Technical Note: Using dual step wedge and 2D scintillator to achieve highly precise and robust proton range quality assurance
Author:
Affiliation:
1. Department of Radiation Oncology Mayo Clinic Phoenix AZ 85054 USA
Funder
Arizona Biomedical Research Commission
Publisher
Wiley
Subject
General Medicine
Link
https://onlinelibrary.wiley.com/doi/pdf/10.1002/mp.12951
Reference14 articles.
1. Particle Therapy Statistics in 2014
2. Vision 20∕20: Proton therapy
3. Intensity modulated proton therapy and its sensitivity to treatment uncertainties 1: the potential effects of calculational uncertainties
4. Range uncertainties in proton therapy and the role of Monte Carlo simulations
5. Patient-Specific Quality Assurance for Prostate Cancer Patients Receiving Spot Scanning Proton Therapy Using Single-Field Uniform Dose
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1. Needs, Trends, and Advances in Scintillators for Radiographic Imaging and Tomography;IEEE Transactions on Nuclear Science;2023-07
2. Feasibility study of utilizing Sphinx Compact for quality assurance in uniform scanning proton therapy;Physica Medica;2022-11
3. Feasibility study of a plastic scintillating plate‐based treatment beam fluence monitoring system for use in pencil beam scanning proton therapy;Medical Physics;2019-12-02
4. Development and long‐term stability of a comprehensive daily QA program for a modern pencil beam scanning ( PBS ) proton therapy delivery system;Journal of Applied Clinical Medical Physics;2019-03-28
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