University of California, Merced, School of Engineering, Merced, California, United States.
J Biomed Opt. 2017 Nov;22(11):1-11. doi: 10.1117/1.JBO.22.11.116004.
Due to the low x-ray photon utilization efficiency and low measurement sensitivity of the electron multiplying charge coupled device camera setup, the collimator-based narrow beam x-ray luminescence computed tomography (XLCT) usually requires a long measurement time. We, for the first time, report a focused x-ray beam-based XLCT imaging system with measurements by a single optical fiber bundle and a photomultiplier tube (PMT). An x-ray tube with a polycapillary lens was used to generate a focused x-ray beam whose x-ray photon density is 1200 times larger than a collimated x-ray beam. An optical fiber bundle was employed to collect and deliver the emitted photons on the phantom surface to the PMT. The total measurement time was reduced to 12.5 min. For numerical simulations of both single and six fiber bundle cases, we were able to reconstruct six targets successfully. For the phantom experiment, two targets with an edge-to-edge distance of 0.4 mm and a center-to-center distance of 0.8 mm were successfully reconstructed by the measurement setup with a single fiber bundle and a PMT.
由于电子倍增电荷耦合器件相机设置的 X 射线光子利用率低和测量灵敏度低,基于准直器的窄束 X 射线发光计算机断层成像(XLCT)通常需要较长的测量时间。我们首次报告了一种基于聚焦 X 射线束的 XLCT 成像系统,该系统通过单个光纤束和光电倍增管(PMT)进行测量。使用带有多毛细管透镜的 X 射线管产生聚焦 X 射线束,其 X 射线光子密度比准直 X 射线束大 1200 倍。光纤束用于收集并将发射光子从物体表面传输到 PMT。总测量时间减少到 12.5 分钟。对于单纤维束和六纤维束两种情况的数值模拟,我们都能够成功重建六个目标。对于体模实验,通过使用单个光纤束和 PMT 的测量设置,成功重建了两个边缘到边缘距离为 0.4 毫米且中心到中心距离为 0.8 毫米的目标。