In this study an amorphous silicon electronic portal imaging device (a-Si EPID) converted to direct detection configuration was investigated as a transit dosimeter for intensity modulated radiation therapy (IMRT). After calibration to dose and correction for a background offset signal, the EPID-measured absolute IMRT transit doses for 29 fields were compared to a MatriXX two-dimensional array of ionization chambers (as reference) using Gamma evaluation (3%, 3 mm). The MatriXX was first evaluated as reference for transit dosimetry. The accuracy of EPID measurements was also investigated by comparison of point dose measurements by an ionization chamber on the central axis with slab and anthropomorphic phantoms in a range of simple to complex ...
The aim of this work was to experimentally determine the difference in response of an amorphous sili...
Purpose: Electronic portal imaging devices (EPIDs) are high resolution systems that produce electron...
The aim of this work was to experimentally determine the difference in response of an amorphous sili...
Using an amorphous silicon (a-Si) EPID for transit dosimetry requires detailed characterization of i...
The purpose of this study was to investigate the dose response of amorphous silicon (a-Si) electroni...
SummaryBackgroundThe electronic portal imaging device (EPID) is used for patient setup during radiot...
The complex and individualized photon fluence patterns constructed during intensity modulated radiat...
A simplified method of verifying intensity modulated radiation therapy (IMRT) fields using a Varian ...
Research Doctorate - Doctor of Philosophy (PhD)In modern radiotherapy treatments such as Intensity M...
Electronic portal imaging devices (EPIDs) were introduced originally for patient position verificati...
The amorphous silicon electronic portal imaging device (a-Si EPID) was originally designed for posit...
Dosimetric properties of an amorphous-silicon electronic portal imaging device (EPID) operated in a ...
Abstract: Background and purpose: In vivo dosimetry is one of the quality assurance tools used in ...
Electronic portal imaging devices (EPIDs) have been the preferred tools for verification of patient ...
Purpose: Electronic portal imaging devices(EPIDs) are high resolution systems that produce electroni...
The aim of this work was to experimentally determine the difference in response of an amorphous sili...
Purpose: Electronic portal imaging devices (EPIDs) are high resolution systems that produce electron...
The aim of this work was to experimentally determine the difference in response of an amorphous sili...
Using an amorphous silicon (a-Si) EPID for transit dosimetry requires detailed characterization of i...
The purpose of this study was to investigate the dose response of amorphous silicon (a-Si) electroni...
SummaryBackgroundThe electronic portal imaging device (EPID) is used for patient setup during radiot...
The complex and individualized photon fluence patterns constructed during intensity modulated radiat...
A simplified method of verifying intensity modulated radiation therapy (IMRT) fields using a Varian ...
Research Doctorate - Doctor of Philosophy (PhD)In modern radiotherapy treatments such as Intensity M...
Electronic portal imaging devices (EPIDs) were introduced originally for patient position verificati...
The amorphous silicon electronic portal imaging device (a-Si EPID) was originally designed for posit...
Dosimetric properties of an amorphous-silicon electronic portal imaging device (EPID) operated in a ...
Abstract: Background and purpose: In vivo dosimetry is one of the quality assurance tools used in ...
Electronic portal imaging devices (EPIDs) have been the preferred tools for verification of patient ...
Purpose: Electronic portal imaging devices(EPIDs) are high resolution systems that produce electroni...
The aim of this work was to experimentally determine the difference in response of an amorphous sili...
Purpose: Electronic portal imaging devices (EPIDs) are high resolution systems that produce electron...
The aim of this work was to experimentally determine the difference in response of an amorphous sili...