Attin T, Buchalla W, Kielbassa A M, Helwig E
Department of Operative Dentistry, University Clinic of Dentistry, Freiburg, Germany.
Dent Mater. 1995 Nov;11(6):359-62. doi: 10.1016/0109-5641(95)80035-2.
The objective of the study was to evaluate initial curing shrinkage and volumetric change during water storage of six resin-modified glass ionomer cements (Dyract, DeTrey Dentsply; Fuji II LC, GC Dental Int.; Ionosit Fil, DMG; VariGlass VLC, DeTrey Dentsply; Vitremer, 3M Dental Products; Photac-Fil, ESPE), a hybrid composite (blend-a-lux, Blendax) and a chemical-cured glass ionomer cement (ChemFil Superior, DeTrey Dentsply).
The curing shrinkage was determined 5 min and 24 h after polymerization and mixing, respectively. Volumetric changes were examined after 14 d and 28 d water storage. Curing shrinkage and volumetric changes were evaluated using the hydrostatic principle. In addition, the total water content of the materials was measured after 28 d water storage.
Curing shrinkage of most of the resin-modified glass ionomers was greater than the hybrid composite and the chemical-cured glass ionomer cement. After a 28 d water storage, the resin-modified glass ionomers showed volumetric expansion and the chemical-cured glass ionomer showed volumetric loss. All of the examined glass ionomer materials had a higher total water content than the composite. SIGNIFICANCE. The large curing shrinkage of the resin-modified glass ionomer materials measured in this in vitro study could affect the marginal integrity of glass ionomer restorations.
本研究的目的是评估六种树脂改性玻璃离子水门汀(Dyract,迪瑞·登士柏;Fuji II LC,GC牙科国际公司;Ionosit Fil,DMG;VariGlass VLC,迪瑞·登士柏;Vitremer,3M牙科产品公司;Photac - Fil,ESPE)、一种混合复合材料(blend - a - lux,Blendax)和一种化学固化玻璃离子水门汀(ChemFil Superior,迪瑞·登士柏)在初始固化收缩以及储水期间的体积变化。
分别在聚合和混合后5分钟及24小时测定固化收缩。在储水14天和28天后检查体积变化。使用流体静力学原理评估固化收缩和体积变化。此外,在储水28天后测量材料的总含水量。
大多数树脂改性玻璃离子水门汀的固化收缩大于混合复合材料和化学固化玻璃离子水门汀。储水28天后,树脂改性玻璃离子水门汀显示体积膨胀,化学固化玻璃离子水门汀显示体积减小。所有检测的玻璃离子材料的总含水量均高于复合材料。意义:在这项体外研究中测得的树脂改性玻璃离子材料的大固化收缩可能会影响玻璃离子修复体的边缘完整性。