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Development of a 3D Brain PET Scanner Using CdTe Semiconductor Detectors and Its First Clinical Application

机译:使用CdTe半导体探测器的3D脑PET扫描仪的开发及其首次临床应用

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Targeting improved spatial resolution, a three-dimensional positron-emission-tomography (PET) scanner employing CdTe semiconductor detectors and using depth-of-interaction (DOI) information was developed, and its physical performance was evaluated. This PET scanner is the first to use semiconductor detectors dedicated to the human brain and head-and-neck region. Imaging performance of the scanner used for $^{18}{rm F}$ -fluorodeoxy glucose (FDG) scans of phantoms and human brains was evaluated. The gantry of the scanner has a 35.0-cm-diameter patient port, the trans-axial field of view (FOV) is 31.0 cm, and the axial FOV is 24.6 cm. The energy resolution averaged over all detector channels and timing resolution were 4.1% and 6.8 ns (each in FWHM), respectively. Spatial resolution measured at the center of FOV was 2.3-mm FWHM—which is one of the best resolutions achieved by human PET scanners. Noise-equivalent count ratio (NEC2R) has a maximum in the energy window of 390 to 540 keV and is 36 ${rm kcps/Bq/cm}^{3}$ at 3.7 ${rm kBq/cm}^{3}$ . The sensitivity of the system according to NEMA 1994 was 25.9 ${rm cps/Bq/cm}^{3}$. Scatter fraction of the scanner is 37% for the energy window of 390 to 540 keV and 23% for 450 to 540 keV. Images of a hot-rod phantom and images of brain glucose metabolism show that the structural accuracy of the images obtained with the semiconductor PET scanner is higher than that possible with a conventional Bismuth Germanium Oxide (BGO) PET scanner. In addition, the developed scanner permits better delineation of the head-and-neck cancer. These results show that the semiconductor PET scanner will play a major role in the upcoming era of personalized medicine.
机译:针对改进的空间分辨率,开发了一种采用CdTe半导体探测器并使用相互作用深度(DOI)信息的三维正电子发射断层扫描(PET)扫描仪,并对其物理性能进行了评估。这款PET扫描仪是首款使用专用于人脑和头颈部区域的半导体检测器的扫描仪。用于 $ ^ {18} {rm F} $ -氟脱氧葡萄糖(FDG)幻像扫描的扫描仪的成像性能并评估了人的大脑。扫描仪的门架具有35.0厘米直径的患者端口,跨轴视场(FOV)为31.0厘米,轴向FOV为24.6厘米。在所有检测器通道上平均的能量分辨率和时序分辨率分别为4.1%和6.8 ns(均以FWHM表示)。在FOV中心测得的空间分辨率为2.3毫米FWHM,这是人类PET扫描仪获得的最佳分辨率之一。等效当量计数比(NEC2R)在能量窗口中的最大值为390至540 keV,值为36 <公式: 3} $ 在3.7 $ {rm kBq / cm} ^ {3} $ 中。根据NEMA 1994,该系统的灵敏度为25.9 $ {rm cps / Bq / cm} ^ {3} $ 。对于390至540 keV的能量窗口,扫描仪的散射分数为37%,对于450至540 keV的能量窗口为23%。热棒幻像的图像和脑部葡萄糖代谢的图像显示,使用半导体PET扫描仪获得的图像的结构精度高于使用常规氧化铋锗(BGO)PET扫描仪获得的图像的结构精度。此外,开发的扫描仪可以更好地描绘头颈癌。这些结果表明,半导体PET扫描仪将在即将到来的个性化医学时代发挥重要作用。

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