We have measured the intrinsic performance of a digital X-ray detector, the Medipix1, by examining the total detective quantum efficiency (DQE). We studied how the DQE depends on both the incident photon energy and spatial frequency. Reported here is the calculation of the detective quantum efficiency for the case of a 300 μm thick silicon diode detector attached to the Medipix1 readout chip. This was done by determining the modulation transfer function and the noise power spectrum; together these allow the frequency component of the DQE to be calculated. X-ray absorption efficiency in the detector gives the dependance on incident energy. This system was found to have a DQE that peaked at 0.118, using a dental X-ray source, and dropped to 0...
In our article we report first quantitative measurements of imaging performance for the current gene...
A method to quantitatively evaluate the performances of a radiographic detection system consists on ...
Detective quantum efficiency (DQE) describes the ability of the image sensor to transfer input image...
We have measured the intrinsic performance of a digital X-ray detector, the Medipix1, by examining t...
Quantum Detective Efficiency (DQE) is referred in literature as the most robust object-independent p...
Purpose: The purpose of this study is to compare digital radiography systems using the metric effect...
In this paper we report quantitative measurements of the imaging performance for the current generat...
According to Health Canada, dental and medical radiography accounts for more than 90% of total man-m...
The information transfer efficiency of any quantum detection imaging system can be described by a un...
The electron imaging performance of Medipix2 is described. Medipix2 is a hybrid pixel detector compo...
XPAD3S is a single-photon-counting chip developed in collaboration by SOLEIL Synchrotron, the Instit...
Digital x-ray imaging detectors generally consist of an array of discrete detector elements. These d...
The characterization of physical properties of digital imaging systems requires the determination an...
This work proposes a method for assessing the detective quantum efficiency (DQE) of radiographic ima...
Detective quantum efficiency (DQE) is widely accepted as the golden rule to objectively evaluate the...
In our article we report first quantitative measurements of imaging performance for the current gene...
A method to quantitatively evaluate the performances of a radiographic detection system consists on ...
Detective quantum efficiency (DQE) describes the ability of the image sensor to transfer input image...
We have measured the intrinsic performance of a digital X-ray detector, the Medipix1, by examining t...
Quantum Detective Efficiency (DQE) is referred in literature as the most robust object-independent p...
Purpose: The purpose of this study is to compare digital radiography systems using the metric effect...
In this paper we report quantitative measurements of the imaging performance for the current generat...
According to Health Canada, dental and medical radiography accounts for more than 90% of total man-m...
The information transfer efficiency of any quantum detection imaging system can be described by a un...
The electron imaging performance of Medipix2 is described. Medipix2 is a hybrid pixel detector compo...
XPAD3S is a single-photon-counting chip developed in collaboration by SOLEIL Synchrotron, the Instit...
Digital x-ray imaging detectors generally consist of an array of discrete detector elements. These d...
The characterization of physical properties of digital imaging systems requires the determination an...
This work proposes a method for assessing the detective quantum efficiency (DQE) of radiographic ima...
Detective quantum efficiency (DQE) is widely accepted as the golden rule to objectively evaluate the...
In our article we report first quantitative measurements of imaging performance for the current gene...
A method to quantitatively evaluate the performances of a radiographic detection system consists on ...
Detective quantum efficiency (DQE) describes the ability of the image sensor to transfer input image...