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采用直接数字工作流程制作上颌可摘局部义齿支架的适应性:一项随机交叉临床试验。

Adaptation of maxillary removable partial denture frameworks fabricated with a direct digital workflow: A randomized crossover clinical trial.

作者信息

Gan Ning, Yao Mengxin, Ruan Yaye, Wang Chengyi, Xiong Yaoyang, Jiao Ting

机构信息

Department of Prosthodontics, Shanghai Ninth People's Hospital, Shanghai Jiao Tong University School of Medicine, Shanghai, 200011, China; College of Stomatology, Shanghai Jiao Tong University, National Center for Stomatology, National Clinical Research Center for Oral Diseases, Shanghai Key Laboratory of Stomatology, Shanghai Research Institute of Stomatology, Shanghai, 200011, China.

Department of Prosthodontics, Shanghai Ninth People's Hospital, Shanghai Jiao Tong University School of Medicine, Shanghai, 200011, China; Shanghai Jing'an Dental Clinic, Shanghai, 200040, China.

出版信息

J Dent. 2025 Mar;154:105588. doi: 10.1016/j.jdent.2025.105588. Epub 2025 Jan 27.

Abstract

OBJECTIVES

To compare the adaptation of maxillary removable partial denture (RPD) frameworks fabricated through direct digital workflows with that of traditional cast frameworks and indirect digital frameworks.

METHODS

The workflow for fabricating the digital cobalt-chromium framework encompassed intraoral scanning (IOS) using Trios 3, computer-aided survey and design, and subsequently either the lost-wax technique from a printed resin framework pattern (Framework B) or direct selective laser melting (SLM) (Framework C). The traditional cast framework (Framework A) was selected as a control. All three frameworks were tested in the designed sequence, and the scores of the frameworks were recorded based on the specialists' evaluations. The adaptation of the frameworks was measured via the silicone lining method. The average thickness of the light-body silicone was determined using Geomagic software for three-dimensional (3D) analysis. Chromatograms were used for the qualitative visualization of the deviations.

RESULTS

Fifty-eight patients were enrolled. The evaluation scores of the specialists indicated that Framework C had superior framework seating (P = 0.02) and posterior strap fitting of major connectors (P = 0.034) compared with Framework A. Regarding the 3D analysis of the overall adaptation of the major connectors, Framework A demonstrated significantly better adaptation than Framework B (P = 0.012), while there was no significant difference between Frameworks A and C (P = 0.305) or between Frameworks B and C (P = 0.133). Moreover, the classification of dentition defects had no significant effect on the adaptation of the three frameworks (P > 0.05). The type of major connectors had no significant effect on the adaptation of Frameworks A and C (P > 0.05), but a significant difference was observed in the adaptation among different major connectors in Framework B (P < 0.05).

CONCLUSIONS

The maxillary RPD frameworks fabricated through the direct digital technique (a combination of IOS and SLM) presented overall adaptation consistent with those of the conventional method, but had better framework seating and posterior strap fitting.

CLINICAL SIGNIFICANCE

A direct digital workflow in the manufacturing of maxillary RPD framework is a valid alternative to conventional methods and will be a promising approach in the future. (The clinical trial registration number: ChiCTR-ONC-16009899).

摘要

目的

比较通过直接数字工作流程制作的上颌可摘局部义齿(RPD)支架与传统铸造支架和间接数字支架的适合性。

方法

制作数字钴铬合金支架的工作流程包括使用Trios 3进行口内扫描(IOS)、计算机辅助测量和设计,随后要么采用从打印树脂支架模型制作失蜡铸造技术(支架B),要么采用直接选择性激光熔化(SLM)(支架C)。选择传统铸造支架(支架A)作为对照。所有三种支架按设计顺序进行测试,并根据专家评估记录支架得分。通过硅橡胶衬里法测量支架的适合性。使用Geomagic软件进行三维(3D)分析来确定轻质硅橡胶的平均厚度。色谱图用于偏差的定性可视化。

结果

纳入58例患者。专家评估得分表明,与支架A相比,支架C在支架就位(P = 0.02)以及大连接体的后带贴合方面(P = 0.034)表现更优。关于大连接体整体适合性的3D分析,支架A的适合性明显优于支架B(P = 0.012),而支架A与支架C之间(P = 0.305)以及支架B与支架C之间(P = 0.133)无显著差异。此外,牙列缺损分类对三种支架的适合性无显著影响(P > 0.05)。大连接体类型对支架A和支架C的适合性无显著影响(P > 0.05),但在支架B中不同大连接体的适合性存在显著差异(P < 0.05)。

结论

通过直接数字技术(IOS和SLM相结合)制作的上颌RPD支架的整体适合性与传统方法一致,但支架就位和后带贴合更好。

临床意义

上颌RPD支架制造中的直接数字工作流程是传统方法的有效替代方案,且在未来将是一种有前景的方法。(临床试验注册号:ChiCTR - ONC - 16009899)

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