Klein R, Adler A, Beanlands R S, Dekemp R A
National Cardiac PET Centre, University of Ottawa Heart Institute, Ottawa, Ontario, Canada. School of Information Technology and Engineering, University of Ottawa, Ottawa, Ontario, Canada.
Phys Med Biol. 2007 Feb 7;52(3):659-73. doi: 10.1088/0031-9155/52/3/009. Epub 2007 Jan 11.
A rubidium-82 ((82)Rb) elution system is described for use with positron emission tomography. Due to the short half-life of (82)Rb (76 s), the system physics must be modelled precisely to account for transport delay and the associated activity decay and dispersion. Saline flow is switched between a (82)Sr/(82)Rb generator and a bypass line to achieve a constant-activity elution of (82)Rb. Pulse width modulation (PWM) of a solenoid valve is compared to simple threshold control as a means to simulate a proportional valve. A predictive-corrective control (PCC) algorithm is developed which produces a constant-activity elution within the constraints of long feedback delay and short elution time. The system model parameters are adjusted through a self-tuning algorithm to minimize error versus the requested time-activity profile. The system is self-calibrating with 2.5% repeatability, independent of generator activity and elution flow rate. Accurate 30 s constant-activity elutions of 10-70% of the total generator activity are achieved using both control methods. The combined PWM-PCC method provides significant improvement in precision and accuracy of the requested elution profiles. The (82)Rb elution system produces accurate and reproducible constant-activity elution profiles of (82)Rb activity, independent of parent (82)Sr activity in the generator. More reproducible elution profiles may improve the quality of clinical and research PET perfusion studies using (82)Rb.
描述了一种用于正电子发射断层扫描的铷 - 82((82)Rb)洗脱系统。由于(82)Rb的半衰期短(76秒),必须精确模拟系统物理过程,以考虑传输延迟以及相关的活度衰减和扩散。盐水流在(82)Sr/(82)Rb发生器和旁通管线之间切换,以实现(82)Rb的恒活度洗脱。将电磁阀的脉宽调制(PWM)与简单阈值控制进行比较,作为模拟比例阀的一种方法。开发了一种预测 - 校正控制(PCC)算法,该算法在长反馈延迟和短洗脱时间的约束条件下产生恒活度洗脱。通过自整定算法调整系统模型参数,以使与所需时间 - 活度曲线的误差最小化。该系统具有2.5%的重复性,可自校准,与发生器活度和洗脱流速无关。使用两种控制方法均实现了总发生器活度的10 - 70%的精确30秒恒活度洗脱。PWM - PCC组合方法在所需洗脱曲线的精度和准确性方面有显著提高。(82)Rb洗脱系统可产生准确且可重复的(82)Rb活度恒活度洗脱曲线,与发生器中的母体(82)Sr活度无关。更可重复的洗脱曲线可能会提高使用(82)Rb的临床和研究PET灌注研究的质量。