Huesman R H, Reutter B W, Zeng G L, Gullberg G T
Center for Functional Imaging, Lawrence Berkeley National Laboratory, University of California, Berkeley 94720, USA.
Phys Med Biol. 1998 Apr;43(4):973-82. doi: 10.1088/0031-9155/43/4/024.
Kinetic parameters are commonly estimated from dynamically acquired nuclear medicine data by first reconstructing a dynamic sequence of images and subsequently fitting the parameters to time-activity curves generated from regions of interest overlaid upon the image sequence. Biased estimates can result from images reconstructed using inconsistent projections of a time-varying distribution of radiopharmaceutical acquired by a rotating SPECT system. If the SPECT data are acquired using cone-beam collimators wherein the gantry rotates so that the focal point of the collimators always remains in a plane, additional biases can arise from images reconstructed using insufficient, as well as truncated, projection samples. To overcome these problems we have investigated the estimation of kinetic parameters directly from SPECT cone-beam projection data by modelling the data acquisition process. To accomplish this it was necessary to parametrize the spatial and temporal distribution of the radiopharmaceutical within the SPECT field of view. In a simulated chest image volume, kinetic parameters were estimated for simple one-compartment models for four myocardial regions of interest. Myocardial uptake and washout parameters estimated by conventional analysis of noiseless simulated cone-beam data had biases ranging between 3-26% and 0-28%, respectively. Parameters estimated directly from the noiseless projection data were unbiased as expected, since the model used for fitting was faithful to the simulation. Statistical uncertainties of parameter estimates for 10,000,000 events ranged between 0.2-9% for the uptake parameters and between 0.3-6% for the washout parameters.
首先重建动态图像序列,然后将参数拟合到基于叠加在图像序列上的感兴趣区域生成的时间-活度曲线上。使用旋转SPECT系统采集的放射性药物随时间变化分布的不一致投影重建的图像可能会导致有偏差的估计。如果使用锥束准直器采集SPECT数据,其中龙门架旋转以使准直器的焦点始终保持在一个平面内,那么使用不足以及截断的投影样本重建的图像可能会产生额外的偏差。为了克服这些问题,我们通过对数据采集过程进行建模,研究了直接从SPECT锥束投影数据中估算动力学参数的方法。为了实现这一点,有必要对SPECT视野内放射性药物的空间和时间分布进行参数化。在一个模拟的胸部图像体积中,针对四个心肌感兴趣区域的简单单室模型估算了动力学参数。通过对无噪声模拟锥束数据进行常规分析估算的心肌摄取和洗脱参数的偏差分别在3%-26%和0%-28%之间。直接从无噪声投影数据估算的参数正如预期的那样没有偏差,因为用于拟合的模型与模拟一致。对于10000000个事件,摄取参数估计的统计不确定性在0.2%-9%之间,洗脱参数估计的统计不确定性在0.3%-6%之间。