Heavy ions, such as carbon and oxygen ions, are classified as high-LET radiations, and produce a characteristic dose-depth distribution different from that of low-LET radiations such as gamma ray, x-ray and electrons. Heavy ions loose less energy at the entrance to an irradiated biological system up to some depth than the low-LET radiations, while they dump a large amount of dose within a very narrow range at a certain depth, producing the characteristic sharp peak, and this peak domain of the dose is called the Bragg peak. Therefore, by controlling the Bragg peak, it becomes possible to irradiate only the tumor region in a pin-point manner, while avoiding irradiation of the normal tissue, thus making heavy-ion therapy ideal for deep-seated...
Photons are exponentially attenuated in matter producing high doses close to the surface. Therefore ...
International audienceHadron therapy is an innovative cancer treatment method based on the accelerat...
The lightest ions beyond protons, principally helium, lithium, and boron ions, make highly specific ...
Radiation therapy for cancer by using heavy ions has attracted considerable attention. The accelerat...
Radiotherapy using accelerated charged particles is rapidly growing worldwide. About 85% of the can...
Hepatoma and melanoma cells were exposed to C-12(6+) beams generated by HIRFL facility and gamma-ray...
Protons are the most common charged particles used in oncology. Acceleration of heavier ions require...
Radiotherapy using accelerated charged particles is rapidly growing worldwide. About 85% of the canc...
Carbon ion radiotherapy is a groundbreaking method of treatment radioresistant tumors situated close...
Superb biological effectiveness and dose conformity represent a rationale for heavy-ion therapy, whi...
At the National Institute of Radiological Sciences, thousands of cancer patients have been treated b...
The rationale for introducing ion beams in cancer therapy is the high level of physical selectivity ...
Beams of heavy charged particles like carbon or oxygen ions represent the ultimate tool of external ...
At the National Institute of Radiological Sciences (NIRS), over 4000 cancer patients have been treat...
Heavy ions/DNA double-strand break repair/Intratumor quiescent cell population/p53/Bcl-2/Metastasis ...
Photons are exponentially attenuated in matter producing high doses close to the surface. Therefore ...
International audienceHadron therapy is an innovative cancer treatment method based on the accelerat...
The lightest ions beyond protons, principally helium, lithium, and boron ions, make highly specific ...
Radiation therapy for cancer by using heavy ions has attracted considerable attention. The accelerat...
Radiotherapy using accelerated charged particles is rapidly growing worldwide. About 85% of the can...
Hepatoma and melanoma cells were exposed to C-12(6+) beams generated by HIRFL facility and gamma-ray...
Protons are the most common charged particles used in oncology. Acceleration of heavier ions require...
Radiotherapy using accelerated charged particles is rapidly growing worldwide. About 85% of the canc...
Carbon ion radiotherapy is a groundbreaking method of treatment radioresistant tumors situated close...
Superb biological effectiveness and dose conformity represent a rationale for heavy-ion therapy, whi...
At the National Institute of Radiological Sciences, thousands of cancer patients have been treated b...
The rationale for introducing ion beams in cancer therapy is the high level of physical selectivity ...
Beams of heavy charged particles like carbon or oxygen ions represent the ultimate tool of external ...
At the National Institute of Radiological Sciences (NIRS), over 4000 cancer patients have been treat...
Heavy ions/DNA double-strand break repair/Intratumor quiescent cell population/p53/Bcl-2/Metastasis ...
Photons are exponentially attenuated in matter producing high doses close to the surface. Therefore ...
International audienceHadron therapy is an innovative cancer treatment method based on the accelerat...
The lightest ions beyond protons, principally helium, lithium, and boron ions, make highly specific ...