We propose a novel reconfigurable hardware architecture to implement Monte Carlo based simulation of physical dose accumulation for intensity-modulated adaptive radiotherapy. The long term goal of our effort is to provide accurate online dose calculation in real-time during patient treatment. This will allow wider adoption of personalised patient therapies which has the potential to significantly reduce dose exposure to the patient as well as shorten treatment and greatly reduce costs. The proposed architecture exploits the inherent parallelism of Monte Carlo simulations to perform domain decomposition and provide high resolution simulation without being limited by on-chip memory capacity. We present our architecture in detail and provide a...
This work describes a fast Monte Carlo Machine for dose calculation in radiotherapy treatment planni...
This work describes a fast Monte Carlo Machine for dose calculation in radiotherapy treatment planni...
Medical simulation frameworks facilitate both the preoperative and postoperative analysis of the pat...
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...
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...
We propose a novel reconfigurable hardware archi-tecture to implement Monte Carlo based simulation o...
The project we present foresees the development of a hardware processor dedicated to real time Monte...
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 ...
We report on the RTGrid project, which investigates approaches for using high-performance computing ...
Purpose: Medical simulation frameworks facilitate both the preoperative and postoperative analysis o...
Purpose: Medical simulation frameworks facilitate both the preoperative and postoperative analysis o...
This work describes a fast Monte Carlo Machine for dose calculation in radiotherapy treatment planni...
This work describes a fast Monte Carlo Machine for dose calculation in radiotherapy treatment planni...
Medical simulation frameworks facilitate both the preoperative and postoperative analysis of the pat...
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...
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...
We propose a novel reconfigurable hardware archi-tecture to implement Monte Carlo based simulation o...
The project we present foresees the development of a hardware processor dedicated to real time Monte...
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 ...
We report on the RTGrid project, which investigates approaches for using high-performance computing ...
Purpose: Medical simulation frameworks facilitate both the preoperative and postoperative analysis o...
Purpose: Medical simulation frameworks facilitate both the preoperative and postoperative analysis o...
This work describes a fast Monte Carlo Machine for dose calculation in radiotherapy treatment planni...
This work describes a fast Monte Carlo Machine for dose calculation in radiotherapy treatment planni...
Medical simulation frameworks facilitate both the preoperative and postoperative analysis of the pat...