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Simultaneous, radiation-free registration of the dentoalveolar position and the face by combining 3D photography with a portable scanner and impression-taking

机译:通过将3D摄影与便携式扫描仪组合和印模的方式同时,无辐射定位和面部的无辐射登记

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摘要

Abstract Objectives Simultaneous, radiation-free registration of the teeth and the upper and lower jaw positions in relation to the extraoral soft tissue could improve treatment planning and documentation. The purpose of this study is to describe a workflow to solve this form of registration and surface acquisition with a mobile device. Methods Facial scans of ten healthy participants were taken using a blue-light LED 3D scanner (Artec® Space Spider; Artec® Group; Luxembourg). An impression of the maxillary dentoalveolar arch was taken simultaneously to the 3D photo using a modified impression tray with two different extraoral registration geometries (sphere vs. cross). Following, an impression of the mandibular dentoalveolar arch was taken once. Both impressions were scanned with the 3D scanner. All resulting standard tesselation language (.stl) files of the geometries were compared to the original, virtual .stl files and the root mean square errors (RMSE) were calculated for each surface (Artec Studio 13 Professional × 64; Artec® Group; Luxembourg) to determine which geometry serves as a better reference for intra-extraoral registration. Results The RMSE between the original geometries and the scanned counterfeits were statistically lower for spherical geometries (p < 0.008). Once scanned and aligned, both geometries enabled an alignment of the intra- and extraoral scan. However, the spherical geometries showed virtually better results without significance (p = 0.70). Conclusions The presented study provides a radiation-free solution for simultaneous dentoalveolar correlations in relation to the extraoral soft tissue. Spherical geometries achieved more precise and easier intra-extraoral alignments using the applied mobile 3D scanner and workflow.
机译:摘要目标同时,无牙齿的放射登记和上下钳位与体外软组织有关的上下钳位可以改善治疗计划和文件。本研究的目的是描述一种解决这种形式的登记和用移动设备采集的工作流程。方法使用蓝光LED 3D扫描仪(ARTEC®空间蜘蛛;ARTEC®群;卢森堡)采用面部扫描。使用具有两种不同的外部配准几何形状(球与交叉)的改进的印模托盘同时对3D照片同时拍摄上颌心脏肺泡拱的印象。遵循颌骨牙瓣曲拱的印模一次。两个印象都被3D扫描仪扫描。将几何形状的所有结果标准Tesselation语言(.stl)文件与原始虚拟.stl文件和根均线误差(RMSE)进行比较(ARTEC Studio 13专业×64;Artec®组;卢森堡)确定哪些几何体作为内部内部注册的更好参考。结果原始几何形状和扫描的假冒之间的RMSE在统计上降低球形几何形状(P <0.008)。一旦扫描并对齐,两个几何都使得扫描和体外扫描的对齐。然而,球形几何形状显示出几乎更好的结果而无意义(P = 0.70)。结论本研究提供了一种无辐射的溶液,用于同时牙齿阳性相关性与体外软组织相关。球形几何形状使用所应用的移动3D扫描仪和工作流程更精确,更容易地体内对齐。

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