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首页> 外文期刊>The Journal of Prosthetic Dentistry >A comparison of the porcelain fracture resistance of screw-retained and cement-retained implant-supported metal-ceramic crowns.
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A comparison of the porcelain fracture resistance of screw-retained and cement-retained implant-supported metal-ceramic crowns.

机译:螺钉固定和水泥固定的植入物支撑的金属陶瓷牙冠的瓷质抗断裂性比较。

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摘要

STATEMENT OF PROBLEM: The presence of a screw opening on the occlusal surface of implant-supported metal-ceramic crowns may decrease the porcelain fracture resistance and shorten the longevity of the crown. PURPOSE: The purpose of this study was to compare the porcelain fracture resistance between screw-retained and cement-retained implant-supported metal-ceramic crowns and to assess whether narrowing the occlusal table or offsetting the screw-access opening affects fracture resistance. MATERIAL AND METHODS: Forty standardized maxillary premolar metal copings were fabricated with a Pd-Ga alloy (Protocol) on an implant abutment. Copings were divided into 4 groups (n=10): Group 1 (Screw-retained; occlusal surface buccolingual width=5 mm), screw access opening placed in the center of the occlusal surface; Group 2 (Screw-retained; occlusal surface buccolingual width=5 mm), screw access opening positioned 1 mm offset from the center of the occlusal surface toward the buccal cusp; Group 3 (Cement-retained; occlusal surface buccolingual width=5 mm), copings were not altered; and Group 4 (Cement-retained; occlusal surface buccolingual width=4 mm), copings designed to have a reduced occlusal surface width. All castings were finished with aluminum oxide stones and airborne-particle abraded. Two layers of opaque and dentin porcelain were applied, respectively, on all specimens, which were then glazed. The crown specimens were positioned in a custom testing apparatus and vertically loaded on the middle of the occlusal surface with a universal testing machine at a crosshead speed of 0.5 mm/min until fracture. Mean values of load at fracture (Kgf) were calculated in each group and compared with a 1-way analysis of variance and Tukey's Studentized test (alpha=.05). RESULTS: Mean values of loads required to fracture the crowns were as follow: Group 1: 95.01+/-46.6 Kgf; Group 2: 108.61+/-57.9 Kgf; Group 3: 390.94+/-151.3 Kgf; Group 4: 380.04+/-211.8 Kgf. Groups 1 and 2 required a significantly lower force to fracture the crowns compared with Groups 3 and 4 (P=.0001). Comparing Group 1 with 2 (P=.9) and Groups 3 with 4 (P=.6), no significant differences were noted. CONCLUSIONS: Screw-retained implant-supported metal-ceramic crowns demonstrated a significantly lower porcelain fracture resistance than cement-retained crowns. Placing the screw access opening 1 mm offset from the center of the occlusal surface did not result in lower fracture resistance. Cement-retained crowns with 4- or 5-mm buccolingual width of the occlusal surface showed similar porcelain fracture resistance.
机译:问题陈述:植入物支撑的金属陶瓷牙冠的咬合面上存在螺钉开口可能会降低瓷器的抗断裂性并缩短牙冠的寿命。目的:本研究的目的是比较螺钉固位和水泥固位的种植体支撑的金属陶瓷冠之间的瓷断裂强度,并评估变窄的咬合台或偏移螺钉通道开口是否会影响断裂强度。材料与方法:在种植体基台上用Pd-Ga合金(协议)制造了40个标准化的上颌前磨牙金属顶盖。将顶盖分为4组(n = 10):第1组(螺钉固位;咬合面颊舌宽度= 5mm),螺钉进入口置于咬合面中心。第2组(螺钉固定;咬合面颊舌宽度= 5 mm),螺钉进入口距咬合面中心向颊尖偏移1 mm。第3组(保留水泥;咬合面颊舌宽度= 5 mm),顶盖未改变。和第4组(固位的;咬合面颊舌宽度= 4mm),设计的牙套具有减小的咬合面宽度。所有铸件均用氧化铝石精加工并磨掉了空气中的颗粒。在所有样品上分别涂上两层不透明瓷和牙本质瓷,然后上光。将冠状样品放置在定制的测试设备中,并使用万能测试机以0.5 mm / min的十字头速度垂直加载到咬合面的中间,直到断裂。计算每组的断裂载荷平均值(Kgf),并将其与方差的1向分析和Tukey的Studentized检验(alpha = .05)进行比较。结果:断裂牙冠所需的平均载荷值如下:组1:95.01 +/- 46.6 Kgf;第2组:108.61 +/- 57.9 Kgf;第3组:390.94 +/- 151.3 Kgf;第4组:380.04 +/- 211.8 Kgf。与第3组和第4组相比,第1和2组需要显着更低的力来使牙冠断裂(P = .0001)。比较第1组与第2组(P = .9)和第3组与第4组(P = .6),没有发现显着差异。结论:用螺丝钉固定的植入物支撑的金属陶瓷牙冠比用水泥固定的牙冠具有更低的耐瓷断裂性。将螺钉通道开口放置在距咬合面中心1 mm处不会导致较低的抗断裂性。咬合面颊舌宽度为4或5毫米的固位牙冠具有相似的瓷质抗断裂性。

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