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Applied Optics|September 8, 2010
Diffractive optics: an introduction to the featureJ R Leger, G M Morris
Radiation Research|February 11, 1999
The radiation biology of boron neutron capture therapyJ A Coderre, G M Morris
Applied Optics|August 12, 2010
Design of diffractive singlets for monochromatic imagingD A Buralli, G M Morris
Applied Optics|August 12, 2010
Achromatic waveguide lensesK E Spaulding, G M Morris
International Journal of Radiation Oncology, Biology, Physics|March 30, 1994
Radiation effects of boron neutron capture therapy on brain, skin, and eye of ratsK Z Matalka, R F Barth, M Q Bailey, et al.
International Journal of Radiation Oncology, Biology, Physics|May 1, 1989
Modification of the radiation response of pig skin by manipulation of tissue oxygen tension using anesthetics and administration of BW12CG J van den Aardweg, J W Hopewell, D W Barnes, et al.
The British Journal of Radiology|December 1, 1991
Time-related changes in lymphatic clearance in pig skin after a single dose of 18 Gy of X raysP S Mortimer, R H Simmonds, M Rezvani, et al.
International Journal of Radiation Oncology, Biology, Physics|December 1, 1982
The relative biological effectiveness of fast neutrons (42MeVd leads to Be) for early and late normal tissue injury in the pigJ W Hopewell, D W Barnes, D T Goodhead, et al.
The British Journal of Radiology|October 1, 1992
Functional changes in the pig kidney following irradiation with fractionated doses of fast neutrons (42 MeVd-->Be)M E Robbins, D W Barnes, J W Hopewell, et al.
The British Journal of Radiology|September 1, 1992
A pilot study of accelerated fractionation in the radiotherapy of invasive carcinoma of the bladderD J Cole, K R Durrant, J T Roberts, et al.
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