Smartphone application-based augmented reality for pre-clinical dental implant placement training: a pilot study.

IF 1.7 Q3 DENTISTRY, ORAL SURGERY & MEDICINE
Benedikt Schneider, Dragan A Ströbele, Pascal Grün, Richard Mosch, Dritan Turhani, Constantin von See
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引用次数: 0

Abstract

Purpose: Precise implant placement is essential for optimal functional and aesthetic outcomes. Digital technologies, such as computer-assisted implant surgery (CAIS), have improved implant outcomes. However, conventional methods such as static and dynamic CAIS (dCAIS) require complex equipment. This study examined the usefulness of smartphone-based augmented reality (AR) for CAIS based on the value addition regarding angulation and positioning of pilot drillings and the potential for training dental students.

Methods: An in vitro model was created to mimic dental scenarios using three-dimensional datasets. Smartphone technology and AR application (app)-based intraoral tracking were used for dCAIS. The app allowed real-time visualization of implant planning, superimposition of three-dimensional models, and alignment of surgical instruments. Forty dental students performed four pilot drillings each; two were performed freehand, whereas two were performed using the app. The angulation and position of the prepared implant bed preparation were statistically analyzed.

Results: Implant angulation was significantly better in the AR-guided group than in the unguided group; however, no significant difference was observed in the implant position.

Conclusions: Smartphone-based AR techniques for dCAIS are easily accessible in dental implantology. This may be advantageous for training dental students and potentially improving clinical outcomes, particularly the angulation of dental implants.

基于智能手机应用的增强现实用于临床前牙科种植体安置培训:一项试点研究。
目的:精确的种植体放置是获得最佳功能和美观结果的必要条件。数字技术,如计算机辅助种植手术(CAIS),已经改善了种植效果。然而,传统的方法,如静态和动态CAIS (dCAIS)需要复杂的设备。本研究考察了基于智能手机的增强现实(AR)对CAIS的有用性,该技术基于对先导钻孔成角和定位的附加价值以及培训牙科学生的潜力。方法:利用三维数据集建立体外牙模型,模拟牙情景。dCAIS采用智能手机技术和基于AR应用程序(app)的口腔内跟踪。该应用程序允许植入计划的实时可视化,三维模型的叠加,以及手术器械的对齐。40名牙科学生每人进行4次先导演练;2例徒手进行,2例应用程序进行。统计分析所制备的种植床制剂的角度和位置。结果:ar引导组种植体成角明显优于非导引组;然而,在种植体位置上没有观察到显著差异。结论:基于智能手机的AR技术用于dCAIS在种植牙中是很容易实现的。这可能有利于培养牙科学生和潜在地改善临床结果,特别是牙种植体的角度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Oral and Maxillofacial Surgery-Heidelberg
Oral and Maxillofacial Surgery-Heidelberg DENTISTRY, ORAL SURGERY & MEDICINE-
CiteScore
3.20
自引率
5.60%
发文量
118
期刊介绍: Oral & Maxillofacial Surgery founded as Mund-, Kiefer- und Gesichtschirurgie is a peer-reviewed online journal. It is designed for clinicians as well as researchers.The quarterly journal offers comprehensive coverage of new techniques, important developments and innovative ideas in oral and maxillofacial surgery and interdisciplinary aspects of cranial, facial and oral diseases and their management. The journal publishes papers of the highest scientific merit and widest possible scope on work in oral and maxillofacial surgery as well as supporting specialties. Practice-oriented articles help improve the methods used in oral and maxillofacial surgery.Every aspect of oral and maxillofacial surgery is fully covered through a range of invited review articles, clinical and research articles, technical notes, abstracts, and case reports. Specific topics are: aesthetic facial surgery, clinical pathology, computer-assisted surgery, congenital and craniofacial deformities, dentoalveolar surgery, head and neck oncology, implant dentistry, oral medicine, orthognathic surgery, reconstructive surgery, skull base surgery, TMJ and trauma.Time-limited reviewing and electronic processing allow to publish articles as fast as possible. Accepted articles are rapidly accessible online.Clinical studies submitted for publication have to include a declaration that they have been approved by an ethical committee according to the World Medical Association Declaration of Helsinki 1964 (last amendment during the 52nd World Medical Association General Assembly, Edinburgh, Scotland, October 2000). Experimental animal studies have to be carried out according to the principles of laboratory animal care (NIH publication No 86-23, revised 1985).
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