Beams of heavy charged particles like carbon or oxygen ions represent the ultimate tool of external radiotherapy of deep-seated tumors.Small range and lateral scattering and the increase of the energy deposition with penetration depth are the physical basis for a more efficient tumor targeting. High biological efficiency in the tumor is the perequisite for a successful treatment of tumors radioresistant to sparsely ionizing radiation.The possibility to perform target-conform irradiation and to control the achieved actual distribution using PET techniques guarantees that biological highly efficient stopping particles can be restricted to the tumor volume only.Although the physical and radiobiological properties of ion beams are very favorabl...
www.tcrt.org This paper focuses on current and future designs of medical hadron accelerators for tre...
The use of charged particle therapy to control tumours non-invasively offers advantages over convent...
The increase in the biological efficiency is the major motivation to use ions heavier than protons f...
Beams of heavy charged particles like carbon or oxygen ions represent the ultimate tool of external ...
Heavy charged particles are the most advanced tool of an external subcutane radiotherapy of deep sea...
Beams of heavy-charged particles of high energy like carbon ions are superior to any other type of r...
Today tumour diseases are the second most cause of death in Western countries. But only 45 percent o...
Radiation therapy for cancer by using heavy ions has attracted considerable attention. The accelerat...
Protons are the most common charged particles used in oncology. Acceleration of heavier ions require...
Generally, radiobiology is mostly concerned with the influence of sparsely ionising radiation like X...
The requirements for an accelerator and a beam-delivery system for medical application are described...
Carbon ion radiotherapy is a groundbreaking method of treatment radioresistant tumors situated close...
Radiotherapy using accelerated charged particles is rapidly growing worldwide. About 85% of the canc...
Radiotherapy using accelerated charged particles is rapidly growing worldwide. About 85% of the canc...
Superficially-placed tumors have been treated with carbon ions at the Institute of Modern Physics (I...
www.tcrt.org This paper focuses on current and future designs of medical hadron accelerators for tre...
The use of charged particle therapy to control tumours non-invasively offers advantages over convent...
The increase in the biological efficiency is the major motivation to use ions heavier than protons f...
Beams of heavy charged particles like carbon or oxygen ions represent the ultimate tool of external ...
Heavy charged particles are the most advanced tool of an external subcutane radiotherapy of deep sea...
Beams of heavy-charged particles of high energy like carbon ions are superior to any other type of r...
Today tumour diseases are the second most cause of death in Western countries. But only 45 percent o...
Radiation therapy for cancer by using heavy ions has attracted considerable attention. The accelerat...
Protons are the most common charged particles used in oncology. Acceleration of heavier ions require...
Generally, radiobiology is mostly concerned with the influence of sparsely ionising radiation like X...
The requirements for an accelerator and a beam-delivery system for medical application are described...
Carbon ion radiotherapy is a groundbreaking method of treatment radioresistant tumors situated close...
Radiotherapy using accelerated charged particles is rapidly growing worldwide. About 85% of the canc...
Radiotherapy using accelerated charged particles is rapidly growing worldwide. About 85% of the canc...
Superficially-placed tumors have been treated with carbon ions at the Institute of Modern Physics (I...
www.tcrt.org This paper focuses on current and future designs of medical hadron accelerators for tre...
The use of charged particle therapy to control tumours non-invasively offers advantages over convent...
The increase in the biological efficiency is the major motivation to use ions heavier than protons f...