首页> 外文期刊>Journal of dentistry >Real-time measurement of dentinal fluid flow during amalgam and composite restoration.
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Real-time measurement of dentinal fluid flow during amalgam and composite restoration.

机译:汞合金和复合材料修复过程中牙本质液流量的实时测量。

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摘要

OBJECTIVES: This study examined changes in the dentinal fluid flow (DFF) during restorative procedures and compared permeability after restoration among restorative materials and adhesives. METHODS: A class 1 cavity was prepared and restored with either amalgam (Bestaloy), or composite (Z-250) with one of two etch-and-rinse adhesives (Scotchbond MultiPurpose: MP and Single Bond 2: SB) or one of two self-etch adhesives (Clearfil SE Bond: CE and Easy Bond: EB) on an extracted human third molar which was connected to a sub-nanoliter fluid flow measuring device (NFMD) under 20 cm water pressure. DFF was measured from the intact tooth state through the restoration procedures to 30 min after restoration, and re-measured at 3 and 7 days post-restoration. RESULTS: Inward flow during cavity preparation was followed by outward flow after preparation. In amalgam restoration, the outward flow changed into an inward flow during amalgam filling, which was followed by a slight outward flow after finishing. In composite restoration, MP and SB showed an inward flow and outward flow for the rinsing and drying steps, respectively. Application of a hydrophobic bonding resin in the MP and CE systems caused a decrease in the flow rate. Air-drying of solvent for the CE and EB systems caused a sudden outward flow, whereas light-curing of the adhesive and composite caused an abrupt inward flow. CONCLUSIONS: Each restorative step clearly changed the direction and the rate of the DFF during restoration, which could be well identified with NFMD.
机译:目的:这项研究检查了修复过程中牙本质液流动(DFF)的变化,并比较了修复材料和粘合剂在修复后的渗透性。方法:准备一个1类腔体,并用汞合金(Bestaloy)或复合材料(Z-250)与两种蚀刻和漂洗粘合剂(Scotchbond MultiPurpose:MP和Single Bond 2:SB)之一或两种修复提取的人类第三臼齿上的自蚀刻粘合剂(Clearfil SE Bond:CE和Easy Bond:EB),在30厘米水压下将其连接至亚纳升以下的流体流量测量装置(NFMD)。从完整的牙齿状态开始通过恢复程序测量牙齿的DFF,直至恢复后30分钟,然后在恢复后3天和7天重新测量DFF。结果:腔制备过程中向内流动,制备后向外流动。在汞齐修复中,在汞齐填充过程中外流变为内流,然后在精加工后略有外流。在复合修复中,MP和SB在冲洗和干燥步骤中分别显示出向内流动和向外流动。在MP和CE系统中使用疏水性粘结树脂会导致流速降低。 CE和EB系统的溶剂风干导致突然的向外流动,而​​粘合剂和复合材料的光固化则导致突然的向内流动。结论:每个修复步骤均明显改变了修复过程中DFF的方向和发生率,NFMD可以很好地识别出DFF的方向和速率。

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