Maria Sklodowska-Curie National Research Institute of Oncology Krakow Branch, Krakow, Poland.
Warsaw University of Technology, Faculty of Mechatronics, Institute of Metrology and Biomedical Engineering, Warsaw, Poland.
J Appl Clin Med Phys. 2020 Nov;21(11):237-246. doi: 10.1002/acm2.13069. Epub 2020 Oct 27.
The purpose of this study was to present the optimization process of CT parameters to reduce patient exposure during bone SPECT/CT without affecting the quality of SPECT images with attenuation correction (AC).
A fillable phantom reflecting realistic bone scintigraphy conditions was developed and acquired on an AnyScan SC. SPECT/CT scans were carried out with different x-ray tube current values (10, 20, 30, 40, 50, 60, 70, 90, 110, 130, 150, and 200 mA) at three different high-voltage values (80, 100, and 120 kV). The contrast (C) and coefficients of variation (CV) in the SPECT images as well as the signal-to-noise ratio (SNR) and noise (SD ) in the CT images with CTDI were measured. An optimal acquisition protocol that obtained SPECT/CT images with no artifacts on both CT and SPECT images, acceptable C, SNR, CV, and SD values, and the largest reduction in patient exposure compared to the reference acquisition procedure was sought.
The optimal set of parameters for bone SPECT/CT was determined based on a phantom study. It has been implemented in clinical practice. Two groups of patients were examined according to the baseline and optimized protocols, respectively. The new SPECT/CT protocol substantially reduced patients' radiation exposure compared to the old protocol while maintaining the required diagnostic quality of SPECT and CT images.
In the study, we present a methodology that finds a compromise between diagnostic information and patient exposure during bone SPECT/CT procedures.
本研究旨在介绍一种优化 CT 参数的过程,以在不影响具有衰减校正(AC)的 SPECT 图像质量的情况下,降低骨骼 SPECT/CT 检查中的患者辐射剂量。
我们开发了一种可填充的仿体,以模拟真实的骨闪烁照相条件,并在 AnyScan SC 上获取该仿体。对不同管电流值(10、20、30、40、50、60、70、90、110、130、150 和 200 mA)和三个不同的高压值(80、100 和 120 kV)进行了 SPECT/CT 扫描。测量了 SPECT 图像中的对比度(C)和变异系数(CV),以及 CTDI 下 CT 图像中的信噪比(SNR)和噪声(SD)。我们寻求了一种最佳采集方案,该方案可在 CT 和 SPECT 图像上均无伪影、可接受的 C、SNR、CV 和 SD 值的情况下获得 SPECT/CT 图像,并与参考采集程序相比,使患者的辐射暴露量最大降低。
通过对仿体的研究确定了骨骼 SPECT/CT 的最佳参数集,并已在临床实践中实施。根据基线和优化的方案分别对两组患者进行了检查。与旧方案相比,新的 SPECT/CT 方案大大降低了患者的辐射暴露量,同时保持了 SPECT 和 CT 图像所需的诊断质量。
在本研究中,我们提出了一种方法,在骨骼 SPECT/CT 检查中在诊断信息和患者辐射暴露之间找到平衡。