A comparison of a handheld minicomputer and an external graphics processing unit in performing 3D intraoral scans

IF 4.8 2区 医学 Q1 DENTISTRY, ORAL SURGERY & MEDICINE Journal of Prosthetic Dentistry Pub Date : 2025-02-01 DOI:10.1016/j.prosdent.2024.03.028
Taseef Hasan Farook BDS, MScDent , James Dudley BDS, DClinDent
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Abstract

Statement of problem

Whether the use of an external graphics processing unit (eGPU) and a handheld computer prolongs the operation time for 3-dimensional (3D) intraoral scanning or produces clinically unacceptable scans is unclear.

Purpose

The purpose of this in vitro study was to compare the 3D intraoral scan accuracy and scan time of a small portable device and an eGPU with desktop-grade workstations.

Material and methods

A handheld computer, a laptop, a desktop workstation, and an external graphics card were used to scan a 3D printed set of maxillary and mandibular casts 10 consecutive times using an intraoral scanner. The casts were provided by the manufacturers of the scanner, and the scanning process was conducted by a single operator following best-practice methods. The time required to scan and process the 3D models was analyzed via 1-way ANOVA. Dimensional similarity was assessed using the Hausdorff distance (HD) across the resultant 80 independent bimaxillary 3D scans. A dental desktop 3D scanner was used to scan the casts which served as the control reference. HD values were analyzed via multifactorial ANOVA (α=.05).

Results

In the real-time rendering of 3D intraoral scans, the laptop without an eGPU took significantly longer (146.41 ±10.66 seconds) (F=30.58, P<.001) compared with when connected to an eGPU (117.66 ±6.95 seconds) and handheld computer (114.84 ±7.20 seconds). Postprocessing times were more favorable on the desktop workstation (16.61 ±4.18 seconds) compared with the laptop with (27.85 ±8.89 seconds) and without an eGPU (32.37 ±7.16 seconds) connected, with the handheld computer and eGPU combination (14.66 ±7.37 seconds) producing the best results (F=14.60, P<.001). Dimensional similarity assessments showed high consistency (F=0.92, P=.44), with no discrepancies noted on the prepared tooth surfaces. The handheld minicomputer with an eGPU produced the best results across all 4 groups.

Conclusions

The handheld computer with an eGPU offered 3D intraoral scans comparable with output from a traditional workstation while preserving the details on the tooth preparations but at significantly faster scanning and processing rates.
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比较手持式微型计算机和外置图形处理单元在进行 3D 口腔内扫描时的性能。
问题陈述使用外接图形处理单元(eGPU)和手持计算机是否延长了三维(3D)口内扫描的操作时间或产生临床不可接受的扫描结果尚不清楚。目的:比较小型便携式设备和台式工作站的eGPU的口腔内三维扫描精度和扫描时间。材料与方法使用手持计算机、笔记本电脑、台式工作站和外接显卡,使用口腔内扫描仪连续10次扫描3D打印的上颌和下颌铸型。铸件由扫描仪制造商提供,扫描过程由一名操作人员按照最佳实践方法完成。扫描和处理三维模型所需的时间通过单因素方差分析。使用Hausdorff距离(HD)在80个独立的双颌三维扫描中评估维度相似性。采用桌面型牙科三维扫描仪对铸型进行扫描,作为对照。HD值采用多因子方差分析(α= 0.05)。结果在实时绘制口腔内三维扫描图时,不带eGPU的笔记本电脑所需时间(146.41±10.66秒)(F=30.58, P<.001)明显长于带eGPU的笔记本电脑(117.66±6.95秒)和手持电脑(114.84±7.20秒)。与未连接eGPU(32.37±7.16秒)的笔记本电脑(27.85±8.89秒)相比,台式工作站的后处理时间(16.61±4.18秒)更有利,掌上电脑和eGPU组合(14.66±7.37秒)产生最佳效果(F=14.60, P<.001)。尺寸相似性评估显示高一致性(F=0.92, P= 0.44),制备的牙齿表面没有差异。带有eGPU的掌上微型计算机在所有四组中都产生了最好的结果。结论配备eGPU的手持式计算机可提供与传统工作站相当的三维口腔内扫描,同时保留了牙齿准备的细节,但扫描和处理速度明显更快。
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
Journal of Prosthetic Dentistry
Journal of Prosthetic Dentistry 医学-牙科与口腔外科
CiteScore
7.00
自引率
13.00%
发文量
599
审稿时长
69 days
期刊介绍: The Journal of Prosthetic Dentistry is the leading professional journal devoted exclusively to prosthetic and restorative dentistry. The Journal is the official publication for 24 leading U.S. international prosthodontic organizations. The monthly publication features timely, original peer-reviewed articles on the newest techniques, dental materials, and research findings. The Journal serves prosthodontists and dentists in advanced practice, and features color photos that illustrate many step-by-step procedures. The Journal of Prosthetic Dentistry is included in Index Medicus and CINAHL.
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