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Optimizing voxel-wise dose calculations in cone-beam computed tomography

机译:优化锥形束计算机断层扫描中的体素-WISE剂量计算

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An analytical algorithm for the estimation of the patient-specific dose distributions in cone-beam computed tomography is introduced. The developed dose estimation method requires the reconstructed voxel data in values of linear attenuation coefficients and the scanning protocol. The algorithm first calculates the dose distribution due to the primary beam attenuation along the beam path between the source and each reconstructed voxel in conjunction with the solid angle subtended by given voxel. Then, this primary dose voxel map becomes the source for the dose distribution due to the scattered photons. For the pre-calculated primary dose value in a given voxel, the scatter dose values to all the other voxels are similarly calculated as the primary. The developed algorithm shows a good agreement with the Monte Carlo (MC) simulation for an anthropomorphic head-and-neck phantom. The accuracy of the analytical method is investigated by comparing estimates with the MC estimates and the strategy for computational acceleration is discussed in terms of the number of projections used for reconstruction, the number of spectral bins of the incident x-ray spectrum, the number of voxels, and the extent of scattering ranges.
机译:介绍了介绍锥形束计算机断层扫描中患者特异性剂量分布的分析算法。所发育的剂量估计方法需要在线性衰减系数和扫描协议的值中重建的体素数据。该算法首先通过沿源之间的光束路径和每个重建的体素结合给定voxel的实线角度来计算由于沿源和每个重建的体素的主波束衰减而引起的剂量分布。然后,该初级剂量体素映射成为由于散射光子引起的剂量分布的源。对于给定体素中的预先计算的初级剂量值,与所有其他体素的散射剂量值类似地计算为主要。发达的算法与朝鲜头颈部幻影的蒙特卡罗(MC)模拟显示了良好的一致性。通过比较与MC估计的估计进行比较和计算加速策略来研究分析方法的准确性,以用于重建的投影的数量,入射X射线光谱的频谱频率的数量,数量体素,以及散射范围的程度。

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