Literature DB >> 24568023

[Development of the 60Co gamma-ray standard field for therapy-level dosimeter calibration in terms of absorbed dose to water (N(D,w))].

Akifumi Fukumura1, Hideyuki Mizuno1, Mai Fukahori1, Suoh Sakata1.   

Abstract

A primary standard for the absorbed dose rate to water in a 60Co gamma-ray field was established at National Metrology Institute of Japan (NMIJ) in fiscal year 2011. Then, a 60Co gamma-ray standard field for therapy-level dosimeter calibration in terms of absorbed dose to water was developed at National Institute of Radiological Sciences (NIRS) as a secondary standard dosimetry laboratory (SSDL). The results of an IAEA/WHO TLD SSDL audit demonstrated that there was good agreement between NIRS stated absorbed dose to water and IAEA measurements. The IAEA guide based on the ISO standard was used to estimate the relative expanded uncertainty of the calibration factor for a therapy-level Farmer type ionization chamber in terms of absorbed dose to water (N(D,w)) with the new field. The uncertainty of N(D,w) was estimated to be 1.1% (k = 2), which corresponds to approximately one third of the value determined in the existing air kerma field. The dissemination of traceability of the calibration factor determined in the new field is expected to diminish the uncertainty of dose delivered to patients significantly.

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Year:  2012        PMID: 24568023

Source DB:  PubMed          Journal:  Igaku Butsuri        ISSN: 1345-5354


  1 in total

1.  Multicentre dose audit for clinical trials of radiation therapy in Asia.

Authors:  Hideyuki Mizuno; Shigekazu Fukuda; Akifumi Fukumura; Yuzuru-Kutsutani Nakamura; Cao Jianping; Chul-Koo Cho; Nana Supriana; To Anh Dung; Miriam Joy Calaguas; C R Beena Devi; Yaowalak Chansilpa; Parvin Akhter Banu; Masooma Riaz; Surya Esentayeva; Shingo Kato; Kumiko Karasawa; Hirohiko Tsujii
Journal:  J Radiat Res       Date:  2017-05-01       Impact factor: 2.724

  1 in total

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