The amounts of reactive oxygen species generated in aqueous samples by irradiation with X-ray or clinical carbon-ion beams were quantified. Hydroxyl radical (•OH), hydrogen peroxide (H2O2), and the total amount of oxidation reactions, which occurred mainly because of •OH and/or hydroperoxy radicals (HO2•), were measured by electron paramagnetic resonance-based methods. •OH generation was expected to be localized on the track/range of the carbon-ion beam/X-ray, and mM and M levels of •OH generation were observed. Total •OH generation levels were identical at the same dose irrespective of whether X-ray or carbon-ion beam irradiation was used, and were around 0.28‒0.35 μmol/l/Gy. However, sparse •OH generation levels decreased with increasing ...
The oxygen effect is severe problem in radiation therapies for hypoxic tumors using low linear energ...
High LET carbon ion beam cancer therapy using the Heavy-Ion Medical Accelerator in Chiba (HIMAC) (Na...
Introduction: High LET carbon ion beam cancer therapy at National Institute of Radiological Sciences...
Amounts and nano-distributions of reactive oxygen species (ROS) generated by carbon beam (C-beam) we...
Hydroxyl radicals (*OH), hydrogen peroxide (H{sub}2{/sub}O{sub}2{/sub}), and superoxide (O{sub}2{/su...
Radiation-induced generations of reactive oxygen species (ROS) were quantified and then possibilitie...
The oxygen independent formation of hydrogen peroxide (H2O2) in an aqueous solution during carbon-io...
For improvement of carbon ion beam cancer therapy, low fractionated protocols are planned to reduce ...
For improvement of carbon ion beam cancer therapy, low fractionated protocols are planned to reduce ...
The density of hydroxyl radicals (•OH) produced in aqueous samples by exposure to X-ray or carbon-io...
Generation of reactive oxygen species (ROS) is considered as essential trigger of biological effects...
Carbon-ion (C-ion) beams are known to exhibit a sharp maximum of the energy deposition, called as a ...
Linear energy transfer (LET) dependence of yields of O2-dependent and O2-independent hydrogen peroxi...
Carbon-ion (C-ion) beams are known to exhibit a sharp maximum of the energy deposition, called as a ...
High linear energy transfer (LET) carbon ion beam cancer therapy is effective against hypoxic tumor ...
The oxygen effect is severe problem in radiation therapies for hypoxic tumors using low linear energ...
High LET carbon ion beam cancer therapy using the Heavy-Ion Medical Accelerator in Chiba (HIMAC) (Na...
Introduction: High LET carbon ion beam cancer therapy at National Institute of Radiological Sciences...
Amounts and nano-distributions of reactive oxygen species (ROS) generated by carbon beam (C-beam) we...
Hydroxyl radicals (*OH), hydrogen peroxide (H{sub}2{/sub}O{sub}2{/sub}), and superoxide (O{sub}2{/su...
Radiation-induced generations of reactive oxygen species (ROS) were quantified and then possibilitie...
The oxygen independent formation of hydrogen peroxide (H2O2) in an aqueous solution during carbon-io...
For improvement of carbon ion beam cancer therapy, low fractionated protocols are planned to reduce ...
For improvement of carbon ion beam cancer therapy, low fractionated protocols are planned to reduce ...
The density of hydroxyl radicals (•OH) produced in aqueous samples by exposure to X-ray or carbon-io...
Generation of reactive oxygen species (ROS) is considered as essential trigger of biological effects...
Carbon-ion (C-ion) beams are known to exhibit a sharp maximum of the energy deposition, called as a ...
Linear energy transfer (LET) dependence of yields of O2-dependent and O2-independent hydrogen peroxi...
Carbon-ion (C-ion) beams are known to exhibit a sharp maximum of the energy deposition, called as a ...
High linear energy transfer (LET) carbon ion beam cancer therapy is effective against hypoxic tumor ...
The oxygen effect is severe problem in radiation therapies for hypoxic tumors using low linear energ...
High LET carbon ion beam cancer therapy using the Heavy-Ion Medical Accelerator in Chiba (HIMAC) (Na...
Introduction: High LET carbon ion beam cancer therapy at National Institute of Radiological Sciences...