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High Resolution Medical Models and Geometric Reasoning starting from CT/MR Images

机译:从CT / MR图像开始的高分辨率医疗模型和几何推理

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The ubiquitous availability of high power computers has opened up the possibility of handling large (high resolution) volumetric data to accurately represent medical models, and performing geometric reasoning for various applications. In this paper, we present an efficient protocol to reconstruct accurate medical models from CT/MR images having equal or unequal values of slice thickness, inter slice distance, and pixel size. It involves modifying the slice thickness while leaving the in-slice resolution intact; issues such as slice overlap and inter-slice gap are handled using slice based interpolation. Noise reduction and better delineation of object boundaries and segmentation are performed in voxel space. Geometric analysis of reconstructed volumetric data is performed to generate internal thickness mapping, useful for pre-operative planning and custom implant design. A test case of pelvic model reconstruction from CT slices is described to illustrate the algorithms.
机译:高功率计算机的无处不在的可用性已经打开了处理大(高分辨率)体积数据以准确代表医疗模型的可能性,并对各种应用进行几何推理。在本文中,我们提出了一种有效的协议,用于重建从CT / MR图像重建精确的医疗模型,所述CT / MR图像具有相等或不等的切片厚度,切片距离和像素尺寸。它涉及在留下切片分辨率的情况下改变切片厚度;使用基于切片的插值来处理切片重叠和切片间隙等问题。在体素空间中执行降噪和更好地描绘对象边界和分割。执行重建体积数据的几何分析以产生内部厚度映射,可用于预惯例规划和定制植入设计。描述了CT切片骨盆模型重建的测试用例来说明算法。

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