First results on proton radiography with nuclear emulsion detectors
arXiv:1003.6005 · doi:10.1088/1748-0221/5/09/P09001
Abstract
We propose an innovative method for proton radiography based on nuclear emulsion film detectors, a technique in which images are obtained by measuring the position and the residual range of protons passing through the patient's body. For this purpose, nuclear emulsion films interleaved with tissue equivalent absorbers can be used to reconstruct proton tracks with very high accuracy. This is performed through a fully automated scanning procedure employing optical microscopy, routinely used in neutrino physics experiments. Proton radiography can be used in proton therapy to obtain direct information on the average tissue density for treatment planning optimization and to perform imaging with very low dose to the patient. The first prototype of a nuclear emulsion based detector has been conceived, constructed and tested with a therapeutic proton beam. The first promising experimental results have been obtained by imaging simple phantoms.
Submitted to Journal of Instrumentation (JINST)
References in corpus (5)
- Hardware performance of a scanning system for high speed analysis of nuclear emulsions
- Measurements of total and partial charge-changing cross sections for 200-400 MeV/nucleon 12C in water and polycarbonate
- A novel automatic film changer for high-speed analysis of nuclear emulsions
- Online Pattern Recognition for the ALICE High Level Trigger (tracking and compression techniques)
- Online Pattern Recognition for the ALICE High Level Trigger