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          Testing of Code of Practice on Small Field Dosimetry

          Closed for proposals

          Project Type

          Coordinated Research Project

          Project Code

          E24021

          CRP

          2061

          Approved Date

          23 March 2015

          Status

          Closed

          Start Date

          3 September 2015

          Expected End Date

          2 September 2019

          Completed Date

          4 February 2022

          Participating Countries

          Cuba
          Saudi Arabia

          Description

          Recent trends in radiotherapy techniques have increased substantially the use of small radiation fields. A key step in the radiotherapy process is the requirement for consistent reference dosimetry traceable to metrological primary standards and to enable common procedures within a country to be followed for reference dosimetry.? For conventional radiotherapy this has been achieved by Codes of Practice such as IAEA TRS 398 (IAEA, Vienna, 2000). However these Codes of Practice are all based on the use of a reference 10 cm x 10 cm field that may not be achievable using some modern specialized machines. So the developments in small field techniques have increased the uncertainty of clinical dosimetry and its link to reference dosimetry protocols. A joint working group between the IAEA and AAPM (American Association of Medical Physics) was established to prepare an International Code of Practice for small static photon fields. The aim is to harmonize the dosimetry of small fields in a similar way that IAEA TRS 398 has achieved for conventional radiotherapy. A CRP will be needed to test the procedures recommended in the new Code of Practice for different types of radiation beams and dosimeters used in special radiotherapy techniques such as various forms of Stereotactic Radiotherapy (SRT), Stereotactic Body Radiotherapy (SBRT) Stereotactic Radiosurgery (SRS) and Intensity Modulated Radiation Therapy (IMRT). Under the framework of the CRP, participants are expected to (i) contribute to the coordinated research activities, designed to test the small field Code of Practice and (ii) conduct measurements using their own radiotherapy beams and detectors, (iii) analyse and report the results of their measurements. The review of all results and discussions during RCMs will help identify implementation challenges and propose possible changes to the Code to ensure its smooth implementation in the clinic. The results of the CRP will be published in a Human Health Report to support implementation of the new Code of Practice in Member States.?

          Objectives

          To test the IAEA/AAPM small field code of practice, IAEA TRS 483.

          Specific objectives

          Test IAEA TRS483 for standard conditions.Test IAEA TRS483 for non-standard conditions.Participate in the small field audit organised by the dosimetry laboratory at Seibersdorf.Analyse the results and?publish a Human Health?Series Report on the findings of the CRP.

          Impact

          The CRP has benefited the radiotherapy community and patients in encouraging worldwide consistency for the method of measuring of absorbed dose to water for small fields. The participants of the CRP benefited by collaborating with expert agreement holders, that is demonstarted in the number of publications in peer-review journals and presentations at international conferences.

          Relevance

          The overall objective of this CRP was to test the new Code of Practice for small field dosimetry and assist medical physicists in its implementation in clinics in Member States. The ultimate benefit was to harmonize the dose delivered to patients receiving radiotherapy with any technology that is capable of producing small static photon fields.

          CRP Publications

          Year

          2022

          Publication URL

          https://aapm.onlinelibrary.wiley.com/doi/full/10.1002/mp.15797

          Description

          A multi-institutional evaluation of small field output factor determination following the recommendations of IAEA/AAAPM TRS-483

          Country/Organization

          Austria

          Year

          2020

          Publication URL

          https://pubmed.ncbi.nlm.nih.gov/33953502/

          Description

          Effect of three-dimensional detector orientation on small field output factors

          Country/Organization

          South Africa

          Year

          2021

          Publication URL

          https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8240910/

          Description

          Repeatability of small field output factor measurements with various detectors

          Country/Organization

          South Africa

          Year

          2022

          Publication URL

          https://aapm.onlinelibrary.wiley.com/doi/full/10.1002/mp.13092

          Description

          A dosimetric evaluation of the IAEA-AAPM TRS-483 code of practice for dosimetry of small static fields used in conventional Linac beams and comparison with IAEA TRS-398, AAPM TG51 and TG51 addendum

          Country/Organization

          USA

          Year

          2024

          Publication URL

          https://pubmed.ncbi.nlm.nih.gov/38700987/

          Description

          The IAEA remote audit of small field dosimetry for testing the implementation of the TRS-483 code of practice

          Country/Organization

          UN/IAEA

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