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Physics and Imaging in Radiation Oncology : Impact Factor & More

eISSN: 2405-6316pISSN: 2405-6316
JournalOpen Access

Aims and Scope of Physics and Imaging in Radiation Oncology

Physics and Imaging in Radiation Oncology is an international, open access journal which is focused on medical physics and imaging in radiation oncology. Submissions from areas related to physics and imaging in radiation oncology are also considered. Less

Key Metrics

CiteScore
3.9
SJR
Q3Oncology
SNIP
0.99
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Topics Covered on Physics and Imaging in Radiation Oncology

Physics and Imaging in Radiation Oncology Journal Specifications

Indexed in the following public directories

  • Web of Science Web of Science
  • Scopus Scopus
  • DOAJ DOAJ
  • SJR SJR
Overview
Publisher ELSEVIER
Language English
Frequency Quarterly
Article Processing ChargesEUR 1530
Publication Time6
Editorial Review ProcessAnonymous peer review
General Details
LanguageEnglish
Society/Institute/SponsorEuropean Society of Radiotherapy & Oncology
FrequencyQuarterly
Publication Start Year2017
Publisher URLVisit website
Website URLVisit website
Publication Details
Other chargesVisit website
PlagiarismVisit website
Publication Time 6
Waiver PolicyVisit website
Editorial Review Detail
Editorial TeamVisit website
Review ProcessAnonymous peer review
Review UrlVisit website
Information for authors
Author instructionsVisit website
License typeCC BY, CC BY-NC-ND
OA statementVisit website
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Recently Published Papers in Physics and Imaging in Radiation Oncology

Evaluation of classical and deep-learning deformable registration for magnetic resonance to four-dimensional computed tomography contour mapping in liver stereotactic body radiotherapy.
  • 1 May 2026
  • Physics and imaging in radiation oncology
An evaluation of uncertainty quantification methods and measures for deep learning outcome prediction models in head and neck cancer radiotherapy.
  • 1 May 2026
  • Physics and imaging in radiation oncology
Raman spectroscopy and atomic force microscopy as tools to evaluate the radiobiological sensitivity of breast cancer cells at different therapeutic doses.
  • 1 May 2026
  • Physics and imaging in radiation oncology
Evaluation of a quasi-automatic treatment planning workflow for head-and-neck cancer in radiotherapy.
  • 1 May 2026
  • Physics and imaging in radiation oncology
Comparison of gantry-less magnetic resonance guided proton therapy with photon therapy for hepatocellular carcinoma patients.
  • 1 May 2026
  • Physics and imaging in radiation oncology
Structure visibility and online adaptation suitability of a new high-performance ring-gantry cone-beam computed tomography imaging system in thoracic radiotherapy.
  • 1 May 2026
  • Physics and imaging in radiation oncology
Evaluation of classical and deep-learning deformable registration for magnetic resonance to four-dimensional computed tomography contour mapping in liver stereotactic body radiotherapy.
  • 1 May 2026
  • Physics and imaging in radiation oncology
An evaluation of uncertainty quantification methods and measures for deep learning outcome prediction models in head and neck cancer radiotherapy.
  • 1 May 2026
  • Physics and imaging in radiation oncology
Raman spectroscopy and atomic force microscopy as tools to evaluate the radiobiological sensitivity of breast cancer cells at different therapeutic doses.
  • 1 May 2026
  • Physics and imaging in radiation oncology
Evaluation of a quasi-automatic treatment planning workflow for head-and-neck cancer in radiotherapy.
  • 1 May 2026
  • Physics and imaging in radiation oncology
Comparison of gantry-less magnetic resonance guided proton therapy with photon therapy for hepatocellular carcinoma patients.
  • 1 May 2026
  • Physics and imaging in radiation oncology
Structure visibility and online adaptation suitability of a new high-performance ring-gantry cone-beam computed tomography imaging system in thoracic radiotherapy.
  • 1 May 2026
  • Physics and imaging in radiation oncology

FAQs on Physics and Imaging in Radiation Oncology