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Novel geometric coordination registration in cone-beam computed Tomogram

机译:锥形束计算机层析成像中的新型几何配准

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The use of cone-beam computed tomography (CBCT) in medical field can help the clinicians to visualize the hard tissues in head and neck region via a cylindrical field of view (FOV). The images are usually presented with reconstructed three-dimensional (3D) imaging and its orthogonal (x-, y- and z-planes) images. Spatial relationship of the structures in these orthogonal views is important for diagnosis of diseases as well as planning for treatment. However, the non-standardized positioning of the object during the CBCT data acquisition often induces errors in measurement since orthogonal images cut at different planes might look similar. In order to solve the problem, this paper proposes an effective mapping from the Cartesian coordinates of a cube physically to its respective coordinates in 3D imaging. Therefore, the object (real physical domain) and the imaging (computerized virtual domain) can be linked up and registered. In this way, the geometric coordination of the object/imaging can be defined and its orthogonal images would be fixed on defined planes. The images can then be measured with vector information and serial imagings can also be directly compared.
机译:在医学领域中使用锥形束计算机断层扫描(CBCT)可以帮助临床医生通过圆柱视场(FOV)可视化头颈部区域的硬组织。图像通常以重建的三维(3D)成像及其正交(x,y和z平面)图像呈现。这些正交视图中结构的空间关系对于疾病的诊断以及治疗的计划很重要。但是,在CBCT数据获取过程中,对象的非标准化定位通常会导致测量错误,因为在不同平面上切割的正交图像可能看起来很相似。为了解决该问题,本文提出了从立方体的笛卡尔坐标到其在3D成像中各自坐标的有效映射。因此,对象(真实物理域)和成像(计算机虚拟域)可以链接并注册。通过这种方式,可以定义对象/影像的几何坐标,并将其正交图像固定在定义的平面上。然后可以使用矢量信息测量图像,还可以直接比较串行成像。

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