角度种植体中印模技术和材料准确性的数字化评估
Digital evaluation of the accuracy of impression techniques and materials in angulated implants.
作者信息
Kurtulmus-Yilmaz Sevcan, Ozan Oguz, Ozcelik Tuncer Burak, Yagiz Ayberk
机构信息
Department of Prosthodontics, Faculty of Dentistry, Near East University, Mersin 10, Turkey.
Department of Prosthodontics, Faculty of Dentistry, Near East University, Mersin 10, Turkey.
出版信息
J Dent. 2014 Dec;42(12):1551-9. doi: 10.1016/j.jdent.2014.10.008. Epub 2014 Oct 23.
OBJECTIVES
The aim of this study was to investigate the accuracy of 2 different impression techniques and 3 different impression materials in models simulating parallel and angulated implants.
METHODS
Three master models simulating partial edentulous mandible with 2 implants at the sites of second premolars (parallel) and second molars with different angulations (parallel, 10° or 20° angulated) were fabricated. Two different impression techniques [splinted direct (D), indirect (I)] and 3 different monophase impression materials [polyether (PE), vinyl polysiloxane (VPS), vinyl polyether silicone (VPES)] were used for each master model and a total of 180 impressions were made (n=10). Master model and casts were scanned by a modified laser scanner and data were transferred to VRMesh software. Master model and duplicate cast scans were digitally aligned observing the superposition of anatomic markers. Angular and coronal deviations between master and duplicated copings were calculated and data were statistically analyzed.
RESULTS
Mean angular and coronal deviations were in a range of 0.205-0.359° and 22.56-33.33μm, respectively. Statistical analysis revealed that the angulation of implant affected both coronal and angular deviations of the impression copings (P<0.05). According to statistical analyses, for parallel implants, the accuracy of impression materials and techniques were ranging as VPS-D=PE-D>VPS-I=PE-I>VPES-D>VPES-I from most accurate to the least. For 10° and 20° angulated implants the most accurate material and technique was VPS-D whereas the least accurate combination was VPES-I (P<0.05).
CONCLUSION
Angulation, impression technique and material were found to be effective on the accuracy of implant impressions.
CLINICAL SIGNIFICANCE
Clinicians may prefer VPS impression material and splinted direct technique for impressions of both parallel and up to 20° angulated implants.
目的
本研究旨在调查两种不同印模技术和三种不同印模材料在模拟平行和成角种植体的模型中的准确性。
方法
制作三个主模型,模拟部分无牙下颌骨,在第二前磨牙部位(平行)和第二磨牙部位有不同角度(平行、10°或20°成角)的两颗种植体。每种主模型使用两种不同的印模技术[夹板直接法(D)、间接法(I)]和三种不同的单相印模材料[聚醚(PE)、乙烯基聚硅氧烷(VPS)、乙烯基聚醚硅酮(VPES)],共制作180个印模(n = 10)。用改良激光扫描仪对主模型和模型进行扫描,并将数据传输到VRMesh软件。通过观察解剖标记的叠加,将主模型和复制模型的扫描进行数字对齐。计算主模型和复制基台之间的角度和冠向偏差,并对数据进行统计分析。
结果
平均角度偏差和冠向偏差分别在0.205 - 0.359°和22.56 - 33.33μm范围内。统计分析表明,种植体的角度影响印模基台的冠向和角度偏差(P < 0.05)。根据统计分析,对于平行种植体,印模材料和技术的准确性从最高到最低依次为VPS - D = PE - D > VPS - I = PE - I > VPES - D > VPES - I。对于10°和成20°角的种植体,最准确的材料和技术是VPS - D,而最不准确的组合是VPES - I(P < 0.05)。
结论
发现角度、印模技术和材料对种植体印模的准确性有影响。
临床意义
临床医生在对平行和角度达20°的种植体进行印模时,可能更倾向于使用VPS印模材料和夹板直接法。