Wagatsuma Kei, Miwa Kenta, Kamitaka Yuto, Koike Emiya, Yamao Tensho, Yoshii Tokiya, Kobayashi Rinya, Nezu Shogo, Sugamata Yuta, Miyaji Noriaki, Imabayashi Etsuko, Ishibashi Kenji, Toyohara Jun, Ishii Kenji
School of Allied Health Sciences, Kitasato University, Minami-ku, Sagamihara, Kanagawa, Japan.
Research Team for Neuroimaging, Tokyo Metropolitan Institute of Gerontology, Sakae-cho, Itabashi-ku, Tokyo, Japan.
Med Phys. 2022 May;49(5):2995-3005. doi: 10.1002/mp.15593. Epub 2022 Mar 14.
The Bayesian penalized likelihood (BPL) reconstruction algorithm, Q.Clear, can achieve a higher signal-to-noise ratio on images and more accurate quantitation than ordered subset-expectation maximization (OSEM). The reconstruction parameter (β) in BPL requires optimization according to the radiopharmaceutical tracer. The present study aimed to define the optimal β value in BPL required to diagnose Alzheimer disease from brain positron emission tomography (PET) images acquired using F-fluoro-2-deoxy-D-glucose ([ F]FDG) and C-labeled Pittsburg compound B ([ C]PiB).
Images generated from Hoffman 3D brain and cylindrical phantoms were acquired using a Discovery PET/computed tomography (CT) 710 and reconstructed using OSEM + time-of-flight (TOF) under clinical conditions and BPL + TOF (β = 20-1000). Contrast was calculated from images generated by the Hoffman 3D brain phantom, and noise and uniformity were calculated from those generated by the cylindrical phantom. Five cognitively healthy controls and five patients with Alzheimer disease were assessed using [ F]FDG and [ C]PiB PET to validate the findings from the phantom study. The β values were restricted by the findings of the phantom study, then one certified nuclear medicine physician and two certified nuclear medicine technologists visually determined optimal β values by scoring the quality parameters of image contrast, image noise, cerebellar stability, and overall image quality of PET images from 1 (poor) to 5 (excellent).
The contrast in BPL satisfied the Japanese Society of Nuclear Medicine (JSNM) criterion of ≥55% and exceeded that of OSEM at ranges of β = 20-450 and 20-600 for [ F]FDG and [ C]PiB, respectively. The image noise in BPL satisfied the JSNM criterion of ≤15% and was below that in OSEM when β = 150-1000 and 400-1000 for [ F]FDG and [ C]PiB, respectively. The phantom study restricted the ranges of β values to 100-300 and 300-500 for [ F]FDG and [ C]PiB, respectively. The BPL scores for gray-white matter contrast and image noise, exceeded those of OSEM in [ F]FDG and [ C]PiB images regardless of β values. Visual evaluation confirmed that the optimal β values were 200 and 450 for [ F]FDG and [ C]PiB, respectively.
The BPL achieved better image contrast and less image noise than OSEM, while maintaining quantitative standardized uptake value ratios (SUVR) due to full convergence, more rigorous noise control, and edge preservation. The optimal β values for [ F]FDG and [ C]PiB brain PET were apparently 200 and 450, respectively. The present study provides useful information about how to determine optimal β values in BPL for brain PET imaging.
贝叶斯惩罚似然(BPL)重建算法Q.Clear在图像上能够实现比有序子集期望最大化(OSEM)更高的信噪比和更准确的定量分析。BPL中的重建参数(β)需要根据放射性药物示踪剂进行优化。本研究旨在确定使用氟代脱氧葡萄糖([¹⁸F]FDG)和¹¹C标记的匹兹堡化合物B([¹¹C]PiB)进行脑正电子发射断层扫描(PET)成像以诊断阿尔茨海默病时BPL所需的最佳β值。
使用Discovery PET/计算机断层扫描(CT)710获取由霍夫曼3D脑模型和圆柱形体模生成的图像,并在临床条件下使用OSEM + 飞行时间(TOF)以及BPL + TOF(β = 20 - 1000)进行重建。从霍夫曼3D脑模型生成的图像计算对比度,从圆柱形体模生成的图像计算噪声和均匀性。使用[¹⁸F]FDG和[¹¹C]PiB PET对5名认知健康对照者和5名阿尔茨海默病患者进行评估,以验证体模研究的结果。β值受体模研究结果的限制,然后由一名认证核医学医师和两名认证核医学技术人员通过对PET图像的图像对比度、图像噪声、小脑稳定性和整体图像质量等质量参数从1(差)到5(优)进行评分,直观地确定最佳β值。
对于[¹⁸F]FDG和[¹¹C]PiB,BPL中的对比度分别在β = 20 - 450和20 - 600范围内满足日本核医学协会(JSNM)≥55%的标准,且超过了OSEM的对比度。对于[¹⁸F]FDG和[¹¹C]PiB,BPL中的图像噪声分别在β = 150 - 1000和400 - 1000时满足JSNM≤15%的标准,且低于OSEM中的图像噪声。体模研究将[¹⁸F]FDG和[¹¹C]PiB的β值范围分别限制为100 - 300和300 - 500。无论β值如何,[¹⁸F]FDG和[¹¹C]PiB图像中BPL的灰白质对比度和图像噪声得分均超过OSEM。视觉评估证实,[¹⁸F]FDG和[¹¹C]PiB的最佳β值分别为200和450。
由于完全收敛、更严格的噪声控制和边缘保留,BPL比OSEM实现了更好的图像对比度和更少的图像噪声,同时保持了定量标准化摄取值比率(SUVR)。[¹⁸F]FDG和[¹¹C]PiB脑PET的最佳β值显然分别为200和450。本研究提供了有关如何在脑PET成像中确定BPL最佳β值的有用信息。