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Accurate Proton Stopping Power Images Reconstructed using Joint Statistical Dual Energy CT: Experimental Verification and Impact of Fan-Beam CT Scatter

机译:联合统计双能CT重建的精确质子停止功率图像:实验验证和扇形束CT散射的影响

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Proton radiotherapy has the potential to provide clinically effective treatment and highly conformal dose delivery when the rapid dose falloff at the end of its proton-beam range is correctly aligned to the distal margin of the clinical target volume. However, in current clinical practice an additional 2-3.5% safety margin must be added to the proton range to account for uncertainties in the estimation of proton-beam range when using stopping-power ratios (SPRs) derived from single-energy CT scans. Several approaches have been proposed to estimate stopping power by using dual-energy CT (DECT) and have been shown through theoretical analysis to outperform single-energy CT (SECT) under the presence of tissue composition and density variations. Our lab previously proposed a joint statistical image reconstruction (JSIR) method built on a basis-vector model (BVM) tissue parameterization for SPR estimation, which was shown to perform comparatively better than other DECT image- and sinogram-domain decomposition approaches on simulated as well as experimental data. This comparison, however, assumed theoretical SPR values calculated from the samples' known compositions and densities as ground truth and used the mean excitation energy and effective electron density from ICRU reports along with a simplified version of the Bethe-Bloch equation to determine SPR reference values. Furthermore, CT scans were acquired with an assumed ideal point source at a narrow beam collimation; thus, the signal formation assumed by our JSIR process neglected scatter and off-focal radiation. In this paper, we verify the accuracy of our method by comparing the SPR values derived from JSIR-BVM to direct measurements of relative SPR, as well as present a preliminary study on the impact of fan-beam scatter radiation on JSIR-BVM SPR prediction accuracy.
机译:当质子束范围结束时的快速剂量下降与临床目标体积的末梢边缘正确对齐时,质子放疗有潜力提供临床有效的治疗和高度保形的剂量输送。但是,在当前的临床实践中,当使用从单能CT扫描得出的停止功率比(SPR)时,必须在质子范围上增加2-3.5%的安全裕度,以解决质子束范围估计中的不确定性。已经提出了几种通过使用双能CT(DECT)估算停止功率的方法,并已通过理论分析显示出在存在组织成分和密度变化的情况下优于单能CT(SECT)的方法。我们的实验室先前提出了一种基于基矢量模型(BVM)组织参数化的联合统计图像重建(JSIR)方法,用于SPR估计,该方法被证明在模拟为以及实验数据。但是,此比较假定从样品的已知成分和密度计算出的理论SPR值作为地面真实值,并使用ICRU报告中的平均激发能和有效电子密度以及Bethe-Bloch方程的简化版本来确定SPR参考值。此外,在狭窄的光束准直条件下,使用假定的理想点源获取CT扫描。因此,我们的JSIR流程假定的信号形成忽略了散射和离焦辐射。在本文中,我们将JSIR-BVM的SPR值与相对SPR的直接测量值进行比较,从而验证了我们方法的准确性,并对扇形束散射辐射对JSIR-BVM SPR预测的影响进行了初步研究。准确性。

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