Full breast digital mammography with an amorphous silicon‐based flat panel detector: Physical characteristics of a clinical prototype
Top Cited Papers
- 8 March 2000
- journal article
- imaging physics
- Published by Wiley in Medical Physics
- Vol. 27 (3) , 558-567
- https://doi.org/10.1118/1.598895
Abstract
The physical characteristics of a clinical prototype amorphous silicon‐based flat panel imager for full‐breast digital mammography have been investigated. The imager employs a thin thallium doped CsI scintillator on an amorphous silicon matrix of detector elements with a pixel pitch of 100 μm. Objective criteria such as modulation transfer function (MTF), noise power spectrum, detective quantum efficiency (DQE), and noise equivalent quanta were employed for this evaluation. The presampling MTF was found to be 0.73, 0.42, and 0.28 at 2, 4, and 5 cycles/mm, respectively. The measured DQE of the current prototype utilizing a 28 kVp, Mo–Mo spectrum beam hardened with 4.5 cm Lucite is ∼55% at close to zero spatial frequency at an exposure of 32.8 mR, and decreases to ∼40% at a low exposure of 1.3 mR. Detector element nonuniformity and electronic gain variations were not significant after appropriate calibration and software corrections. The response of the imager was linear and did not exhibit signal saturation under tested exposure conditions.Keywords
This publication has 37 references indexed in Scilit:
- Initial clinical experience with a high resolution full field digital mammography systemJournal of Digital Imaging, 1998
- Automated seeded lesion segmentation on digital mammogramsIEEE Transactions on Medical Imaging, 1998
- Empirical and theoretical investigation of the noise performance of indirect detection, active matrix flat‐panel imagers (AMFPIs) for diagnostic radiologyMedical Physics, 1997
- An improved computer-assisted diagnostic scheme using wavelet transform for detecting clustered microcalcifications in digital mammogramsAcademic Radiology, 1996
- Digital mammography: Performance considerations and current detector designsAcademic Radiology, 1996
- Digital subtraction in Gd-DTPA enhanced imaging of the breastClinical Radiology, 1995
- Image quality control for digital mammographic systems: Initial experience and outlookJournal of Digital Imaging, 1995
- A 32-channel charge readout IC for programmable, nonlinear quantization of multichannel detector dataIEEE Journal of Solid-State Circuits, 1995
- A simple method for determining the modulation transfer function in digital radiographyIEEE Transactions on Medical Imaging, 1992