3D-OSEM versus FORE + OSEM: Optimal Reconstruction Algorithm for FDG PET with a Short Acquisition Time.

IF 0.6 Q4 RADIOLOGY, NUCLEAR MEDICINE & MEDICAL IMAGING World Journal of Nuclear Medicine Pub Date : 2023-09-13 eCollection Date: 2023-09-01 DOI:10.1055/s-0043-1774418
Keisuke Tsuda, Takayuki Suzuki, Kazuhito Toya, Eisuke Sato, Hirofumi Fujii
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Abstract

Objective  In this study, we investigated the optimal reconstruction algorithm in fluorodeoxyglucose (FDG) positron emission tomography (PET) with a short acquisition time. Materials and Methods  In the phantom study, six spheres filled with FDG solution (sphere size: 6.23-37 mm; radioactivity ratio of spheres to background = 8:1) and placed in a National Electrical Manufacturers Association phantom were evaluated. Image acquisition time was 15 to 180 seconds, and the obtained image data were reconstructed using each of the Fourier rebinning (FORE) + ordered subsets expectation-maximization (OSEM) and 3D-OSEM algorithms. In the clinical study, mid-abdominal images of 19 patients were evaluated using regions of interest placed on areas of low, intermediate, and high radioactivity. All obtained images were investigated visually, and quantitatively using maximum standardized uptake value (SUV) and coefficient of variation (CV). Results  In the phantom study, FORE + OSEM images with a short acquisition time had large CVs (poor image quality) but comparatively constant maximum SUVs. 3D-OSEM images showed comparatively constant CVs (good image quality) but significantly low maximum SUVs. The results of visual evaluation were well correlated with those of quantitative evaluation. Small spheres were obscured on 3D-OSEM images with short acquisition time, but image quality was not greatly deteriorated. The clinical and phantom studies yielded similar results. Conclusion  FDG PET images with a short acquisition time reconstructed by FORE + OSEM showed poorer image quality than by 3D-OSEM. However, images obtained with a short acquisition time and reconstructed with FORE + OSEM showed clearer FDG uptake and more useful than 3D-OSEM in the light of the detection of lesions.

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3D-OSEM与FORE + OSEM:短采集时间FDG PET的最佳重建算法。
客观的 在本研究中,我们研究了短采集时间的氟脱氧葡萄糖(FDG)正电子发射断层扫描(PET)的最佳重建算法。材料和方法 在体模研究中,用FDG溶液填充六个球体(球体尺寸:6.23-37 mm;球体与背景的放射性比 = 8:1)并放置在美国国家电气制造商协会体模中。图像采集时间为15至180 秒,并且使用每个傅立叶重构(FORE)来重构所获得的图像数据 + 有序子集期望最大化(OSEM)和3D-OSEM算法。在临床研究中,使用位于低、中、高放射性区域的感兴趣区域对19名患者的腹部图像进行了评估。使用最大标准化摄取值(SUV)和变异系数(CV)对所有获得的图像进行视觉和定量研究。后果 在体模研究中,FORE + 采集时间短的OSEM图像具有大的CV(图像质量差),但相对恒定的最大SUV。3D-OSEM图像显示了相对恒定的CV(良好的图像质量),但最大SUV明显较低。视觉评价的结果与定量评价的结果有很好的相关性。在3D-OSEM图像上,小球体在较短的采集时间内被遮挡,但图像质量没有显著恶化。临床和体模研究得出了类似的结果。结论 FORE重建采集时间短的FDG PET图像 + OSEM显示出比3D-OSEM更差的图像质量。然而,用短采集时间获得并用FORE重建的图像 + OSEM显示出比3D-OSEM更清晰的FDG摄取,并且在检测病变方面更有用。
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来源期刊
World Journal of Nuclear Medicine
World Journal of Nuclear Medicine RADIOLOGY, NUCLEAR MEDICINE & MEDICAL IMAGING-
自引率
16.70%
发文量
118
审稿时长
48 weeks
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