Dipartimento di Fisica, Università di Palermo, Palermo 90128, Italy.
Sensors (Basel). 2012;12(6):8390-404. doi: 10.3390/s120608390. Epub 2012 Jun 18.
In this work we present a detection system, based on a CdTe detector and an innovative digital pulse processing (DPP) system, for high-rate X-ray spectroscopy in mammography (1-30 keV). The DPP system performs a height and shape analysis of the detector pulses, sampled and digitized by a 14-bit, 100 MHz ADC. We show the results of the characterization of the detection system both at low and high photon counting rates by using monoenergetic X-ray sources and a nonclinical X-ray tube. The detection system exhibits excellent performance up to 830 kcps with an energy resolution of 4.5% FWHM at 22.1 keV. Direct measurements of clinical molybdenum X-ray spectra were carried out by using a pinhole collimator and a custom alignment device. A comparison with the attenuation curves and the half value layer values, obtained from the measured and simulated spectra, from an ionization chamber and from a solid state dosimeter, also shows the accuracy of the measurements. These results make the proposed detection system a very attractive tool for both laboratory research, calibration of dosimeters and advanced quality controls in mammography.
在这项工作中,我们提出了一种基于 CdTe 探测器和创新的数字脉冲处理 (DPP) 系统的检测系统,用于乳腺 X 射线摄影(1-30keV)中的高速 X 射线光谱学。DPP 系统对探测器脉冲进行高度和形状分析,由 14 位、100MHz ADC 进行采样和数字化。我们使用单能 X 射线源和非临床 X 射线管展示了检测系统在低光子计数率和高光子计数率下的特性。该检测系统在 830kcps 时具有出色的性能,在 22.1keV 时的能量分辨率为 4.5%FWHM。通过使用针孔准直器和定制的对准装置,直接测量了临床钼 X 射线光谱。通过与从测量和模拟光谱、电离室和固态剂量计获得的衰减曲线和半值层值进行比较,也显示了测量的准确性。这些结果使得所提出的检测系统成为乳腺 X 射线摄影中实验室研究、剂量计校准和高级质量控制的非常有吸引力的工具。