Cite

[1] Gotanda T, Katsuda T, Gotanda R, et al. Evaluation of effective energy for QA and QC: measurement of half-value layer using radiochromic film density. Australas Phys Eng Sci Med. 2009;32(1):26-29.10.1007/BF0317862519400550Search in Google Scholar

[2] Gotanda T, Katsuda T, Gotanda R, et al. Half-Value Layer Measurement: Simple Process Method Using Radiochromic Film. Australas Phys Eng Sci Med. 2009;32(3):150-158.10.1007/BF0317864219873939Search in Google Scholar

[3] Gotanda T, Katsuda T, Gotanda R, et al. Evaluation of effective energy using radiochromic film and a step-shaped aluminum filter. Australas Phys Eng Sci Med. 2011;34(2):213-222.10.1007/s13246-011-0068-221437731Search in Google Scholar

[4] Gotanda R, Katsuda T, Gotanda T, et al. Computed tomography phantom for radiochromic film dosimetry. Australas Phys Eng Sci Med. 2007;30(3):194-199.10.1007/BF0317842618044303Search in Google Scholar

[5] Gotanda R, Katsuda T, Gotanda T, et al. Dose distribution in pediatric CT head examination using a new phantom with radiochromic film. Australa Phys Eng Sci Med. 2008;31(4):339-344.10.1007/BF0317860419239061Search in Google Scholar

[6] Katsuda, T; Gotanda, R. Dose Measuring Method And Phantom, And X-Ray Image Picking-Up Device Used For The Dose Measuring Method, WIPO Patent Application WO/2008/087952.Search in Google Scholar

[7] David F. Lewis. A Guide to Radiochromic Film Dosimetry with EBT2 and EBT3. Advanced Materials Group Ashland Specialty Ingredients, Spain, April 2014.Search in Google Scholar

[8] Zhu Y, Kirov AS, Mishra V, et al. Quantitative evaluation of radiochromic film response for two-dimensional dosimetry. Med Phys. 1997;24(2):223-231.10.1118/1.5980689048362Search in Google Scholar

[9] Katsuda T, Gotanda R, Gotanda T, et al. Reducing Non-uniformity Error of Radiochromic Film in the Diagnostic Range by Ultraviolet Exposure: Preliminary Study. IFMBE Proceedings. 2009;25(3):227-230.10.1007/978-3-642-03902-7_64Search in Google Scholar

[10] Katsuda T, Gotanda R, Gotanda T, et al. Correction of nonuniformity error of Gafchromic EBT2 and EBT3. J Appl Clin Med Phys. 2016;17(3):41-51.10.1120/jacmp.v17i3.5862569091627167258Search in Google Scholar

[11] Katsuda T, Gotanda R, Gotanda T, et al. Comparing three UV wavelengths for pre-exposing Gafchromic EBT-2 and EBT-3 films. J Appl Clin Med Phys. 2015;16(5):427-434.10.1120/jacmp.v16i5.5664569015126699326Search in Google Scholar

[12] Katsuda T, Gotanda R, Gotanda T, et al. Determining optimum wavelength of ultraviolet rays to pre-exposure of non-uniformity error correction in Gafchromic EBT2 films. Pol J Med Phys Eng. 2018; 24(1):11-14.10.2478/pjmpe-2018-0002Search in Google Scholar

[13] de Gruijl FR. Skin cancer and solar UV radiation. Eur J Cancer. 1999; 35(14): 2003-2009.10.1016/S0959-8049(99)00283-XSearch in Google Scholar

[14] NEC, Data of FL10BL-B: NEC Lighting, Ltd. (in Japanese). http://www.nelt.co.jp/products/_1833.html?p_encd=06111495. Accessed December, 19, 2018.Search in Google Scholar

eISSN:
1898-0309
Language:
English
Publication timeframe:
4 times per year
Journal Subjects:
Medicine, Biomedical Engineering, Physics, Technical and Applied Physics, Medical Physics