Ljungberg Michael, Sjögreen Katarina, Liu Xiaowei, Frey Eric, Dewaraja Yuni, Strand Sven-Erik
Department of Radiation Physics, Jubileum Institute, Lund University, Sweden.
J Nucl Med. 2002 Aug;43(8):1101-9.
A general method is presented for patient-specific 3-dimensional absorbed dose calculations based on quantitative SPECT activity measurements.
The computational scheme includes a method for registration of the CT image to the SPECT image and position-dependent compensation for attenuation, scatter, and collimator detector response performed as part of an iterative reconstruction method. A method for conversion of the measured activity distribution to a 3-dimensional absorbed dose distribution, based on the EGS4 (electron-gamma shower, version 4) Monte Carlo code, is also included. The accuracy of the activity quantification and the absorbed dose calculation is evaluated on the basis of realistic Monte Carlo-simulated SPECT data, using the SIMIND (simulation of imaging nuclear detectors) program and a voxel-based computer phantom. CT images are obtained from the computer phantom, and realistic patient movements are added relative to the SPECT image. The SPECT-based activity concentration and absorbed dose distributions are compared with the true ones.
Correction could be made for object scatter, photon attenuation, and scatter penetration in the collimator. However, inaccuracies were imposed by the limited spatial resolution of the SPECT system, for which the collimator response correction did not fully compensate.
The presented method includes compensation for most parameters degrading the quantitative image information. The compensation methods are based on physical models and therefore are generally applicable to other radionuclides. The proposed evaluation methodology may be used as a basis for future intercomparison of different methods.
提出了一种基于定量SPECT活性测量的针对特定患者的三维吸收剂量计算的通用方法。
计算方案包括将CT图像配准到SPECT图像的方法,以及作为迭代重建方法一部分进行的位置相关的衰减、散射和准直器探测器响应补偿。还包括一种基于EGS4(电子-伽马射线簇射,第4版)蒙特卡罗代码将测量的活性分布转换为三维吸收剂量分布的方法。使用SIMIND(成像核探测器模拟)程序和基于体素的计算机体模,根据真实的蒙特卡罗模拟SPECT数据评估活性定量和吸收剂量计算的准确性。从计算机体模获取CT图像,并相对于SPECT图像添加真实的患者运动。将基于SPECT的活性浓度和吸收剂量分布与真实分布进行比较。
可以对物体散射、光子衰减和准直器中的散射穿透进行校正。然而,SPECT系统有限的空间分辨率带来了误差,准直器响应校正并未完全补偿这些误差。
所提出的方法包括对大多数降低定量图像信息的参数进行补偿。补偿方法基于物理模型,因此通常适用于其他放射性核素。所提出的评估方法可作为未来不同方法相互比较的基础。