Three-dimensional (3D) pencil-beam scanning is an ideal irradiation technique to make the best use of the characteristics of a carbon-ion beam and to provide flexible dose delivery. To suppress beam spread due to multiple scattering and nuclear reactions, we developed a full energy scanning method. In some cases, such as eye treatments, the irradiation fields are very small and short ranged. Accordingly, we prepared a minimum low-energy carbon-ion beam corresponding to water-equivalent residual ranges of less than 2 mm. We performed experimental verification for low-energy carbon-ion beams ranging from 55.6 to 96.0 MeV/u. The accuracy of 3D dose delivery with the low-energy carbon-ion beam was verified by measuring the dose distributions fo...
A new treatment facility project, as an extension of the existing HIMAC facility, has been initiated...
At National Institute of Radiological Sciences (NIRS), three-dimensional irradiation with carbon-ion...
Purpose: A project to construct a new treatment facility, as an extension of the existing HIMAC faci...
To make the best use of the characteristics of a carbon-ion beam and provide flexible dose delivery, ...
To make the best use of the characteristics of a carbon-ion beam and provide flexible dose delivery, ...
Since 2011, a three-dimensional (3D) scanning irradiation system has been utilized for treatments at...
Three-dimensional (3D) pencil-beam scanning technique has been utilized since 2011 at the Heavy Ion ...
At Heavy Ion Medical Accelerator in Chiba (HIMAC) in National Institute of Radiological Sciences (NI...
Abstract: A new treatment facility project that will be an extension of the existing HIMAC complex, ...
Purpose:Using the carbon ion beam for range measurements instead of photons would avoid the uncertai...
Purpose: Three-dimensional irradiation with a scanned carbon-ion beam has been performed from 2011 a...
A new treatment facility project, as an extension of the existing HIMAC facility, has been initiated...
Purpose: Carbon ions show an increase in energy deposition with penetration depth up to a sharp maxi...
A new treatment facility as an extension of the existing HIMAC facility, is constructed for the furt...
A new treatment facility project, as an extension of the existing HIMAC facility, has been initiated...
A new treatment facility project, as an extension of the existing HIMAC facility, has been initiated...
At National Institute of Radiological Sciences (NIRS), three-dimensional irradiation with carbon-ion...
Purpose: A project to construct a new treatment facility, as an extension of the existing HIMAC faci...
To make the best use of the characteristics of a carbon-ion beam and provide flexible dose delivery, ...
To make the best use of the characteristics of a carbon-ion beam and provide flexible dose delivery, ...
Since 2011, a three-dimensional (3D) scanning irradiation system has been utilized for treatments at...
Three-dimensional (3D) pencil-beam scanning technique has been utilized since 2011 at the Heavy Ion ...
At Heavy Ion Medical Accelerator in Chiba (HIMAC) in National Institute of Radiological Sciences (NI...
Abstract: A new treatment facility project that will be an extension of the existing HIMAC complex, ...
Purpose:Using the carbon ion beam for range measurements instead of photons would avoid the uncertai...
Purpose: Three-dimensional irradiation with a scanned carbon-ion beam has been performed from 2011 a...
A new treatment facility project, as an extension of the existing HIMAC facility, has been initiated...
Purpose: Carbon ions show an increase in energy deposition with penetration depth up to a sharp maxi...
A new treatment facility as an extension of the existing HIMAC facility, is constructed for the furt...
A new treatment facility project, as an extension of the existing HIMAC facility, has been initiated...
A new treatment facility project, as an extension of the existing HIMAC facility, has been initiated...
At National Institute of Radiological Sciences (NIRS), three-dimensional irradiation with carbon-ion...
Purpose: A project to construct a new treatment facility, as an extension of the existing HIMAC faci...