Assistant Professor, Section of Prosthodontics, Department of Biomedical and Neuromotor Science, Alma Mater Studiorum University of Bologna, Bologna, Italy.
Tutor of Dental Sciences, Aldent University, Tirana, Albania.
J Prosthet Dent. 2021 Dec;126(6):763-771. doi: 10.1016/j.prosdent.2020.10.017. Epub 2021 Jan 30.
New polyvinyl siloxane (PVS) materials with enhanced properties have been developed to improve and facilitate implant impression techniques. However, studies on their accuracy are lacking.
The purpose of this in vitro study was to determine the accuracy and precision of implant impressions made with some recently introduced materials on a simulated patient requiring an all-on-4 implant-supported prosthesis. Well-established polyether materials were also evaluated as a comparison. The variables considered were material type, consistency, splinting or not splinting techniques, and implant angulation.
A reference master model was made by inserting 4 implants at angles of 0, 5, and 10 degrees. Eighty impressions were made at 37 °C in wet conditions by using a standardized technique. Eight groups (n=10) were created using monophasic, single-viscosity materials (Hydrorise Implant Medium, HIM-ns; Hydrorise Implant Medium, HIM; Honigum Mono, HM; Impregum, IMP), and 2-viscosity materials (Hydrorise Implant Heavy+Light-ns, HIH+L-ns; Hydrorise Implant Heavy+Light, HIH+L; Honigum Heavy+Light, HH+L; and Permadyne and Garant [Heavy+Light, PeH+L]). Hydrorise materials were used with splinting and not splinting (ns) techniques. The reference points located on the connecting platforms of the transfer copings (TCP) were compared with the same points on the implant connecting platforms (ICP) located in the reference model. The accuracy and precision of the impressions were determined as linear 3D errors and standard deviation between each TCP-ICP couple by using an optical coordinate measuring machine (OCMM).
PVS materials were generally better than polyether materials, with Hydrorise materials (HIM and HIH+L) showing significantly better accuracy and precision (30.9 ±14.4 μm and 28.7 ±15.5 μm, respectively) than IMP and PeH+L polyethers (44.2 ±16 μm and 43.8 ±17.6 μm, respectively; P<.001). Honigum materials were statistically similar to Hydrorise materials (P=.765). The values shown by Hydrorise nonsplinted groups (HIH+L-ns and HIM-ns) were not statistically different from those of the splinted polyether impressions (P=.386). The viscosities (monophasic or heavy+light) had no effect on accuracy, but monophasic material positively influenced precision (HIM and HIH+L, P=.001). No correlation was found between implant angulation and accuracy (multilevel analysis and Kendall rank correlation coefficient=-0.065; P=.133).
Recently introduced materials designed for implant impressions showed significantly higher accuracy and precision; even with the unfavorable nonsplinting technique, the new materials performed similarly to, or better than, polyether materials. Although the transfer coping splinting technique generally improved the accuracy and precision of Hydrorise materials, the effect was significant only within HIH+L groups.
为改善和简化种植体印模技术,已开发出具有增强性能的新型聚硅氧烷(PVS)材料。然而,关于其准确性的研究还很缺乏。
本体外研究的目的是确定在需要全口 4 种植体支持义齿的模拟患者中,使用一些新引入的材料进行种植体印模的准确性和精密度。还评估了经过验证的聚醚材料作为比较。考虑的变量包括材料类型、稠度、是否使用夹板技术以及种植体角度。
通过在 0、5 和 10 度的角度插入 4 个种植体来制作参考主模型。在 37°C 的湿条件下,通过标准化技术进行了 80 次印模。使用单相位、单粘度材料(Hydrorise Implant Medium,HIM-ns;Hydrorise Implant Medium,HIM;Honigum Mono,HM;Impregum,IMP)和 2 粘度材料(Hydrorise Implant Heavy+Light-ns,HIH+L-ns;Hydrorise Implant Heavy+Light,HIH+L;Honigum Heavy+Light,HH+L;Permadyne 和 Garant [Heavy+Light,PeH+L])创建了 8 组(n=10)。使用 Hydrorise 材料时,采用了夹板和非夹板(ns)技术。将位于转移夹(TCP)连接平台上的参考点与位于参考模型中的种植体连接平台(ICP)上的相同点进行比较。通过光学坐标测量机(OCMM)确定每个 TCP-ICP 对的印模的准确性和精密度作为线性 3D 误差和标准偏差。
PVS 材料通常优于聚醚材料,Hydrorise 材料(HIM 和 HIH+L)的准确性和精密度(分别为 30.9±14.4μm 和 28.7±15.5μm)明显优于 IMP 和 PeH+L 聚醚材料(分别为 44.2±16μm 和 43.8±17.6μm;P<.001)。Honigum 材料在统计学上与 Hydrorise 材料相似(P=.765)。Hydrorise 非夹板组(HIH+L-ns 和 HIM-ns)的测量值与夹板聚醚印模的测量值无统计学差异(P=.386)。粘度(单相位或重质+轻质)对准确性没有影响,但单相位材料对精密度有积极影响(HIM 和 HIH+L,P=.001)。种植体角度与准确性之间没有相关性(多级分析和 Kendall 秩相关系数=-0.065;P=.133)。
专为种植体印模设计的新型材料具有明显更高的准确性和精密度;即使采用不利的非夹板技术,新材料的性能与聚醚材料相似,或者优于聚醚材料。虽然转移夹夹板技术通常可以提高 Hydrorise 材料的准确性和精密度,但在 HIH+L 组中,这种效果更为显著。