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Consideration of Surface Dose and Depth of Maximum Dose Using Various Detectors for High Energy X-rays
Yong Ha Lee, Kyung Ran Park, Jong Young Lee, Ik Jae Lee, Young Woo Vahc, Kang Kyoo Lee
Radiation Oncology Journal. 2003;21(4):322-329.

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Annals of the New York Academy of Sciences. 1969;161(1 High-Energy R):168-175   Crossref logo
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Determination of percentage depth-dose curves for electron beams using different types of detectors
Medical Physics. 2001;28(3):298-302   Crossref logo
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SU-E-T-520: Deriving Energy Spectrum From Depth Dose Measurements for X-Rays of CT Scanner
Medical Physics. 2013;40(6Part19):325-325   Crossref logo
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Dosimetric evaluation of alanine-in-glass dosimeters at clinical dose levels using high-energy X-rays from a linear accelerator
Radiation Measurements. 2010;45(1):133-135   Crossref logo
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Depth distribution of the absorbed energy and dose in various materials irradiated by bremsstrahlung at a maximum energy of up to 1000 MeV
Soviet Physics Journal. 1973;14(1):15-20   Crossref logo
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Absolute depth-dose-rate measurements for an Ir192 HDR brachytherapy source in water using MOSFET detectors
Medical Physics. 2006;33(6Part1):1532-1539   Crossref logo
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Lithium fluoride detectors for recording gamma rays over a wide dose range
Soviet Atomic Energy. 1986;61(2):641-643   Crossref logo
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SU-GG-T-316: Measurement of Photoneutron Depth Dose Equivalent and Beam Profiles of a High-Energy X-Ray Beam of Varian 2100C Medical Linear Accelerator by Thermoluminescent and CR-39 Detectors
Medical Physics. 2010;37(6Part20):3258-3258   Crossref logo
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SU-D-BRF-02: In Situ Verification of Radiation Therapy Dose Distributions From High-Energy X-Rays Using PET Imaging
Medical Physics. 2014;41(6Part3):115-115   Crossref logo
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Independent checking of the delivered dose for high-energy X-rays using a hand-held PC
Radiotherapy and Oncology. 2001;58(2):201-208   Crossref logo
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