Characterization of a single photon counting imaging system by the transfer functions analysis

Nuclear Science Symposium Conference Record, 2005 IEEE(2007)

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Abstract
A method to quantitatively evaluate the performances of a radiographic detection system consists on measuring the contrast, noise and modulation transfer functions. These functions have been evaluated for a digital radiographic system based on a single photon counting pixel detector. The X-ray detector is a silicon sensor with one side segmented in a matrix of 256 by 256 square contacts with a pitch of 55 mum. The active area is about 2 cm2. The sensor is connected to the Medipix2 read-out chip by bump-bonding. As X-ray source we used a tube for general radiography. To reproduce the conditions of a radiographic examination a 4 cm thick lucite block positioned above the detector has been used to simulate a tissue sample. To study the contrast transfer function we have measured the contrast of 1 mm thick lead slab with respect to the background. To evaluate the scattering contribution from the lucite, the measurements have been performed with and without a collimator placed at the beam exit. To assess the efficiency and noise transfer properties, we have measured the detective quantum efficiency (DQE) of the detector as a function of the tube voltage. The modulation transfer function has been measured applying the slit method for different conditions of tube voltage and energy threshold
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Key words
x-ray apparatus,x-ray imaging,noise,nuclear electronics,optical transfer function,position sensitive particle detectors,radiography,readout electronics,silicon radiation detectors,1 mm,4 cm,55 mum,medipix2 read-out chip,x-ray detector,x-ray source,bump-bonding,contrast transfer function,detective quantum efficiency,digital radiographic detection system,lead slab,lucite block,modulation transfer function,noise transfer function,silicon sensor,single photon counting imaging system,single photon counting pixel detector,slit method,transfer functions analysis,tube voltage,x ray detector
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