Matsuoka Takashi, Nakano Tamaki, Yamaguchi Satoshi, Ono Shinji, Watanabe Shota, Sato Takumi, Yatani Hirofumi
Department of Fixed Prosthodontics, Osaka University Graduate School of Dentistry, Osaka 565-0871, Japan.
Department of Biomaterials Science, Osaka University Graduate School of Dentistry, Osaka 565-0871, Japan.
Materials (Basel). 2021 May 6;14(9):2421. doi: 10.3390/ma14092421.
The attainment of a good aesthetic outcome in dental implant treatment requires inter-implant papilla reconstruction, which is very difficult to perform. Maintenance of the inter-implant bone is essential for maintenance of the inter-implant papilla. The aim of this study was to investigate the mechanical influences of the implant-abutment connection type and inter-implant distance on the inter-implant bone by using three-dimensional finite element analysis. Three computer-aided design models of two-piece implants were designed: external connection (EC), internal connection (IC), and conical connection (CC). In each model, two identical implants were placed with inter-implant distances of 3.0, 2.5, and 2.0 mm. The maximum principal stress and microgap were evaluated. The stress values of the inter-implant bone decreased in the following order: IC, EC, and CC. The microgap decreased in the following order: EC, IC, and CC. Regardless of the type of implant-abutment connection, the stress of the inter-implant bone increased as the inter-implant distance decreased. The microgap barely changed as the inter-implant distance decreased. A CC implant is a mechanically advantageous implant-abutment connection type for maintenance of the inter-implant bone. With an inter-implant distance of less than 3.0 mm, use of a CC implant might suppress absorption of the inter-implant bone.
在牙种植治疗中获得良好的美学效果需要进行种植体间乳头重建,而这很难实现。维持种植体间骨组织对于维持种植体间乳头至关重要。本研究的目的是通过三维有限元分析,研究种植体-基台连接类型和种植体间距离对种植体间骨组织的力学影响。设计了三件式种植体的三种计算机辅助设计模型:外部连接(EC)、内部连接(IC)和锥形连接(CC)。在每个模型中,植入两个相同的种植体,种植体间距离分别为3.0、2.5和2.0 mm。评估最大主应力和微间隙。种植体间骨组织的应力值按以下顺序降低:IC、EC、CC。微间隙按以下顺序减小:EC、IC、CC。无论种植体-基台连接类型如何,种植体间距离减小,种植体间骨组织的应力都会增加。随着种植体间距离减小,微间隙几乎没有变化。对于维持种植体间骨组织而言,CC种植体是一种在力学上具有优势的种植体-基台连接类型。当种植体间距离小于3.0 mm时,使用CC种植体可能会抑制种植体间骨组织的吸收。