In case that corrections are made, overwrite the modified version in the following web page: https://www.rri.kyoto-u.ac.jp/PUB/report/PR/ProgRep2024/ProgRep2024.htmlPR7-1 Establishment of Beam-quality Estimation Method in BNCT Irradiation Field using Dual Phantom Technique (VIII)/ Y. Sakurai et al. (R6P7-1) [48]PR7-2 Biological effects of BNCT on glioma cells in 3D culture/ N. Kondo et al. (R6P7-2) [49]PR7-3 The Response After BNCT on 3D Oral Cancer Model Using Patient-Derived Cancer-Associated Fibroblasts/ K. Igawa et al. (R6P7-3) [50]PR7-4 Verfication of BNCT Effect on Hematological Cancer Cells and Dosimetry for Expansion of BNCT Cases/ S. Yoshihashi et al. (R6P7-4) [51]PR7-5 Development and evaluation of 3D gel dosimeter for the measurement of dose distribution in BNCT/ S. Hayashi et al. (R6P7-7) [52]PR7-6 Establishment of Three-dimensional Dose Distribution Estimation Method for BNCT using Radiochromic Gel Dosimeter (II)/ Y. Sakurai et al. (R6P7-8) [53]PR7-7 Measurement of Neutron Depth Distribution for Quality Assurance in Boron Neutron Capture Therapy/ M. Takada et al. (R6P7-10) [54]PR7-8 Measurement of wavelength-dependent luminescence for beam quality assurance of BNCT/ K. Tanaka et al. (R6P7-11) [55]PR7-9 Feasibility of Water/Fat Decomposition Technique Using Multi-Energy X-ray Computed Tomography for BNCT Dose Calculation/ T. Takata et al. (R6P7-12) [56
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