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首页> 外文期刊>The Journal of Prosthetic Dentistry >Verification jig for implant-supported prostheses: A comparison of standard impressions with verification jigs made of different materials.
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Verification jig for implant-supported prostheses: A comparison of standard impressions with verification jigs made of different materials.

机译:用于植入物支撑的假体的验证夹具:将标准印模与由不同材料制成的验证夹具进行比较。

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STATEMENT OF PROBLEM: Implant verification jigs are routinely used during the fabrication of implant-supported prostheses. The dimensional accuracy of these jigs is unknown. PURPOSE: The purposes of this study were to (1) compare the dimensional accuracy of verification jigs with that of conventional impression procedures and (2) measure the dimensional accuracy of 3 resin materials used to fabricate verification jigs. MATERIALS AND METHODS: Thirty verification jigs and 20 impressions were made of 3 externally hexed Steri-Oss implants in a master stone base according to the following groups (n = 10 per group): (Group 1) Jig: GC pattern resin; (Group 2) Jig: Duralay resin; (Group 3) Jig: Triad gel resin; (Group 4) Impression: closed-tray impression copings; and (Group 5) Impression: open-tray impression copings. A stone base was fabricated for each experimental jig and impression. Master stone base and experimental stone bases were measured with the following methods: X and Y coordinates of each implantcenter were obtained with a traveling microscope by averaging the X and Y coordinates of the implant external hex corners. The origins of the coordinates during measurement of each base were arbitrary. Distances between implant center points were calculated by use of the Pythagorean theorem. Vertical measurements (Z-plane) were obtained with a digital caliper at the 2 terminal-implant locations. Interimplant distances and vertical measurements were subtracted from those of the master base, and the resultant distortion values were analyzed with analysis of variance and Tukey Studentized range tests. Statistical significance was set at P<.05. RESULTS: Verification jigs were not significantly more accurate than standard impression procedures. Open-tray impressions showed a significantly greater vertical distortion (Z-R location: 262 +/- 158 microm; P=.0001; Z-L location 333 +/- 189; P=.0001) compared with the other groups. Triad gel jigs showed a significantly greater distortion in one interimplant distance (C-L) than closed-tray impressions (P=.04), whereas Duralay jigs exhibited significant greater distortion than closed-tray and open-tray impressions in the interimplant distance R-C (P=.006). Although not significantly different from other groups, the closed-tray group showed the lowest mean distortion values in all measurements. CONCLUSION: Within the limitations of this study, the accuracy provided by verification jigs was not significantly superior to standard impression procedures. The results suggest that jig fabrication does not improve the dimensional accuracy of stone casts. Open-tray impressions showed a significantly greater inaccuracy in the vertical plane.
机译:问题陈述:在制造植入物支撑的假体期间,通常使用植入物验证夹具。这些夹具的尺寸精度未知。目的:本研究的目的是(1)将验证夹具的尺寸精度与常规压印程序的尺寸精度进行比较,以及(2)测量用于制造验证夹具的三种树脂材料的尺寸精度。材料与方法:根据以下组(每组n = 10),由3个外部六角形Steri-Oss植入物制作了30个验证夹具和20个压痕,每组n = 10。 (第2组)夹具:Duralay树脂; (第3组)夹具:Triad凝胶树脂。 (第4组)印象:闭盘印象应对; (第5组)印象:开放式托盘印象应对方法。为每个实验夹具和印模制作了一个石材底座。用以下方法测量主石基和实验石基:用行进显微镜通过对植入物外部六角角的X和Y坐标求平均值,获得每个植入中心的X和Y坐标。在测量每个基准时坐标的原点是任意的。通过使用勾股定理计算植入物中心点之间的距离。使用数字卡尺在两个终端植入物位置获得垂直测量值(Z平面)。从主底座上减去种植间距离和垂直测量值,然后使用方差分析和Tukey Studentized距离测试分析所得的变形值。统计显着性设定为P <.05。结果:验证夹具没有比标准印模程序准确得多。与其他组相比,开放式托盘印象显示垂直变形明显更大(Z-R位置:262 +/- 158微米; P = .0001; Z-L位置333 +/- 189; P = .0001)。三合一凝胶夹具在一个种植体间距离(CL)中的变形明显大于闭合托盘印象(P = .04),而Duralay夹具在种植体间距离RC中显示出比闭合托盘和开放式托盘印象更大的变形(P = .006)。尽管与其他组没有显着差异,但封闭式托盘组在所有测量中均显示出最低的平均失真值。结论:在本研究的范围内,验证夹具所提供的准确性并未明显优于标准印模程序。结果表明夹具制造并不能提高石材铸件的尺寸精度。开放式托盘印象在垂直平面上显示出更大的不准确性。

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