Quantitative Imaging and Analysis Lab, Department of Radiology, Duke University Medical Center, Durham, NC 27710, United States of America.
DECTRIS, Inc. Switzerland.
Phys Med Biol. 2023 Apr 12;68(8). doi: 10.1088/1361-6560/acc77e.
To evaluate the performance of two photon-counting (PC) detectors based on different detector materials, gallium arsenide (GaAs) and cadmium telluride (CdTe), for PC micro-CT imaging of phantoms with multiple contrast materials. Another objective is to determine if combining these two detectors in the same micro-CT system can offer higher spectral performance and significant artifact reduction compared to a single detector system.. We have constructed a dual-detector, micro-CT system equipped with two PCDs based on different detector materials: gallium arsenide (GaAs) and cadmium telluride (CdTe). We demonstrate the performance of these detectors for PC micro-CT imaging of phantoms with up to 5 contrast materials with K-edges spread across the x-ray spectrum ranging from iodine with a K-edge at 33.2 keV to bismuth with a K-edge at 90.5 keV. We also demonstrate the use of our system to image a mouse prepared with both iodine and bismuth contrast agents to target different biological systems.When using the same dose and scan parameters, GaAs shows increased low energy (<50 keV) spectral sensitivity and specificity compared to CdTe. However, GaAs performance at high energies suffers from spectral artifacts and has comparatively low photon counts indicating wasted radiation dose. We demonstrate that combining a GaAs-based and a CdTe-based PC detector in the same micro-CT system offers higher spectral performance and significant artifact reduction compared to a single detector system.More accurate PC micro-CT using a GaAs PCD alone or in combination with a CdTe PCD could serve for developing new contrast agents such as nanoparticles that show promise in the developing field of theranostics (therapy and diagnostics).
为了评估两种基于不同探测器材料的双光子计数(PC)探测器——砷化镓(GaAs)和碲化镉(CdTe)——在具有多种对比材料的体模 PC 微 CT 成像中的性能,我们构建了一个配备两个基于不同探测器材料(砷化镓(GaAs)和碲化镉(CdTe))的 PC 探测器的双探测器微 CT 系统。我们展示了这些探测器在对具有多达 5 种对比材料的体模进行 PC 微 CT 成像的性能,这些对比材料的 K 边分布在从 33.2keV 的碘到 90.5keV 的铋的整个 X 射线光谱范围内。我们还展示了如何使用我们的系统对用碘和铋对比剂进行预处理的老鼠进行成像,以靶向不同的生物系统。当使用相同的剂量和扫描参数时,GaAs 与 CdTe 相比,在低能(<50keV)下具有更高的光谱灵敏度和特异性。然而,GaAs 在高能下的性能受到光谱伪影的影响,并且光子计数相对较低,这表明辐射剂量被浪费了。我们证明,与单个探测器系统相比,在相同的微 CT 系统中组合使用基于 GaAs 和基于 CdTe 的 PC 探测器可提供更高的光谱性能和显著的伪影减少。使用 GaAs PCD 单独或与 CdTe PCD 组合进行更精确的 PC 微 CT 成像,可用于开发新的对比剂,例如在治疗诊断学(治疗和诊断)领域有应用前景的纳米颗粒。