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Meditsinskaia Tekhnika|September 6, 2001
[Method of calculating the equivalent tumor dose as a function as to irradiated tumor tissue volume]L Ia KlepperMeditsinskaia Tekhnika|October 24, 2001
[Probability of tissue cell death, integral cellularity and likelihood of radiation-induced tissue complications]L Ia KlepperMeditsinskaia Tekhnika|September 14, 2000
[Interactive determination of the parameters of mathematical models for planning radiotherapy of malignant tumors. I. Mathematical models for calculating dose tolerance, adequate doses and the likelihood of development of radiation complications in normal organs and tissues]L Ia KlepperMeditsinskaia Tekhnika|March 31, 2000
[Mathematical models of dose fractionation based on LQ function. (population-tissue models)]L Ia KlepperMeditsinskaia Tekhnika|November 24, 1999
[Nonuniform dose distributions in normal body organs and tissues in the radiotherapy of malignant tumors]L Ia KlepperMeditsinskaia Tekhnika|November 8, 2003
[A method of the interactive visual optimization of the therapeutic dose field in contact radiation therapy of malignant tumors (theoretical aspects of the problem)]L Ia KlepperMeditsinskaia Tekhnika|December 1, 2006
[Synthesis of radiological models and radiological constants. Part 4: Synthesis of population-phenomenological models and Lyman model]L Ia KlepperMeditsinskaia Radiologiia|July 1, 1989
[Efficient parameters of grid diaphragms for the radiation therapy of malignant tumors]L Ia KlepperVoprosy Onkologii|January 1, 1997
[Current issues of mathematical modeling and advancement in radiology]L Ia KlepperMeditsinskaia Tekhnika|July 1, 1997
[The determination of the optimal irradiation dose in the tumor tissue-normal body tissues system]L Ia KlepperPageof 5