Matsumura Hideo, Mori Shuichi, Tanoue Naomi
Department of Fixed Prosthodontics, Nihon University School of Dentistry, Tokyo, Japan.
J Oral Sci. 2008 Mar;50(1):113-6. doi: 10.2334/josnusd.50.113.
The aim of the present study was to design and fabricate a maxillary posterior fixed partial denture (FPD) made of a type 4 gold alloy and an indirect composite. Unlike the conventional framework design of a resin veneered restoration, cut-back was extended approximately 1/4 to 1/3 width in the occlusal table of the buccal cusp. Multiple retentive beads 150-200 mum in diameter were placed on the metal surface to be veneered. The gold alloy was cast in a cristobalite mold using a centrifugal casting machine. The cut surface with the retentive beads was air-abraded with alumina, and a priming agent (Alloy Primer) that contained triazine dithione monomer (VTD) was applied. A tooth-colored veneer was then fabricated with a highly loaded light- and heat-cured composite material (Estenia). This design and procedure can be applied as a standardized laboratory technique for fabrication of maxillary posterior restorations and FPDs.
本研究的目的是设计并制作一种由4型金合金和间接复合材料制成的上颌后牙固定局部义齿(FPD)。与传统的树脂贴面修复体的支架设计不同,在颊尖的咬合面台处,缩减量延伸至大约1/4至1/3宽度。在待贴面的金属表面放置多个直径为150 - 200微米的固位珠。使用离心铸造机将金合金铸入方石英模具中。带有固位珠的切割面用氧化铝进行空气喷砂处理,并涂抹含有三嗪二硫酮单体(VTD)的底涂剂(合金底涂剂)。然后用高填充量的光固化和热固化复合材料(Estenia)制作牙齿颜色的贴面。这种设计和程序可作为制作上颌后牙修复体和固定局部义齿的标准化实验室技术应用。