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Real-time adaptive sequential design for optimal acquisition of arterial spin labeling MRI data.

机译:实时自适应顺序设计,可最佳采集动脉旋转标记MRI数据。

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摘要

An optimal sampling schedule strategy based on the Fisher information matrix and the D-optimality criterion has previously been proposed as a formal framework for optimizing inversion time scheduling for multi-inversion-time arterial spin labeling experiments. Optimal sampling schedule possesses the primary advantage of improving parameter estimation precision but requires a priori estimation of plausible parameter distributions that may not be available in all situations. An adaptive sequential design approach addresses this issue by incorporating the optimal sampling schedule strategy into an adaptive process that iteratively updates the parameter estimates and adjusts the optimal sampling schedule accordingly as data are acquired. In this study, the adaptive sequential design method was experimentally implemented with a real-time feedback scheme on a clinical MRI scanner and was tested in six normal volunteers. Adapted schedules were found to accommodate the intrinsically prolonged arterial transit times in the occipital lobe of the brain. Simulation of applying the adaptive sequential design approach on subjects with pathologically reduced perfusion was also implemented. Simulation results show that the adaptive sequential design approach is capable of incorporating pathologic parameter information into an optimal arterial spin labeling scheduling design within a clinically useful experimental time.
机译:先前已经提出了基于Fisher信息矩阵和D-最优性准则的最佳采样计划策略,作为优化用于多反转时间动脉自旋标记实验的反转时间计划的正式框架。最佳采样时间表具有提高参数估计精度的主要优势,但需要对可能在所有情况下都不可用的合理参数分布进行先验估计。自适应顺序设计方法通过将最佳采样计划策略合并到自适应过程中来解决此问题,该自适应过程迭代地更新参数估计并在获取数据时相应地调整最佳采样计划。在这项研究中,自适应顺序设计方法是在临床MRI扫描仪上通过实时反馈方案实验性实施的,并在六名正常志愿者中进行了测试。发现适应的时间表可以适应大脑枕叶固有的延长的动脉通过时间。还实施了将自适应顺序设计方法应用于病理性灌注减少的受试者的模拟。仿真结果表明,自适应顺序设计方法能够在临床有用的实验时间内将病理参数信息纳入最佳的动脉自旋标记计划设计中。

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