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Medical Physics|May 1, 1991
X-ray imaging using amorphous selenium: a photoinduced discharge readout method for digital mammographyJ A Rowlands, D M Hunter, N ArajMedical Physics|May 8, 1998
Sensitivity of amorphous selenium to x rays from 40 kVp to 18 MV: measurements and implications for portal imagingD Mah, J A Rowlands, J A RawlinsonMedical Physics|June 12, 2004
Evaluation of the imaging properties of an amorphous selenium-based flat panel detector for digital fluoroscopyD C Hunt, O Tousignant, J A RowlandsPhysics in Medicine and Biology|June 15, 1999
Detective quantum efficiency of an amorphous selenium detector to megavoltage radiationD Mah, J A Rawlinson, J A RowlandsMedical Physics|February 1, 1995
X-ray imaging with amorphous selenium: detective quantum efficiency of photoconductive receptors for digital mammographyR Fahrig, J A Rowlands, M J YaffeMedical Physics|November 11, 2005
The x-ray time of flight method for investigation of ghosting in amorphous selenium-based flat panel medical x-ray imagersA W Rau, L Bakueva, J A RowlandsMedical Physics|November 7, 2001
Effects of characteristic x rays on the noise power spectra and detective quantum efficiency of photoconductive x-ray detectorsW Zhao, W G Ji, J A RowlandsMedical Physics|May 30, 2002
A filtering method for signal equalization in region-of-interest fluoroscopyNormand Robert, Philip T Komljenovic, J A RowlandsMedical Physics|October 10, 2008
The x-ray light valve: a low-cost, digital radiographic imaging system--spatial resolutionRobert D MacDougall, Ivaylo Koprinarov, J A RowlandsMedical Physics|January 30, 2009
The optimal optical readout for the x-ray light valve--document scannersP Oakham, Robert D MacDougall, J A RowlandsPageof 22