材料科学
植入
辐照
钛
成像体模
软组织
生物医学工程
热释光
牙种植体
核医学
医学
光电子学
发光
外科
核物理学
冶金
物理
作者
Thomas Binger,H. Seifert,G Blaß,K-H Bormann,M. Rücker
标识
DOI:10.1259/dmfr/29131739
摘要
The aim of this study was to determine the radiation doses in mucosa and bone close to the surface of different dental implant materials.Radiation dose was measured at the interface of bone or soft tissue and various implant materials for 6 MV photons generated by a medical linear accelerator using a phantom and ultrathin thermoluminescent dosemeters.Increasing thickness of implant materials resulted in a dose decrease in bone immediately behind the implants. Directly in front of titanium implants, dose increases of 18.2% and 30.4% were found in bone and soft tissue, respectively, independent of implant thickness and surface structure (polished/plasma coated). Even a titanium coating with 70 microm hydroxyapatite did not affect the scattering dose. In contrast, for aluminium oxide ceramics, a scatter-induced notable dose increase could not be assessed.During irradiation with high-energy photons, an implant-induced dose enhancement could be reduced in bone using the technique of multiple fields and in soft tissue using ceramic abutments.
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