Zorz Alessandra, Rossato Marco Andrea, Turco Paolo, Colombo Gomez Luca Maria, Bettinelli Andrea, De Monte Francesca, Paiusco Marta, Zucchetta Pietro, Cecchin Diego
Medical Physics Department, Veneto Institute of Oncology IOV - IRCCS, Padua, Italy.
Unit of Nuclear Medicine, University Hospital of Padova, Padua, Italy.
EJNMMI Phys. 2024 Jul 25;11(1):69. doi: 10.1186/s40658-024-00671-x.
The application of semi-conductor detectors such as cadmium-zinc-telluride (CZT) in nuclear medicine improves extrinsic energy resolution and count sensitivity due to the direct conversion of gamma photons into electric signals. A 3D-ring pixelated CZT system named StarGuide was recently developed and implemented by GE HealthCare for SPECT acquisition. The system consists of 12 detector columns with seven modules of 16 × 16 CZT pixelated crystals, each with an integrated parallel-hole tungsten collimator. The axial coverage is 27.5 cm. The detector thickness is 7.25 mm, which allows acquisitions in the energy range [40-279] keV. Since there is currently no performance characterization specific to 3D-ring CZT SPECT systems, the National Electrical Manufacturers Association (NEMA) NU 1-2018 clinical standard can be tailored to these cameras. The aim of this study was to evaluate the performance of the SPECT/CT StarGuide system according to the NEMA NU 1-2018 clinical standard specifically adapted to characterize the new 3D-ring CZT.
Due to the integrated collimator, the system geometry and the pixelated nature of the detector, some NEMA tests have been adapted to the features of the system. The extrinsic measured energy resolution was about 5-6% for the tested isotopes (Tc, I and Co); the maximum count rate was 760 kcps and the observed count rate at 20% loss was 917 kcps. The system spatial resolution in air extrapolated at 10 cm with Tc was 7.2 mm, while the SPECT spatial resolutions with scatter were 4.2, 3.7 and 3.6 mm in a central, radial and tangential direction respectively. Single head sensitivity value for Tc was 97 cps/MBq; with 12 detector columns, the system volumetric sensitivity reached 520 kcps MBq cc.
The performance tests of the StarGuide can be performed according to the NEMA NU 1-2018 standard with some adaptations. The system has shown promising results, particularly in terms of energy resolution, spatial resolution and volumetric sensitivity, potentially leading to higher quality clinical images.
诸如碲锌镉(CZT)等半导体探测器在核医学中的应用,由于伽马光子可直接转换为电信号,从而提高了外在能量分辨率和计数灵敏度。通用电气医疗集团(GE HealthCare)最近开发并应用了一种名为StarGuide的三维环形像素化CZT系统用于单光子发射计算机断层显像(SPECT)采集。该系统由12个探测器列组成,每列包含7个16×16的CZT像素化晶体模块,每个模块都集成了平行孔钨准直器。轴向覆盖范围为27.5厘米。探测器厚度为7.25毫米,可在[40 - 279]keV的能量范围内进行采集。由于目前尚无针对三维环形CZT SPECT系统的性能特征描述,美国国家电气制造商协会(NEMA)NU 1 - 2018临床标准可适用于这些相机。本研究的目的是根据特别适用于表征新型三维环形CZT的NEMA NU 1 - 2018临床标准,评估SPECT/CT StarGuide系统的性能。
由于集成准直器、系统几何结构以及探测器的像素化特性,一些NEMA测试已针对系统特点进行了调整。对于测试的同位素(锝、碘和钴),外在测量的能量分辨率约为5 - 6%;最大计数率为760千计数每秒(kcps),在损失20%时观察到的计数率为917 kcps。使用锝在空气中10厘米处外推的系统空间分辨率为7.2毫米,而存在散射时SPECT在中心、径向和切向方向的空间分辨率分别为4.2、3.7和3.6毫米。锝的单头灵敏度值为97计数每秒每兆贝克勒尔(cps/MBq);有12个探测器列时,系统体积灵敏度达到520 kcps/MBq/立方厘米(kcps MBq cc)。
StarGuide的性能测试可根据NEMA NU 1 - 2018标准进行一些调整后实施。该系统已显示出有前景的结果,特别是在能量分辨率、空间分辨率和体积灵敏度方面,可能会带来更高质量的临床图像。