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开发和评估一种新型高时间分辨率全数字脑 PET 系统。

Development and evaluation of a new high-TOF-resolution all-digital brain PET system.

机构信息

Department of Biomedical Engineering, Huazhong University of Science and Technology, Wuhan, Hubei, People's Republic of China.

Institute of Artificial Intelligence, Hefei Comprehensive National Science Center, Hefei, Anhui, People's Republic of China.

出版信息

Phys Med Biol. 2024 Jan 12;69(2). doi: 10.1088/1361-6560/ad164d.

Abstract

Time-of-flight (TOF) capability and high sensitivity are essential for brain-dedicated positron emission tomography (PET) imaging, as they improve the contrast and the signal-to-noise ratio (SNR) enabling a precise localization of functional mechanisms in the different brain regions.We present a new brain PET system with transverse and axial field-of-view (FOV) of 320 mm and 255 mm, respectively. The system head is an array of 6 × 6 detection elements, each consisting of a 3.9 × 3.9 × 20 mmlutetium-yttrium oxyorthosilicate crystal coupled with a 3.93 × 3.93 mmSiPM. The SiPMs analog signals are individually digitized using the multi-voltage threshold (MVT) technology, employing a 1:1:1 coupling configuration.The brain PET system exhibits a TOF resolution of 249 ps at 5.3 kBq ml, an average sensitivity of 22.1 cps kBq, and a noise equivalent count rate (NECR) peak of 150.9 kcps at 8.36 kBq ml. Furthermore, the mini-Derenzo phantom study demonstrated the system's ability to distinguish rods with a diameter of 2.0 mm. Moreover, incorporating the TOF reconstruction algorithm in an image quality phantom study optimizes the background variability, resulting in reductions ranging from 44% (37 mm) to 75% (10 mm) with comparable contrast. In the human brain imaging study, the SNR improved by a factor of 1.7 with the inclusion of TOF, increasing from 27.07 to 46.05. Time-dynamic human brain imaging was performed, showing the distinctive traits of cortex and thalamus uptake, as well as of the arterial and venous flow with 2 s per time frame.The system exhibited a good TOF capability, which is coupled with the high sensitivity and count rate performance based on the MVT digital sampling technique. The developed TOF-enabled brain PET system opens the possibility of precise kinetic brain PET imaging, towards new quantitative predictive brain diagnostics.

摘要

飞行时间 (TOF) 性能和高灵敏度对于专门用于脑部的正电子发射断层扫描 (PET) 成像至关重要,因为它们可以提高对比度和信噪比 (SNR),从而精确定位不同脑区的功能机制。我们提出了一种新的脑部 PET 系统,其横向和轴向视野 (FOV) 分别为 320mm 和 255mm。系统头部由 6×6 个探测元件组成,每个元件由一个 3.9×3.9×20mm 的硅酸镥钇石榴石晶体与一个 3.93×3.93mm 的硅光电倍增管 (SiPM) 耦合而成。SiPM 的模拟信号使用多电压阈值 (MVT) 技术进行单独数字化,采用 1:1:1 的耦合配置。脑部 PET 系统在 5.3kBq/ml 时的 TOF 分辨率为 249ps,平均灵敏度为 22.1cps/kBq,在 8.36kBq/ml 时的噪声等效计数率 (NECR) 峰值为 150.9kcps。此外,迷你德雷泽诺 (Derenzo) 体模研究表明,该系统能够分辨直径为 2.0mm 的棒。此外,在图像质量体模研究中加入 TOF 重建算法可以优化背景变化,使背景变化的减少范围从 44%(37mm)到 75%(10mm)不等,同时对比度相当。在人脑成像研究中,加入 TOF 后信噪比提高了 1.7 倍,从 27.07 提高到 46.05。进行了人脑时间动态成像,显示了皮层和丘脑摄取、动脉和静脉血流的特征,时间分辨率为 2s/帧。该系统具有良好的 TOF 性能,结合了基于 MVT 数字采样技术的高灵敏度和计数率性能。开发的基于 TOF 的脑部 PET 系统为精确的脑部 PET 动力学成像开辟了可能性,有助于新的定量预测性脑部诊断。

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