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American Journal of Clinical Oncology|October 5, 2001
Chromatin compaction and tumor cell radiosensitivity at 2 grayJ D Chapman, C C Stobbe, Y MatsumotoRadiation Research|April 1, 1997
The intrinsic radiosensitivity of some human tumor cells throughout their cell cyclesS Biade, C C Stobbe, J D ChapmanRadiation Research|April 6, 1999
Condensed chromatin and cell inactivation by single-hit kineticsJ D Chapman, C C Stobbe, T Gales, et al.International Journal of Radiation Biology|January 31, 2003
The radiation hypersensitivity of cells at mitosisC C Stobbe, S J Park, J D ChapmanRadiation Research|April 1, 1992
Protection against light-activated photofrin II killing of tumor cells by nitroimidazolesR Santus, C C Stobbe, M S McPhee, et al.International Journal of Radiation Biology|October 30, 2001
Chemical agents that promote chromatin compaction radiosensitize tumour cellsS Biade, C C Stobbe, J T Boyd, et al.International Journal of Radiation Oncology, Biology, Physics|May 15, 1994
The role of specific reductases in the intracellular activation and binding of 2-nitroimidazolesP Joseph, A K Jaiswal, C C Stobbe, et al.International Journal of Radiation Biology|June 19, 2004
Radiosensitization of tumour cells by cantharidin and some analoguesW A Price, C C Stobbe, S-J Park, et al.Radiation Research|October 13, 1998
Radiation fields backscattered from material interfaces: I. Biological effectivenessD L Zellmer, J D Chapman, C C Stobbe, et al.Radiation Research|October 1, 1991
The effectiveness of short-term versus long-term exposures to Photofrin II in killing light-activated tumor cellsJ D Chapman, C C Stobbe, M R Arnfield, et al.Pageof 185