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首页> 外文期刊>Physics in medicine and biology. >Direct 4D PET MLEM reconstruction of parametric images using the simplified reference tissue model with the basis function method for [C-11]raclopride
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Direct 4D PET MLEM reconstruction of parametric images using the simplified reference tissue model with the basis function method for [C-11]raclopride

机译:使用简化的参考组织模型和[C-11] raclopride的基函数方法,直接对参数图像进行4D PET MLEM重建

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This work assesses the one-step late maximum likelihood expectation maximization (OSL-MLEM) 4D PET reconstruction algorithm for direct estimation of parametric images from raw PET data when using the simplified reference tissue model with the basis function method (SRTM-BFM) for the kinetic analysis. To date, the OSL-MLEM method has been evaluated using kinetic models based on two-tissue compartments with an irreversible component. We extend the evaluation of this method for twotissue compartments with a reversible component, using SRTM-BFM on simulated 3D + time data sets (with use of [C-11] raclopride time-activity curves from real data) and on real data sets acquired with the high resolution research tomograph. The performance of the proposed method is evaluated by comparing voxel-level binding potential (BPND) estimates with those obtained from conventional post-reconstruction kinetic parameter estimation. For the commonly chosen number of iterations used in practice, our results show that for the 3D + time simulation, the direct method delivers results with lower %RMSE at the normal count level (decreases of 9-10 percentage points, corresponding to a 38-44% reduction), and also at low count levels (decreases of 17-21 percentage points, corresponding to a 26-36% reduction). As for the real 3D data set, the results obtained follow a similar trend, with the direct reconstruction method offering a 21% decrease in (CV)-C-% compared to the post reconstruction method at low count levels. Thus, based on the results presented herein, using the SRTM-BFM kinetic model in conjunction with the OSL-MLEM direct 4D PET MLEM reconstruction method offers an improvement in performance when compared to conventional post reconstruction methods.
机译:这项工作评估了一步法最大似然期望最大化(OSL-MLEM)4D PET重建算法,当使用简化的参考组织模型和基函数方法(SRTM-BFM)时,可以直接从原始PET数据估算参数图像。动力学分析。迄今为止,已经使用基于具有不可逆成分的两个组织隔室的动力学模型对OSL-MLEM方法进行了评估。我们将SRTM-BFM应用于模拟的3D +时间数据集(使用来自实际数据的[C-11]雷氯必利时间-活动曲线)和获取的真实数据集,从而对具有可逆成分的两个组织隔室对该方法的评估进行了扩展高分辨率研究型断层扫描仪。通过比较体素水平结合潜力(BPND)估计与从常规重建后动力学参数估计获得的估计值来评估所提出方法的性能。对于实践中常用的常用迭代次数,我们的结果表明,对于3D +时间仿真,直接方法在正常计数水平下可提供%RMSE较低的结果(降低9-10个百分点,对应于38-减少了44%),而且计数水平较低(减少了17-21个百分点,相当于减少了26-36%)。对于真实的3D数据集,获得的结果遵循类似的趋势,与直接重建方法相比,在低计数水平下,后期重建方法的(CV)-C-%降低了21%。因此,基于本文呈现的结果,与常规的后重建方法相比,结合使用SRTM-BFM动力学模型和OSL-MLEM直接4D PET MLEM重建方法,可以改善性能。

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