Physics department, University of Trento, via Sommarive 14, Povo (Tn), Italy.
Trento Institute for Fundamental Physics and Applications (TIFPA), Italian National Institute of Nuclear Physics (INFN), via Sommarive, 14, Povo (Tn), Italy.
Phys Med Biol. 2023 Jun 7;68(12). doi: 10.1088/1361-6560/acd6d3.
. The goal of this study was to assess the imaging performances of the pCT system developed in the framework of INFN-funded (Italian National Institute of Nuclear Physics) research projects. The spatial resolution, noise power spectrum (NPS) and RSP accuracy has been investigated, as a preliminary step to implement a new cross-calibration method for x-ray CT (xCT).. The INFN pCT apparatus, made of four planes of silicon micro-strip detectors and a YAG:Ce scintillating calorimeter, reconstructs 3D RSP maps by a filtered-back projection algorithm. The imaging performances (i.e. spatial resolution, NPS and RSP accuracy) of the pCT system were assessed on a custom-made phantom, made of plastic materials with different densities ((0.66, 2.18) g cm). For comparison, the same phantom was acquired with a clinical xCT system.. The spatial resolution analysis revealed the nonlinearity of the imaging system, showing different imaging responses in air or water phantom background. Applying the Hann filter in the pCT reconstruction, it was possible to investigate the imaging potential of the system. Matching the spatial resolution value of the xCT (0.54 lp mm) and acquiring both with the same dose level (11.6 mGy), the pCT appeared to be less noisy than xCT, with an RSP standard deviation of 0.0063. Concerning the RSP accuracy, the measured mean absolute percentage errors were (0.23+-0.09)% in air and (0.21+-0.07)% in water.. The obtained performances confirm that the INFN pCT system provides a very accurate RSP estimation, appearing to be a feasible clinical tool for verification and correction of xCT calibration in proton treatment planning.
. 本研究的目的是评估在意大利国家核物理研究所(INFN)资助的研究项目框架内开发的 pCT 系统的成像性能。作为实施新的 X 射线 CT(xCT)交叉校准方法的初步步骤,研究了空间分辨率、噪声功率谱(NPS)和 RSP 准确性。INFN pCT 仪器由四个平面的硅微条探测器和一个 YAG:Ce 闪烁体组成,通过滤波反投影算法重建 3D RSP 图。在定制的塑料体模上评估了 pCT 系统的成像性能(即空间分辨率、NPS 和 RSP 准确性),体模的密度(0.66、2.18)g cm)不同。为了进行比较,使用临床 xCT 系统对同一体模进行了采集。. 空间分辨率分析显示出成像系统的非线性,在空气或水模体背景下显示出不同的成像响应。在 pCT 重建中应用 Hann 滤波器,可以研究系统的成像潜力。匹配 xCT 的空间分辨率值(0.54 lp mm),并在相同的剂量水平(11.6 mGy)下进行采集,pCT 似乎比 xCT 的噪声更小,RSP 标准偏差为 0.0063。关于 RSP 准确性,在空气中测量的平均绝对百分比误差为(0.23+-0.09)%,在水中为(0.21+-0.07)%。. 所获得的性能证实,INFN pCT 系统提供了非常准确的 RSP 估计,似乎是质子治疗计划中 xCT 校准验证和校正的可行临床工具。