718 results on '"Sakurai, Yoshinori"'
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2. BNCT pancreatic cancer treatment strategy with glucose-conjugated boron drug
3. Experimental verification of liquid multilayer spectrometer in neutron irradiation field for boron neutron capture therapy
4. Feasibility of multilayer neutron spectrometer with Backus and Gilbert approach using moderator-combination selection for energy-resolution optimization in Boron Neutron Capture Therapy irradiation field
5. Development of a prompt gamma-ray detector with an 8 × 8 array LaBr 3(Ce) scintillator and a multi-pixel photon counter for boron neutron capture therapy
6. Carborane bearing pullulan nanogel-boron oxide nanoparticle hybrid for boron neutron capture therapy
7. Characteristics of optically stimulated luminescent dosimeter of beryllium oxide in BNCT irradiation field
8. Air ionization chamber combined with LiCaAlF6 scintillator for [formula omitted]-ray dose evaluation in boron neutron capture therapy
9. Contributors
10. Future works
11. Principle and current status
12. Design, Synthesis, and Biological Applications of Boron-Containing Polyamine and Sugar Derivatives
13. First optical observation of 10B-neutron capture reactions using a boron-added liquid scintillator for quality assurance in boron neutron capture therapy
14. Persistent elevation of lysophosphatidylcholine promotes radiation brain necrosis with microglial recruitment by P2RX4 activation
15. Evaluation of the thermal neutron sensitivity, output linearity, and gamma-ray response of optical fiber-based neutron detectors using Li-glass scintillator
16. Overcoming immunotherapy resistance and inducing abscopal effects with boron neutron immunotherapy (B‐NIT).
17. Extracellular Vesicles Comprising Carborane Prepared by a Host Exchanging Reaction as a Boron Carrier for Boron Neutron Capture Therapy.
18. Photoneutron-induced damage reduction for cardiac implantable electronic devices using neutron-shielding sheets in high-energy X-ray radiotherapy: A phantom study
19. Improving the spatial resolution of a pixelated LaBr3(Ce) scintillator coupled with a multi-pixel photon counter array for boron neutron capture therapy
20. The synthetic fluorinated tetracarboranylchlorin as a versatile antitumor photoradiosensitizer
21. Development of real-time neutron detectors with different sensitivities to thermal, epithermal, and fast neutrons in BNCT
22. Evaluation of the thermal neutron sensitivity, output linearity, and gamma-ray response of optical fiber-based neutron detectors using Li-glass scintillator
23. A characterization of LCV micelle gel dosimeters for boron neutron capture therapy.
24. Neutron flux evaluation algorithm with a combination of Monte Carlo and removal‐diffusion calculation methods for boron neutron capture therapy.
25. Estimation of internal-exposure contribution in radiation dose exposure for boron neutron capture therapy.
26. BNCT Pancreatic Cancer Treatment Strategy with Glucose- Conjugated Boron Drug
27. 10255-BOT-5 EXOSOMAL MIRNAS RELEASED FROM GLIOBLASTOMA CELLS AFTER BNCT TARGET CELL PROLIFERATION AND SURVIVAL SIGNALS
28. HER‐2‐Targeted Boron Neutron Capture Therapy with Carborane‐integrated Immunoliposomes Prepared via an Exchanging Reaction
29. A characterization of dye gel dosimeters for boron neutron capture therapy - dose response to gamma rays
30. Feasibility of cylindrical-hemisphere accurate remote multilayer spectrometer with the approach of backus and Gilbert in combination selection for Boron Neutron Capture Therapy irradiation field
31. Development of a Gadolinium–Boron-Conjugated Albumin for MRI-Guided Neutron Capture Therapy
32. Influence of field-of-view and section thickness of diagnostic imaging on thermal neutron flux estimation in dose-planning for boron neutron capture therapy
33. Investigation of the usability of cone-beam computed tomography images using digital radiography equipment for boron neutron capture therapy treatment planning in the sitting position
34. Development of the Follow-Up Human 3D Oral Cancer Model in Cancer Treatment
35. Influence of lung physical density on dose calculation in boron neutron capture therapy for malignant pleural mesothelioma
36. Computational investigation of suitable polymer gel composition for the QA of the beam components of a BNCT irradiation field
37. Block copolymer-boron cluster conjugate for effective boron neutron capture therapy of solid tumors
38. Molecular Structural Analysis of HPRT Mutations Induced by Thermal and Epithermal Neutrons in Chinese Hamster Ovary Cells
39. Development of optimization method for uniform dose distribution on superficial tumor in an accelerator-based boron neutron capture therapy system
40. Phospholipid‐Coated Boronic Oxide Nanoparticles as a Boron Agent for Boron Neutron Capture Therapy
41. 放射線領域における新たな光感受性物質を投与した脳腫瘍培養細胞と植付マウスでの放射線と光の併用照射効果
42. Carborane-Containing Hydroxamate MMP Ligands for the Treatment of Tumors Using Boron Neutron Capture Therapy (BNCT): Efficacy without Tumor Cell Entry
43. Development and evaluation of dose calculation algorithm with a combination of Monte Carlo and point-kernel methods for boron neutron capture therapy
44. The impact of TP53 status of tumor cells including the type and the concentration of administered 10B delivery agents on compound biological effectiveness in boron neutron capture therapy
45. Immunohistochemical Distribution and Neurochemical Characterization of Huntingtin-Associated Protein 1 Immunoreactive Neurons in the Adult Mouse Lingual Ganglia
46. Air ionization chamber combined with LiCaAlF6 scintillator for γ-ray dose evaluation in boron neutron capture therapy
47. Maleimide-functionalized closo-dodecaborate albumin conjugates (MID-AC): Unique ligation at cysteine and lysine residues enables efficient boron delivery to tumor for neutron capture therapy
48. Design study of multi-imaging plate system for BNCT irradiation field at Kyoto university reactor
49. Detection of γH2AX foci in mouse normal brain and brain tumor after boron neutron capture therapy
50. Boron neutron capture therapy (BNCT) as a new approach for clear cell sarcoma (CCS) treatment: Trial using a lung metastasis model of CCS
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