Alenius S, Ruotsalainen U
Signal Processing Laboratory, Tampere University of Technology, Finland.
Eur J Nucl Med. 1997 Mar;24(3):258-65. doi: 10.1007/BF01728761.
The aim of the present study was to investigate a new type of Bayesian one-step late reconstruction method which utilizes a median root prior (MRP). The method favours images which have locally monotonous radioactivity concentrations. The new reconstruction algorithm was applied to ideal simulated data, phantom data and some patient examinations with PET. The same projection data were reconstructed with filtered back-projection (FBP) and maximum likelihood-expectation maximization (ML-EM) methods for comparison. The MRP method provided good-quality images with a similar resolution to the FBP method with a ramp filter, and at the same time the noise properties were as good as with Hann-filtered FBP images. The typical artefacts seen in FBP reconstructed images outside of the object were completely removed, as was the grainy noise inside the object. Quantitatively, the resulting average regional radioactivity concentrations in a large region of interest in images produced by the MRP method corresponded to the FBP and ML-EM results but at the pixel by pixel level the MRP method proved to be the most accurate of the tested methods. In contrast to other iterative reconstruction methods, e.g. ML-EM, the MRP method was not sensitive to the number of iterations nor to the adjustment of reconstruction parameters. Only the Bayesian parameter beta had to be set. The proposed MRP method is much more simple to calculate than the methods described previously, both with regard to the parameter settings and in terms of general use. The new MRP reconstruction method was shown to produce high-quality quantitative emission images with only one parameter setting in addition to the number of iterations.
本研究的目的是探究一种利用中位数根先验(MRP)的新型贝叶斯一步延迟重建方法。该方法有利于具有局部单调放射性浓度的图像。将这种新的重建算法应用于理想模拟数据、体模数据以及一些PET患者检查。使用滤波反投影(FBP)和最大似然期望最大化(ML-EM)方法对相同的投影数据进行重建以作比较。MRP方法提供了与带斜坡滤波器的FBP方法分辨率相似的高质量图像,同时其噪声特性与汉宁滤波的FBP图像一样好。FBP重建图像中在物体外部看到的典型伪影被完全消除,物体内部的颗粒状噪声也被消除。从定量角度来看,MRP方法生成的图像中一个大感兴趣区域内最终的平均区域放射性浓度与FBP和ML-EM结果相对应,但在逐个像素层面上,MRP方法被证明是所测试方法中最准确的。与其他迭代重建方法(如ML-EM)不同,MRP方法对迭代次数和重建参数的调整不敏感。只需要设置贝叶斯参数β。所提出的MRP方法在参数设置和一般使用方面都比先前描述的方法计算起来简单得多。新的MRP重建方法被证明除了迭代次数外只需设置一个参数就能生成高质量的定量发射图像。