首页> 外文期刊>The Journal of Nuclear Medicine >Optimization of Image Reconstruction for Y-90 Selective Internal Radiotherapy on a Lutetium Yttrium Orthosilicate PET/CT System Using a Bayesian Penalized Likelihood Reconstruction Algorithm
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Optimization of Image Reconstruction for Y-90 Selective Internal Radiotherapy on a Lutetium Yttrium Orthosilicate PET/CT System Using a Bayesian Penalized Likelihood Reconstruction Algorithm

机译:Y-90选择性内部放射疗法的图像重建优化使用贝叶斯惩罚似然重建算法对钇尿磷酸盐锂/ CT系统的乳酸钇磷酸盐/ CT系统

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摘要

Imaging on a gamma-camera with Y-90 after selective internal radiotherapy (SIRT) may allow for verification of treatment delivery but suffers relatively poor spatial resolution and imprecise dosimetry calculation. 90Y PET/CT imaging is possible on 3-dimensional, time-of-flight machines; however, images are usually poor because of low count statistics and noise. A new PET reconstruction software using a Bayesian penalized likelihood (BPL) reconstruction algorithm (termed Q.Clear) was investigated using phantom and patient scans to optimize the reconstruction for post-SIRT imaging and clarify whether BPL leads to an improvement in clinical image quality using 90Y. Methods: Phantom studies over an activity range of 0.5-4.2 GBq were performed to assess the contrast recovery, background variability, and contrast-to-noise ratio for a range of BPL and ordered-subset expectation maximization (OSEM) reconstructions on a PET/CT scanner. Patient images after SIRT were reconstructed using the same parameters and were scored and ranked on the basis of image quality, as assessed by visual evaluation, with the corresponding SPECT/CT Bremsstrahlung images by 2 experienced radiologists. Results: Contrast-to noise ratio was significantly better in BPL reconstructions when compared with OSEM in phantom studies. The patient-derived BPL and matching Bremsstrahlung images scored higher than OSEM reconstructions when scored by radiologists. BPL with a beta value of 4,000 was ranked the highest of all images. Deadtime was apparent in the system above a total phantom activity of 3.3 GBq. Conclusion: BPL with a 13 value of 4,000 is the optimal image reconstruction in PET/CT for confident radiologic reading when compared with other reconstruction parameters for 90Y imaging after SIRT imaging. Activity in the field of view should be below 3.3 GBq at the time of PET imaging to avoid deadtime losses for this scanner.
机译:选择性内部放射疗法(SIRT)后,用Y-90的伽玛相机成像可以允许验证治疗递送,但是空间分辨率相对较差和不精确的剂量测定计算。 39Y PET / CT成像在三维,飞行时间的机器上是可能的;但是,由于计数统计和噪声低,图像通常很差。使用幻影和患者扫描研究了使用贝叶斯惩罚似然(BPL)重建算法(称为Q.clear)重建算法(称为Q.clear)的新的宠物重建软件,以优化SIRT成像的重建,并阐明BPL是否导致使用临床图像质量的提高90Y。方法:进行幻像研究0.5-4.2 GBQ的活动范围,以评估一系列BPL和PET上的订购子集预期最大化(OSEM)重建的对比度恢复,背景变异性和对比度对比度。 CT扫描仪。使用相同的参数重建SIRT之后的患者图像,并根据视觉评估评估,根据图像质量进行评分和排序,相应的SPECT / CT Bremsstrahlung图像由2个经验丰富的放射液。结果:与幻影研究中的OSEM相比,BPL重建在BPL重建中显着更好。患者衍生的BPL和匹配的Bremsstrahlung图像在放射科学家评分时得分高于OSEM重建。 BPL具有4,000的β值排名最高的所有图像。在系统上高于3.3 GBQ的总体幻影活动,死亡时间很明显。结论:具有13值4,000的BPL是PET / CT中的最佳图像重建,用于自信放射学读数,当SIRT成像后90Y成像的其他重建参数相比。宠物成像时,视野中的活动应低于3.3 GBQ,以避免此扫描仪的死区损失。

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