Lee Yong-Keun, Pinzon Lilliam M, O'Keefe Kathy L, Powers John M
Department of Dental Biomaterials Science, Dental Research Institute, College of Dentistry, Seoul National University, 28 Yeongeon-dong, Jongro-gu, Seoul, Korea.
Am J Dent. 2006 Feb;19(1):23-7.
To determine the effect of filler addition on two total-etch, single component bonding systems on the bond strength, displacement at debonding, stiffness of debonding and energy absorbed to debonding of resin composites to human dentin.
Two dentin bonding systems with no-filler (OS and SB) and filler-added (OSP and SBP) versions were studied. The dentin surfaces of human teeth were exposed with 600-grit SiC. TPH Spectrum A2 was used to bond to the dentin surfaces in the form of a truncated cone, 3 mm in diameter at the bonding surfaces and 5 mm in diameter at the base. Bonded specimens were stored in distilled water at 37 degrees C for 24 hours. They were then debonded in tension with a universal testing machine at a cross-head speed of 0.5 mm/minute. Displacement at debonding, stiffness and energy to debonding were calculated based on the stress-displacement curve.
Bond strength, displacement at debonding and energy to debonding (measured and elastic) were influenced by the brand of the adhesive (OS/OSP vs. SB/SBP), but were not influenced by the filler addition based on two-way analysis of variance. Bond strength was in the range of 24.4-30.1 MPa, and there were significant differences between the bond strengths of OS and SB. Displacement and energy to debonding (measured and elastic) were different between the adhesives. Bond strength, bond stiffness and energy to debonding (measured) showed significant correlations.
确定添加填料对两种全酸蚀单组分粘结系统与人类牙本质粘结时树脂复合材料的粘结强度、脱粘位移、脱粘刚度及脱粘吸收能量的影响。
研究了两种无填料(OS和SB)及添加填料(OSP和SBP)的牙本质粘结系统。用人造600目碳化硅砂纸打磨暴露人类牙齿的牙本质表面。使用TPH Spectrum A2以截头圆锥体形式粘结至牙本质表面,粘结面直径3mm,底部直径5mm。粘结后的标本在37℃蒸馏水中储存24小时。然后用万能试验机以0.5mm/分钟的十字头速度进行拉伸脱粘。根据应力-位移曲线计算脱粘位移、刚度和脱粘能量。
基于双向方差分析,粘结强度、脱粘位移和脱粘能量(测量值和弹性值)受粘结剂品牌(OS/OSP与SB/SBP)影响,但不受填料添加的影响。粘结强度在24.4-30.1MPa范围内,OS和SB的粘结强度之间存在显著差异。不同粘结剂的脱粘位移和脱粘能量(测量值和弹性值)不同。粘结强度、粘结刚度和脱粘能量(测量值)显示出显著相关性。