Basic Clinical Radiobiology
Steel, Gordon G.
Basic Clinical Radiobiology - 1997 - 254 páginas
Introduction: the significance of radiobiology for radiotherapy. The growth rate of tumours. Cell proliferation and cellular organization of formal. Proliferative and cellular organization of normal tissues. Radiation response and tolerance of normal tissues. Clonogenic cells and the concepts of cell survival. Models of radiation cell killing. 8.DNA damage and cell killing. 9.Genetic control of the cellular response to ionizing radiation. 10.Dose-response relationships in radiotherapy. 11.Clinical manifestations of normal-tissue damage. 12.Time-dose relationship in radiotherapy. 13.The linear-quadratic approach to fractionation and calculation of isoeffect relationship. 14.Hyperfractionation and accelerated radiotherapy. 15.The oxygen effect. 16.Overcoming hypoxic cell radioressistence. 17.The radiobiology of tumours.The dose rate effect: brachytheratpy. 18.Particle beams in radiotherapy. 19.Particle beams in radiotherapy. 20.Combination of radiotherapy and chemotherapy: principles. 21.Combined radiotherapy and chemotherapy: clinical applications and evaluation. 22.Re-treatment tolerance of normal tissues. 23.Hyperthermia. 24.Targeted radiotherapy. 25.Individualization of radiotherapy.
fcnm2755
800I/S79
Basic Clinical Radiobiology - 1997 - 254 páginas
Introduction: the significance of radiobiology for radiotherapy. The growth rate of tumours. Cell proliferation and cellular organization of formal. Proliferative and cellular organization of normal tissues. Radiation response and tolerance of normal tissues. Clonogenic cells and the concepts of cell survival. Models of radiation cell killing. 8.DNA damage and cell killing. 9.Genetic control of the cellular response to ionizing radiation. 10.Dose-response relationships in radiotherapy. 11.Clinical manifestations of normal-tissue damage. 12.Time-dose relationship in radiotherapy. 13.The linear-quadratic approach to fractionation and calculation of isoeffect relationship. 14.Hyperfractionation and accelerated radiotherapy. 15.The oxygen effect. 16.Overcoming hypoxic cell radioressistence. 17.The radiobiology of tumours.The dose rate effect: brachytheratpy. 18.Particle beams in radiotherapy. 19.Particle beams in radiotherapy. 20.Combination of radiotherapy and chemotherapy: principles. 21.Combined radiotherapy and chemotherapy: clinical applications and evaluation. 22.Re-treatment tolerance of normal tissues. 23.Hyperthermia. 24.Targeted radiotherapy. 25.Individualization of radiotherapy.
fcnm2755
800I/S79