Title of article
Detective quantum efficiency of a direct-detection active matrix flat panel imager at megavoltage energies
Author/Authors
Lachaine، M. نويسنده , , Fallone، B. G. نويسنده , , Fourkal، E. نويسنده ,
Issue Information
ماهنامه با شماره پیاپی سال 2015
Pages
-1363
From page
1364
To page
0
Abstract
The use of an amorphous selenium (a-Se) based direct-detection active matrix flat-panel imager (AMFPI) is studied for megavoltage imaging. The detector consists of a 1.2 mm copper front plate and 200 µm a-Se layer, and has a 85 µm pixel pitch. The Modulation Transfer Function (MTF), Noise Power Spectrum (NPS), and Detective Quantum Efficiency (DQE) are measured for 6 and 15 MV photon beams. A theoretical expression for the DQE is derived using a recently developed formalism for nonelementary cascade stages. A comparison of theory with experiment is good for the 6 and 15 MV beams. The model is used to explore the DQE for more typical pixel sizes. The results indicate that with proper modifications, such as a larger a-Se thickness, a direct flat-panel AMFPI is a very promising detector for megavoltage imaging.
Keywords
Fault current limiter , transient over voltage , short circuit current , power quality
Journal title
MEDICAL PHYSICS
Serial Year
2001
Journal title
MEDICAL PHYSICS
Record number
1644
Link To Document