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Development and verification of a novel device for dental intra-oral 3D scanning using chromatic confocal technology

机译:牙齿共焦技术牙科口腔3D扫描新装置的开发与验证

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The presented work describes the development and verification of a novel optical, powder-free intra-oral scanner based on chromatic confocal technology combined with a multifocal approach. The proof of concept for a chromatic confocal area scanner for intra-oral scanning is given. Several prototype scanners passed a verification process showing an average accuracy (distance deviation on flat surfaces) of less than 31 μm ± 21μm and a reproducibility of less than 4μm ± 3μm. Compared to a tactile measurement on a full jaw model fitted with 4mm ceramic spheres the measured average distance deviation between the spheres was 49μm ± 12μm for scans of up to 8 teeth (3- unit bridge, single Quadrant) and 104μm ± 82μm for larger scans and full jaws. The average deviation of the measured sphere diameter compared to the tactile measurement was 27μm ± 14μm. Compared to uCT scans of plaster models equipped with human teeth the average standard deviation on up to 3 units was less than 55μm ± 49μm whereas the reproducibility of the scans was better than 22μm ± 10μm.
机译:本工作描述了基于色彩共焦技术与多焦点方法相结合的新型光学,无粉性的口腔口腔扫描仪的开发和验证。给出了用于口腔扫描的色度共聚焦区域扫描仪的概念证明。几种原型扫描仪通过了验证过程,显示了小于31μm±21μm的平均精度(平面上的距离偏差),再现性小于4μm±3μm。与拟合4mm陶瓷球上的全颚式模型的触觉测量相比,球体之间的平均距离偏差为49μm±12μm,用于扫描(3单元桥,单象限)和104μm±82μm,用于更大的扫描和全颌骨。与触觉测量相比,测量球体直径的平均偏差为27μm±14μm。与配备人体牙齿的石膏模型的UCT扫描相比,高达3个单位的平均标准偏差小于55μm±49μm,而扫描的再现性优于22μm±10μm。

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