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An enhanced method for registration of dental surfaces partially scanned by a 3D dental laser scanning

机译:通过3D牙科激光扫描部分扫描的牙科表面配准的增强方法

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摘要

In this paper, we propose the fast and accurate registration method of partially scanned dental surfaces in a 3D dental laser scanning. To overcome the multiple point correspondence problems of conventional surface registration methods, we propose the novel depth map-based registration method to register 3D surface models. First, we convert a partially scanned 3D dental surface into a 2D image by generating the 2D depth map image of the surface model by applying a 3D rigid transformation into this model. Then, the image-based registration method using 2D depth map images accurately estimates the initial transformation between two consequently acquired surface models. To further increase the computational efficiency, we decompose the 3D rigid transformation into out-of-plane (i.e. x-, y-rotation, and z-translation) and in-plane (i.e. x-, y-translation, and z-rotation) transformations. For the in-plane transformation, we accelerate the transformation process by transforming the 2D depth map image instead of transforming the 3D surface model. For the more accurate registration of 3D surface models, we enhance iterative closest point (ICP) method for the subsequent fine registration. Our initial depth map-based registration well aligns each surface model. Therefore, our subsequent ICP method can accurately register two surface models since it is highly probable that the closest point pairs are the exact corresponding point pairs. The experimental results demonstrated that our method accurately registered partially scanned dental surfaces. Regarding the computational performance, our method delivered about 1.5 times faster registration than the conventional method. Our method can be successfully applied to the accurate reconstruction of 3D dental objects for orthodontic and prosthodontic treatment. (C) 2014 Elsevier Ireland Ltd. All rights reserved.
机译:在本文中,我们提出了在3D牙科激光扫描中快速,准确地对部分扫描的牙科表面进行配准的方法。为了克服常规曲面配准方法的多点对应问题,我们提出了一种基于深度图的新颖配准方法来配准3D曲面模型。首先,我们通过将3D刚性变换应用于该模型来生成表面模型的2D深度图图像,从而将部分扫描的3D牙齿表面转换为2D图像。然后,使用2D深度图图像的基于图像的配准方法可准确估计两个因此获取的表面模型之间的初始变换。为了进一步提高计算效率,我们将3D刚性变换分解为平面外(即x,y旋转和z平移)和平面内(即x,y平移和z旋转) )转换。对于平面内变换,我们通过变换2D深度图图像而不是变换3D表面模型来加速变换过程。为了更精确地注册3D表面模型,我们增强了迭代最近点(ICP)方法以进行后续的精细注册。我们基于初始深度图的配准可以很好地对齐每个曲面模型。因此,我们的后续ICP方法可以精确地注册两个曲面模型,因为最有可能的点对是精确对应的点对。实验结果表明,我们的方法可以准确地记录部分扫描的牙齿表面。关于计算性能,我们的方法比传统方法交付的注册速度快约1.5倍。我们的方法可以成功地应用于3D牙齿对象的正畸和正畸治疗的准确重建。 (C)2014 Elsevier Ireland Ltd.保留所有权利。

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