[1]
|
Taylor HJ, Goldhaber M. Detection of Nuclear Disintegration in a Photographic Emulsion[J]. Nature, 1935, 135: 341. |
[2]
|
关兴彩. 0.5eV到数百keV能区中子通量密度监测器的理论设计与实验研究[D]. 兰州: 兰州大学, 2016. |
[3]
|
Kankaanranta L, Seppälä T, Koivunoro H, et al. Boron neutron capture therapy in the treatment of locally recurred head-and-neck cancer: final analysis of a phase Ⅰ/Ⅱ trial[J]. Int J Radiat Oncol Biol Phys, 2012, 82: e67-e75. doi: 10.1016/j.ijrobp.2010.09.057 |
[4]
|
Kasesaz Y, Khalafi H, Rahmani F. Optimization of the beam shaping assembly in the D-D neutron generators-based BNCT using the response matrix method[J]. Appl Radiat Isot, 2013, 82: 55-59. doi: 10.1016/j.apradiso.2013.07.008 |
[5]
|
Kasesaz Y, Rahmani F, Khalafi H. Investigation on the reflector/moderator geometry and its effect on the neutron beam design in BNCT[J]. Appl Radiat Isot, 2015, 106: 34-37. doi: 10.1016/j.apradiso.2015.08.012 |
[6]
|
Barth RF, Vicente MGH, Harling OK, et al. Current status of boron neutron capture therapy of high grade gliomas and recurrent head and neck cancer[J]. Radiat Oncol, 2012, 7: 146. doi: 10.1186/1748-717X-7-146 |
[7]
|
Kasesaz Y, Khalafi H, Rahmani F, et al. A feasibility study of the Tehran research reactor as a neutron source for BNCT[J]. Appl Radiat Isot, 2014, 90: 132-137. doi: 10.1016/j.apradiso.2014.03.028 |
[8]
|
Durisi E, Alikaniotis K, Borla O, et al. Design and simulation of an optimized e-linac based neutron source for BNCT research[J]. Appl Radiat Isot, 2015, 106: 63-67. doi: 10.1016/j.apradiso.2015.07.039 |
[9]
|
Rahmani F, Seifi S, Anbaran HT, et al. Design of photon converter and photoneutron target for High power electron accelerator based BNCT[J]. Appl Radiat Isot, 2015, 106: 45-48. doi: 10.1016/j.apradiso.2015.08.008 |
[10]
|
Skalyga V, Izotov I, Golubev S, et al. Neutron generator for BNCT based on high current ECR ion source with gyrotron plasma heating[J]. Appl Radiat Isot, 2015, 106: 29-33. doi: 10.1016/j.apradiso.2015.08.015 |
[11]
|
Sumita K, Takahashi A, Iida T, et al. Status of OKTAVIAN Ⅰ and proposal for OKTAVIAN Ⅱ[J]. Nuclear Science and Engineering, 1990, 106: 249-265. doi: 10.13182/NSE90-A29054 |
[12]
|
Barth RF, Mi P, Yang W. Boron delivery agents for neutron capture therapy of cancer[J]. Cancer Commun (Lond), 2018, 38: 35. doi: 10.1186/s40880-018-0299-7 |
[13]
|
Hu K, Yang Z, Zhang L, et al. Boron agents for neutron capture therapy[J]. Coordination Chemistry Reviews, 2020, 405: 213139. doi: 10.1016/j.ccr.2019.213139 |
[14]
|
Farr LE, Sweet WH, Robertson JS, et al. Neutron capture therapy with boron in the treatment of glioblastoma multiforme[J]. Am J Roentgenol Radium Ther Nucl Med, 1954, 71: 279-293. |
[15]
|
Goodwin JT, Farr LE, Sweet WH, et al. Pathological study of eight patients with glioblastoma multiforme treated by neutron-capture therapy using boron 10[J]. Cancer, 1955, 8: 601-615. doi: 10.1002/1097-0142(1955)8:3<601::AID-CNCR2820080326>3.0.CO;2-R |
[16]
|
Sweet WH, Javid M. The possible use of neutron-capturing isotopes such as boron 10 in the treatment of neoplasms. Ⅰ. Intracranial tumors[J]. J Neurosurg, 1952, 9: 200-209. doi: 10.3171/jns.1952.9.2.0200 |
[17]
|
Asbury AK, Ojemann RG, Nielsen SL, et al. Neuropatho-logic study of fourteen cases of malignant brain tumor treated by boron-10 slow neutron capture radiation[J]. J Neuropathol Exp Neurol, 1972, 31: 278-303. doi: 10.1097/00005072-197204000-00005 |
[18]
|
Mishima Y, Ichihashi M, Hatta S, et al. First human clinical trial of melanoma neutron capture. Diagnosis and therapy[J]. Strahlenther Onkol, 1989, 165: 251-254. |
[19]
|
Kankaanranta L, Seppälä T, Koivunoro H, et al. L-boronophenylalanine-mediated boron neutron capture therapy for malignant glioma progressing after external beam radiation therapy: a Phase Ⅰ study[J]. Int J Radiat Oncol Biol Phys, 2011, 80: 369-376. doi: 10.1016/j.ijrobp.2010.02.031 |
[20]
|
Soloway AH, Hatanaka H, Davis MA. Penetration of brain and brain tumor. Ⅶ. Tumor-binding sulfhydryl boron compounds[J]. J Med Chem, 1967, 10: 714-717. doi: 10.1021/jm00316a042 |
[21]
|
Hatanaka H, Nakagawa Y. Clinical results of long-surviving brain tumor patients who underwent boron neutron capture therapy[J]. Int J Radiat Oncol Biol Phys, 1994, 28: 1061-1066. doi: 10.1016/0360-3016(94)90479-0 |
[22]
|
Nakagawa Y, Pooh K, Kobayashi T, et al. Clinical review of the Japanese experience with boron neutron capture therapy and a proposed strategy using epithermal neutron beams[J]. J Neurooncol, 2003, 62: 87-99. |
[23]
|
Evangelista L, Jori G, Martini D, et al. Boron neutron capture therapy and 18F-labelled borophenylalanine positron emission tomography: a critical and clinical overview of the literature[J]. Appl Radiat Isot, 2013, 74: 91-101. doi: 10.1016/j.apradiso.2013.01.001 |
[24]
|
Ishiwata K. 4-Borono-2-18F-fluoro-L-phenylalanine PET for boron neutron capture therapy-oriented diagnosis: overview of a quarter century of research[J]. Ann Nucl Med, 2019, 33: 223-236. doi: 10.1007/s12149-019-01347-8 |
[25]
|
龚春慧. 硼中子俘获治疗中硼浓度在线实时监测系统关键技术研究[D]. 南京: 南京航空航天大学, 2018. |
[26]
|
Diaz AZ. Assessment of the results from the phase Ⅰ/Ⅱ boron neutron capture therapy trials at the Brookhaven National Laboratory from a clinician's point of view[J]. J Neurooncol, 2003, 62: 101-109. |
[27]
|
Matsumura A, Yamamoto T, Tsurubuchi T, et al. Current practices and future directions of therapeutic strategy in glioblastoma: survival benefit and indication of BNCT[J]. Appl Radiat Isot, 2009, 67: S12-S14. doi: 10.1016/j.apradiso.2009.03.010 |
[28]
|
Kageji T, Nagahiro S, Mizobuchi Y, et al. Boron neutron capture therapy (BNCT) for newly-diagnosed glioblastoma: comparison of clinical results obtained with BNCT and conventional treatment[J]. J Med Invest, 2014, 61: 254-263. doi: 10.2152/jmi.61.254 |
[29]
|
Kawabata S, Miyatake SI, Nonoguchi N, et al. Survival benefit from boron neutron capture therapy for the newly diagnosed glioblastoma patients[J]. Appl Radiat Isot, 2009, 67: S15-S18. doi: 10.1016/j.apradiso.2009.03.015 |
[30]
|
Kawabata S, Suzuki M, Hirose K, et al. Accelerator-based BNCT for patients with recurrent glioblastoma: a multicenter phase Ⅱ study[J]. Neurooncol Adv, 2021, 3: vdab067. |
[31]
|
Takeuchi K, Kawabata S, Hiramatsu R, et al. Boron Neutron Capture Therapy for High-Grade Skull-Base Meningioma[J]. J Neurol Surg B Skull Base, 2018, 79: S322-S327. doi: 10.1055/s-0038-1666837 |
[32]
|
Suzuki M, Kato I, Aihara T, et al. Boron neutron capture therapy outcomes for advanced or recurrent head and neck cancer[J]. J Radiat Res, 2014, 55: 146-153. doi: 10.1093/jrr/rrt098 |
[33]
|
Kato I, Fujita Y, Maruhashi A, et al. Effectiveness of boron neutron capture therapy for recurrent head and neck malignancies[J]. Appl Radiat Isot, 2009, 67: S37-S42. doi: 10.1016/j.apradiso.2009.03.103 |
[34]
|
Kato T, Hirose K, Tanaka H, et al. Design and construction of an accelerator-based boron neutron capture therapy (AB-BNCT) facility with multiple treatment rooms at the Southern Tohoku BNCT Research Center[J]. Appl Radiat Isot, 2020, 156: 108961. doi: 10.1016/j.apradiso.2019.108961 |
[35]
|
Menéndez PR, Roth BMC, Pereira MD, et al. BNCT for skin melanoma in extremities: updated Argentine clinical results[J]. Appl Radiat Isot, 2009, 67: S50-S53. doi: 10.1016/j.apradiso.2009.03.020 |
[36]
|
Yong Z, Song Z, Zhou Y, et al. Boron neutron capture therapy for malignant melanoma: first clinical case report in China[J]. Chin J Cancer Res, 2016, 28: 634-640. doi: 10.21147/j.issn.1000-9604.2016.06.10 |
[37]
|
Suzuki M, Endo K, Satoh H, et al. A novel concept of treatment of diffuse or multiple pleural tumors by boron neutron capture therapy (BNCT)[J]. Radiother Oncol, 2008, 88: 192-195. doi: 10.1016/j.radonc.2008.06.009 |
[38]
|
Seneviratne D, Advani P, Trifiletti DM, et al. Exploring the Biological and Physical Basis of Boron Neutron Capture Therapy (BNCT) as a Promising Treatment Frontier in Breast Cancer[J]. Cancers (Basel), 2022, 14: 3009. doi: 10.3390/cancers14123009 |
[39]
|
Wei Q, Kullberg EB, Gedda L. Trastuzumab-conjugated boron-containing liposomes for tumor-cell targeting; development and cellular studies[J]. Int J Oncol, 2003, 23: 1159-1165. |
[40]
|
Gadan MA, González SJ, Batalla M, et al. Application of BNCT to the treatment of HER2+ breast cancer recurrences: Research and developments in Arg |