نتایج جستجو برای: bnct

تعداد نتایج: 489  

Journal: :Progress in Nuclear Science and Technology 2011

Journal: :Indonesian Journal of Physics and Nuclear Applications 2016

Journal: :Indonesian Journal of Physics and Nuclear Applications 2019

Journal: :Journal of radiation research 2018
Eisuke Sato Alexander Zaboronok Tetsuya Yamamoto Kei Nakai Sergey Taskaev Olga Volkova Ludmila Mechetina Alexander Taranin Vladimir Kanygin Tomonori Isobe Bryan J Mathis Akira Matsumura

In the current article, we provide in vitro efficacy evaluation of a unique accelerator-based neutron source, constructed at the Budker Institute of Nuclear Physics (Novosibirsk, Russian Federation), for boron neutron capture therapy (BNCT), which is particularly effective in the case of invasive cancers. U251MG, CHO-K1 and V79 cells were incubated and irradiated in various concentrations of bo...

2018
Takahiro Morita Hiroaki Kurihara Kenta Hiroi Natsuki Honda Hiroshi Igaki Jun Hatazawa Yasuaki Arai Jun Itami

BACKGROUND We evaluated dynamic changes in 18F-borono-L-phenylalanine (18F-BPA) uptake in unresectable, advanced, or recurrent squamous cell carcinoma of the head and neck (SCC) and malignant melanoma (MM) during boron neutron capture therapy (BNCT) patient selection. METHODS Dynamic changes in the maximum standardized uptake value (SUVmax), tumor-to-normal tissue ratio (TNR), and tumor-to-bl...

Journal: :Applied radiation and isotopes : including data, instrumentation and methods for use in agriculture, industry and medicine 2009
S Capuani T Gili M Bozzali S Russo P Porcari C Cametti M Muolo E D'Amore B Maraviglia G Lazzarino F S Pastore

One of the main limitations for BNCT effectiveness is the insufficient intake of (10)B nuclei within tumour cells. This work was aimed at investigating the use of L-DOPA as enhancer for boronophenylalanine (BPA) uptake in the C6 glioma model. The investigation was first performed in vitro, and then extended in vivo to the animal model. BPA accumulation in C6 glioma cells was assessed, using rad...

2017
Joo-Young Jung Do-Kun Yoon Brendan Barraclough Heui Chang Lee Tae Suk Suh Bo Lu

The aim of this study is to compare between proton boron fusion therapy (PBFT) and boron neutron capture therapy (BNCT) and to analyze dose escalation using a Monte Carlo simulation. We simulated a proton beam passing through the water with a boron uptake region (BUR) in MCNPX. To estimate the interaction between neutrons/protons and borons by the alpha particle, the simulation yielded with a v...

2000
Katja Langen Arlene J. Lennox Paul M. DeLuca

The Neutron Therapy Facility at Fermilab has treated cancer patients since 1976. Since then more than 2,300 patients have been treated and a wealth of clinical information accumulated. The therapeutic neutron beam at Fermilab is produced by bombarding a beryllium target with 66 MeV protons. The resulting continuous neutron spectrum ranges from thermal to 66 MeV in neutron energy. It is clear th...

2014
Hiroki Tanaka Yoshinori Sakurai Minoru Suzuki Shin-ichiro Masunaga Koichi Takamiya Akira Maruhashi Koji Ono

Boron neutron capture therapy (BNCT) can be utilized to selectively kill cancer cells using a boron compound that accumulates only in cancer cells and not in normal cells. Tumor-bearing animals treated by BNCT are routinely used to evaluate long-term antitumor effects of new boron compounds. Alpha-autoradiography is one of the methods employed in the evaluation of antitumor effects. However, a ...

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