In this work, we combine a number of pixellated, high quality CdZnTe crystals of different configurations with a unique, fast electronic readout system with dynamic energy binning capabilities to develop a novel detection system capable of photon-counting, multispectral medical x-ray imaging. This technique offers significant advantages over conventional medical x-ray imaging by providing improved image quality through a reduction in beam hardening artefacts and better scatter rejection; enhanced soft tissue contrast, improving on current dual energy techniques by taking full advantage of the variation in mass attenuation coefficients of different tissues; in the development of K-edge imaging, identifying different high-Z contrast agents in...
The purpose of our research is to develop a photon counting X-ray CT system for the material identif...
Thanks to their high detection efficiency and low intrinsic noise, direct conversion X-ray Photon Co...
CdZnTe has been the focus of intense research as an attractive alternative material as a semiconduct...
This work presents a particular application in which cadmium-zinc telluride (CdZnTe) detectors are u...
In recent years, the development of cadmium zinc telluride (CdZnTe) detectors for x-ray and gamma ra...
International audienceThere is growing interest in energy-sensitive photon-counting detectors based ...
Current medical X- and Gamma-ray imaging applications benefit from the usage of semiconductor detect...
This thesis is concerned with the development of CdZnTe compound semiconductor detectors for hard X-...
In recent years, the development of cadmium zinc telluride (CdZnTe) detectors for x-ray and gamma ra...
The Rutherford Appleton Laboratory has built a small pixel detector for spectroscopic measurements o...
The next evolutionary step in medical imaging and radiation therapy is to employ novel detector tech...
<p>The Rutherford Appleton Laboratory has built a small pixel detector for spectroscopic measurement...
Purpose: The implementation of photon-counting detectors is widely expected to be the next breakthro...
small pixel detector for spectroscopic measurements of high energy X-rays using CdTe and CdZnTe. The...
The new generation of photon counting pixelated X-ray detectors like the Medipix2 detector are gaini...
The purpose of our research is to develop a photon counting X-ray CT system for the material identif...
Thanks to their high detection efficiency and low intrinsic noise, direct conversion X-ray Photon Co...
CdZnTe has been the focus of intense research as an attractive alternative material as a semiconduct...
This work presents a particular application in which cadmium-zinc telluride (CdZnTe) detectors are u...
In recent years, the development of cadmium zinc telluride (CdZnTe) detectors for x-ray and gamma ra...
International audienceThere is growing interest in energy-sensitive photon-counting detectors based ...
Current medical X- and Gamma-ray imaging applications benefit from the usage of semiconductor detect...
This thesis is concerned with the development of CdZnTe compound semiconductor detectors for hard X-...
In recent years, the development of cadmium zinc telluride (CdZnTe) detectors for x-ray and gamma ra...
The Rutherford Appleton Laboratory has built a small pixel detector for spectroscopic measurements o...
The next evolutionary step in medical imaging and radiation therapy is to employ novel detector tech...
<p>The Rutherford Appleton Laboratory has built a small pixel detector for spectroscopic measurement...
Purpose: The implementation of photon-counting detectors is widely expected to be the next breakthro...
small pixel detector for spectroscopic measurements of high energy X-rays using CdTe and CdZnTe. The...
The new generation of photon counting pixelated X-ray detectors like the Medipix2 detector are gaini...
The purpose of our research is to develop a photon counting X-ray CT system for the material identif...
Thanks to their high detection efficiency and low intrinsic noise, direct conversion X-ray Photon Co...
CdZnTe has been the focus of intense research as an attractive alternative material as a semiconduct...