Although the results were promising, these techniques still need to be researched in humans, as an alternative for reducing elongated prosthetic crowns or poorly installed implants, as well as the modification of the type of implants among other applications.

摘要

背景

尽管种植牙的应用已经非常广泛,但它们也会带来一些不便,因为一旦达到骨整合,种植体就无法再延长。因此,如果种植体的位置出现问题,可供选择的方案只有替换或埋藏种植体。而种植体替换存在局部骨丢失和/或新种植体未来丢失的风险。

目的

本研究提出了一种用于延长种植牙的新型装置(种植体延长器)。通过在带有自体骨移植物的犬肱骨上安装种植牙延长器,验证了该技术的可行性。

材料和方法

将直径 3.3 毫米、长 6 毫米的种植体和直径 3.3 毫米、长 2.2 毫米的种植体延长器安装在 4 只健康犬的肱骨上,使用取自髂骨的块状自体骨移植物。对种植体延长器进行生物力学敲击测试,然后取出种植体-延长器组合进行放射学分析。

结果

在生物力学敲击测试中,所有延长器均无临床活动性。在 X 光片上,由 20 名专业人员进行分析,结果显示种植体周围的骨形成成功率为 100%,种植体延长器的骨新形成率为 74.1%,种植体延长器的适应性为 80.1%。

讨论和结论

每个安装的种植牙都发生了骨形成。在大多数情况下,根据评估者进行的 X 光分析,延长器发生了骨新形成,并且延长器/种植体组合具有适应性。延长器也观察到无临床活动性。尽管结果很有希望,但这些技术仍需要在人体中进行研究,作为减少伸长的修复体冠或安装不当的种植体的替代方案,以及作为修改种植体类型等其他应用的替代方案。

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