Kroon Dirk-Jan, Slump Cornelis H, Maal Thomas J J
Signals and System, University of Twente, The Netherlands.
Med Image Comput Comput Assist Interv. 2010;13(Pt 3):221-8. doi: 10.1007/978-3-642-15711-0_28.
Cone-beam computed tomography (CBCT) is an important image modality for dental surgery planning, with high resolution images at a relative low radiation dose. In these scans the mandibular canal is hardly visible, this is a problem for implant surgery planning. We use anisotropic diffusion filtering to remove noise and enhance the mandibular canal in CBCT scans. For the diffusion tensor we use hybrid diffusion with a continuous switch (HDCS), suitable for filtering both tubular as planar image structures. We focus in this paper on the diffusion discretization schemes. The standard scheme shows good isotropic filtering behavior but is not rotational invariant, the diffusion scheme of Weickert is rotational invariant but suffers from checkerboard artifacts. We introduce a new scheme, in which we numerically optimize the image derivatives. This scheme is rotational invariant and shows good isotropic filtering properties on both synthetic as real CBCT data.
锥形束计算机断层扫描(CBCT)是牙科手术规划的重要成像方式,能以相对较低的辐射剂量生成高分辨率图像。在这些扫描中,下颌管几乎不可见,这对种植手术规划来说是个问题。我们使用各向异性扩散滤波来去除CBCT扫描中的噪声并增强下颌管。对于扩散张量,我们使用具有连续切换的混合扩散(HDCS),它适用于对管状和平面对象结构进行滤波。本文我们重点关注扩散离散化方案。标准方案显示出良好的各向同性滤波行为,但不具有旋转不变性,魏克特的扩散方案具有旋转不变性,但存在棋盘格伪影。我们引入了一种新方案,在其中对图像导数进行数值优化。该方案具有旋转不变性,并且在合成和真实CBCT数据上均显示出良好的各向同性滤波特性。