References
- S.H. Lee, Current status and future prospect of regulation for radiation safety in medicine, 2015 Winter meeting of The Korean Association for Radiation Protection, 5 Feb. 2015 (in Korean).
- J.S. Yang, Development of requirements for quality assurance of radiation therapy, 2015 Radiation Security Symposium, Daejeon, 9 Sep. 2015 [in Korean].
- KINS, Radiation Safety Information System [Internet].[cited July 2016]. Available from: http://rasis.kins.re.kr (in Korean).
- ICRU, Determination of absorbed dose in a patient irradiated by beams of X or gamma rays in radiotherapy procedures, ICRU Report No. 24, MD, 1976.
- ICRU, Dosimetry of high-energy photon beams on standards of absorbed dose to water, ICRU Report No. 64, MD, 2001.
- IAEA, Absorbed dose determination in external beam radiotherapy: an international code of practice for dosimetry based on standards of absorbed dose to water, TRS 398, Vienna, 2000.
- S.R. Domen, P.J. Lamperti, A heat-loss-compensated calorimeter: theory, design, and performance, J. Res. Natl. Stand. Sect A 78A (1974) 595-610. https://doi.org/10.6028/jres.078A.037
- S.R. Domen, Advances in calorimetry for radiation dosimetry, in: K.R. Kase, B.E. Bjarngard, F.H. Attix (Eds.), The Dosimetry of Ionizing Radiation, Vol. II, Academic Press, Inc., London, 1985, pp. 245-320.
- J. Chavaudra, B. Chauvenet, A. Wambersie, Medicine and ionizing radiation: metrology requirements, C.R. Phys 5 (2004) 921-931. https://doi.org/10.1016/j.crhy.2004.09.004
- M.R. McEwen, D.T. Burns, A.J. Williams, The use of thermistors in the NPL electron-beam calorimeter, NPL Report RSA(EXT) 41, London, 1993.
- J.P. Seuntjens, A.R. Dusautoy, Review of calorimeter based absorbed dose to water standards, in: Proceedings of International Symposium on Standards and Codes of Practice in Medical Radiation, Vienna, Nov. 2002, IAEA-CN-96-3, Vol. 1 (2003) 37-66.
- J. Witzani, K.E. Duftschmid, Ch. Strachotinsky, A. Leitner, A graphite absorbed-dose calorimeter in the quasi-isothermal mode of operation, Metrologia 20 (1984) 73-79. https://doi.org/10.1088/0026-1394/20/3/001
- A. Ostrowsky, J. Daures, The construction of the graphite calorimeter GR9 at LNE-LNHB, Rapoort CEA-R-6184, LNE-LNHB, 2008.
- J. Daures, A. Ostrowsky, B. Rapp, Small section graphite calorimeter (GR-10) at LNE-LNHB for measurements in small beams for IMRT, Metrologia 49 (2012) S174. https://doi.org/10.1088/0026-1394/49/5/S174
- S. Dufreneix, J.-M. Bordy, J. Daures, F. Delaunay, A. Ostrowsky, Construction of a large graphite calorimeter for measurements in small fields used in radiotherapy, 16th International Congress of Metrology, Paris, Oct. 2013, pp. 1-4.
- Y. Morishita, M. Kato, N. Takata, T. Kurosawa, T. Tanaka, N. Saito, A standard for absorbed dose rate to water in a 60Co field using a graphite calorimeter at the National Metrology Institute of Japan, Radiat. Prot. Dosim. 154 (2013) 331-339. https://doi.org/10.1093/rpd/ncs235
- S. Picard, D.T. Burns, P. Roger, Determination of the specific heat capacity of a graphite sample using absolute and differential methods, Metrologia 44 (2007) 294-302. https://doi.org/10.1088/0026-1394/44/5/005
- Dupont, Kapton(R) HN technical Data Sheet [Internet].[cited 1 August 2016]. Available from: http://www2.dupont.com/Kapton/en_US/assets/downloads/pdf/HN_datasheet.pdf.
- J.S. Steinhart, S.R. Hart, Calibration curves for thermistors, Deep-Sea Res. Oceanogr. Abstr. 15 (1968) 497-503. https://doi.org/10.1016/0011-7471(68)90057-0
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