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Iterative reconstruction with attenuation compensation from cone-beam projections acquired via non-planar orbit

机译:通过非平面轨道获取的锥形束投影的迭代重建

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Single photon emission computed tomography (SPECT) imaging with cone-beam collimators provides improved sensitivity and spatial resolution for imaging small objects with large field-of-view detectors. It is known that Tuy's (1983) cone-beam data sufficiency condition must be met in order to obtain artifact-free reconstructions. Even though Tuy's condition was derived for attenuation-free situation, the authors hypothesize that an artifact-free reconstruction can be obtained even if the cone-beam data are attenuated, provided the imaging orbit satisfies Tuy's condition and the exact attenuation map. In the authors' studies, emission data are acquired using nonplanar orbit such as circle-and-line orbit to acquire sufficient data for cone-beam tomographic reconstruction. An iterative conjugate gradient reconstruction algorithm is used to reconstruct projection data with a pre-acquired attenuation map. Quantitative accuracy of the attenuation corrected emission reconstruction is significantly improved. The authors observe that the cone-beam iterative algorithms are very sensitive to the projection and backprojection models, because each voxel is sampled anisotropically. Sampling artifacts (i.e., aliasing artifacts) sometimes are very severe for non-planar orbit data acquisition geometries. Better voxel models and sampling geometries are required in further investigations.
机译:单光子发射计算机断层扫描(SPECT)成像与锥形束准直器的成像可提供具有大型视野检测器的小物体的成像的改善灵敏度和空间分辨率。众所周知,必须满足TUY(1983)锥形束数据充足条件,以获得无伪影重建。尽管Tuy的条件导出了不衰减的情况,作者假设即使锥形光束数据衰减,也可以获得无伪影重建,只要成像轨道满足TUY的条件和精确的衰减图。在作者的研究中,使用非平面轨道获得发射数据,例如圆形轨道,以获取锥形光束断层切断重建的足够数据。迭代共轭梯度重建算法用于重建具有预获衰减图的投影数据。衰减校正排放重建的定量准确性得到了显着改善。作者观察到锥形光束迭代算法对投影和反冲模型非常敏感,因为每个体素都是各向异性的。对非平面轨道数据采集几何形状有时非常严重的采样工件(即,锯齿伪像)。在进一步调查中需要更好的体素模型和采样几何形状。

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