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Efficient voxel lookup in non-uniformly spaced images using virtual uniform axes

机译:使用虚拟均匀轴的非均匀间隔图像中的高效voxel查找

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Medical image data is usually represented by a uniformly spaced grid of voxels. However, CT scanners for example are capable of producing non-uniformly spaced slice images. This is desirable when for a particular patient some regions (lesions) need to be imaged with a high resolution, while a lower resolution would be sufficient in other areas. Such an adaptive slice spacing can significantly reduce X-ray dose, thus directly benefitting the patient. Unfortunately, computational handling of the resulting volume data is far less efficient than that of uniformly spaced images. To deal with this problem, the present paper introduces a novel data structure for non-uniformly spaced image coordinates, the so-called virtual uniform axes. By a generalization of Euclid's greatest common divider (GCD) algorithm, a table of virtual voxels on a uniform grid is produced. Each of the uniform voxels in the virtual grid holds a pointer to the corresponding voxel in the original, non-uniform grid. Finding a voxel in the virtual uniform image can be done in constant time as compared to logarithmic time for finding a voxel in a non-uniform image. This is achieved with significantly less additional storage than by resampling the image data itself to a uniform grid. Interpolation artifacts are also completely avoided.
机译:医学图像数据通常由均匀间隔的体素网格表示。然而,例如,CT扫描仪能够产生非均匀间隔的切片图像。这是理想的,当特定患者时,需要以高分辨率成像一些区域(病变),而在其他区域中的较低分辨率就足够了。这种自适应切片间距可以显着降低X射线剂量,从而直接受益于患者。遗憾的是,所得卷数据的计算处理远远低于均匀间隔图像的效率。为了解决这个问题,本文介绍了一种用于非均匀间隔的图像坐标的新型数据结构,所谓的虚拟均匀轴。通过EuclID最大的公共分频器(GCD)算法的概括,生产了统一网格上的虚拟体素表。虚拟网格中的每个均匀体素保持在原始非均匀网格中的相应体素的指针。与在非统一图像中查找体素的对数时间相比,可以在恒定时间内找到虚拟均匀图像中的体素。这是通过将图像数据本身重新采样到统一网格的额外存储器来实现的。插值伪影也完全避免。

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