Effects of x-ray spectra on the DQE of a computed radiography system
- 15 February 2001
- journal article
- Published by Wiley in Medical Physics
- Vol. 28 (2) , 241-249
- https://doi.org/10.1118/1.1339883
Abstract
The effect of incident x-ray beam quality on the measured detective quantum efficiency (DQE) of a computed radiography system was investigated. The incident x-ray beams used had peak tube potentials of 70, 95, and 120 kVp, were filtered with various thicknesses of a "patient equivalent phantom" (PEP), aluminum, and copper, and provided a consistent exposure to the storage phosphor. For each peak tube potential and filter combination, the one-dimensional modulation transfer function and noise power spectrum were measured and the square of the incident signal-to-noise ratio was estimated. The spatial frequency dependent DQE was calculated from these data. The DQE was integrated to provide an overall estimate of the efficiency and frequency response of the computed radiography system for the various x-ray beams. There was found to be a wide range of integral DQE (IDQE) values for the peak tube potential and filter combinations used. For example, the IDQE ranged from 3.0 to 0.9 mm(-2) using the peak tube potential and filter combinations 70 kVp with 5.1 cm PEP and 120 kVp with 30.3 cm PEP, respectively. Finally, peak tube potential and filter combinations 70 kVp with 10.2 cm PEP and 120 kVp with 20.2 cm PEP were chosen as standard x-ray beams that will be used at our facility to measure the DQE of digital radiographic imaging systems for evaluation and acceptance testing.Keywords
This publication has 17 references indexed in Scilit:
- Image quality evaluation of a desktop computed radiography systemMedical Physics, 2000
- Experimental comparison of noise and resolution for 2k and 4k storage phosphor radiography systemsMedical Physics, 1999
- Performance characteristics of a Kodak computed radiography systemMedical Physics, 1999
- A comparison of the physical imaging properties of Fuji ST-V, ST-VA, and ST-VN computed radiography image platesMedical Physics, 1998
- DQE(f) of four generations of computed radiography acquisition devicesMedical Physics, 1995
- A patient‐equivalent attenuation phantom for estimating patient exposures from automatic exposure controlled x‐ray examinations of the abdomen and lumbo–sacral spineMedical Physics, 1990
- Imaging performance of a digital storage phosphor systemMedical Physics, 1987
- Storage Phosphor System For Computed Radiography: Optical Effects And Detective Quantum Efficiency (DQE).Published by SPIE-Intl Soc Optical Eng ,1987
- Storage Phosphor System For Computed Radiography: Screen OpticsPublished by SPIE-Intl Soc Optical Eng ,1986
- Random Noise Produced by X-Ray Fluorescent Screens*Journal of the Optical Society of America, 1968