We report on the RTGrid project, which investigates approaches for using high-performance computing infrastructures, such as the grid, in order to reduce the turnaround time of Monte Carlo (MC) simulation-based radiotherapy treatment planning. The main aim of this project is to render accurate dose calculations using MC simulations clinically feasible. To this end, we have successfully implemented and deployed the RTGrid distributed simulation framework for MC dose calculations. In this paper, we present the main experimental findings
Grid computing is an emerging technology that enables computational tasks to be accomplished in a co...
We propose a novel reconfigurable hardware architecture to implement Monte Carlo based simulation of...
New technologies in cancer radiotherapy need a more accurate computation of the dose delivered in th...
We report on the RTGrid project, which investigates approaches for using high-performance computing ...
We report on the RTGrid project, which investigates approaches for using high-performance computing ...
We report on the RTGrid project, which investigates approaches for using high-performance computing ...
This paper describes the RTGrid distributed simulation framework for conformal radiotherapy. We intr...
This paper describes the RTGrid distributed simulation framework for conformal radiotherapy. We intr...
This paper describes the RTGrid distributed simulation framework for conformal radiotherapy. We intr...
This paper describes the RTGrid distributed simulation framework for conformal radiotherapy. We intr...
PCSV, NEUTRONMonte Carlo is the algorithm that most closely models the actual physics of the energy ...
PCSV, NEUTRONMonte Carlo is the algorithm that most closely models the actual physics of the energy ...
The practical capability of using Grid resources to perform high-precision dosimetry simulation in r...
We propose a novel reconfigurable hardware architecture to implement Monte Carlo based simulation of...
We propose a novel reconfigurable hardware architecture to implement Monte Carlo based simulation of...
Grid computing is an emerging technology that enables computational tasks to be accomplished in a co...
We propose a novel reconfigurable hardware architecture to implement Monte Carlo based simulation of...
New technologies in cancer radiotherapy need a more accurate computation of the dose delivered in th...
We report on the RTGrid project, which investigates approaches for using high-performance computing ...
We report on the RTGrid project, which investigates approaches for using high-performance computing ...
We report on the RTGrid project, which investigates approaches for using high-performance computing ...
This paper describes the RTGrid distributed simulation framework for conformal radiotherapy. We intr...
This paper describes the RTGrid distributed simulation framework for conformal radiotherapy. We intr...
This paper describes the RTGrid distributed simulation framework for conformal radiotherapy. We intr...
This paper describes the RTGrid distributed simulation framework for conformal radiotherapy. We intr...
PCSV, NEUTRONMonte Carlo is the algorithm that most closely models the actual physics of the energy ...
PCSV, NEUTRONMonte Carlo is the algorithm that most closely models the actual physics of the energy ...
The practical capability of using Grid resources to perform high-precision dosimetry simulation in r...
We propose a novel reconfigurable hardware architecture to implement Monte Carlo based simulation of...
We propose a novel reconfigurable hardware architecture to implement Monte Carlo based simulation of...
Grid computing is an emerging technology that enables computational tasks to be accomplished in a co...
We propose a novel reconfigurable hardware architecture to implement Monte Carlo based simulation of...
New technologies in cancer radiotherapy need a more accurate computation of the dose delivered in th...