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G A Sandison

Showing results (11-20 of 40) with videos related to

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Medical Physics|December 10, 1999
A Monte Carlo comparison of the response of the PTW-diamond and the TL-diamond detectors in megavoltage photon beamsP N Mobit, G A Sandison
Medical Physics|September 13, 2000
Shielding for neutron scattered dose to the fetus in patients treated with 18 MV x-ray beamsS C Roy, G A Sandison
Physics in Medicine and Biology|May 28, 2002
Optimization of intensity-modulated very high energy (50-250 MeV) electron therapyC Yeboah, G A Sandison, V Moskvin
Medical Physics|December 1, 1995
Comparative Ngas measurements for a parallel plate chamber in proton, electron, and 60Co beamsG N Wu, G A Sandison, C Bloch
The British Journal of Radiology|February 1, 1989
Patient doses from computed tomography in Manitoba from 1977 to 1987W Huda, G A Sandison, T Y Lee
Physics in Medicine and Biology|October 26, 2000
The energy-dependent electron loss model for pencil beam dose kernelsA V Chvetsov, G A Sandison, C Yeboah
Medical Physics|June 9, 1999
Comparison of superheated drop detector with phosphorous pentoxide powder for the detection of neutrons in 18 MV x raysT Loye, N P Sidhu, G A Sandison
Medical Physics|February 24, 2001
Depth ionization curves for an unmodulated proton beam measured with different ionization chambersP N Mobit, G A Sandison, C Bloch
Medical Physics|September 1, 1994
A solution to the Yang equation with electron energy loss following Harder's formulaV Tulovsky, G A Sandison, L S Papiez
International Journal of Radiation Oncology, Biology, Physics|July 1, 1997
Phantom assessment of lung dose from proton arc therapyG A Sandison, E Papiez, C Bloch, et al.
Pageof 4

Showing results (11-20 of 40) with videos related to

Sort By:
Pageof 4
Medical Physics|December 10, 1999
A Monte Carlo comparison of the response of the PTW-diamond and the TL-diamond detectors in megavoltage photon beamsP N Mobit, G A Sandison
Medical Physics|September 13, 2000
Shielding for neutron scattered dose to the fetus in patients treated with 18 MV x-ray beamsS C Roy, G A Sandison
Physics in Medicine and Biology|May 28, 2002
Optimization of intensity-modulated very high energy (50-250 MeV) electron therapyC Yeboah, G A Sandison, V Moskvin
Medical Physics|December 1, 1995
Comparative Ngas measurements for a parallel plate chamber in proton, electron, and 60Co beamsG N Wu, G A Sandison, C Bloch
The British Journal of Radiology|February 1, 1989
Patient doses from computed tomography in Manitoba from 1977 to 1987W Huda, G A Sandison, T Y Lee
Physics in Medicine and Biology|October 26, 2000
The energy-dependent electron loss model for pencil beam dose kernelsA V Chvetsov, G A Sandison, C Yeboah
Medical Physics|June 9, 1999
Comparison of superheated drop detector with phosphorous pentoxide powder for the detection of neutrons in 18 MV x raysT Loye, N P Sidhu, G A Sandison
Medical Physics|February 24, 2001
Depth ionization curves for an unmodulated proton beam measured with different ionization chambersP N Mobit, G A Sandison, C Bloch
Medical Physics|September 1, 1994
A solution to the Yang equation with electron energy loss following Harder's formulaV Tulovsky, G A Sandison, L S Papiez
International Journal of Radiation Oncology, Biology, Physics|July 1, 1997
Phantom assessment of lung dose from proton arc therapyG A Sandison, E Papiez, C Bloch, et al.
Pageof 4