نتایج جستجو برای: bnct

تعداد نتایج: 489  

C. Geng, C. Gong, D. Shu, H. Yu, S. Fatemi, W. Shao, X. Tang,

Background: Boron neutron capture therapy (BNCT) is a binary radiotherapy combining biochemical targeting with neutron irradiation. However, monitoring the boron distribution is a fundamental problem in BNCT. Prompt gamma rays emitted by boron capture reaction can be used to address the issue. Materials and Methods: The general-purpose Monte Carlo toolkits Geant4 and MCNP were used for the simu...

2006
Rolf F. Barth Albert H. Soloway Ralph G. Fairchild

brain tumors. Shortly thereafter, a clinical trial was initiated at the Brookhaven National Laboratory in cooperation with Sweet and others at the Massachusetts General Hospital utilizing borax as the capture agent (5, 6). The objective at that time was to use BNCT as an adjunct to surgery for the treatment of patients with the most highly malignant and therapeutically refractory of all brain t...

2006
Julie Catherine Turcotte Jeffrey A. Coderre Jeffrey Coderre

A number of boron neutron capture therapy (BNCT) clinical trials are currently underway around the world. Due to the small number of patients at each of the individual centers, it is desirable to pool the clinical data from each into one patient database. Before this can be done, a number of differences between the clinical centers must be evaluated. The patients treated at the BNCT centers at ...

2003
Grzegorz Tracz Ludwik Dąbkowski Dominik Dworak Krzysztof Pytel Urszula Woźnicka

Boron Neutron Capture Therapy (BNCT) [4, 5] is a form of a radiation therapy used for treatment of some kinds of cancer (mainly glioblastoma multiforme) which, due to their character, are hard to be extracted with surgical methods. The BNCT method involves the delivery of a capture compound − the B isotope is usually used – which preferentially concentrates in the cancer tissue, followed by the...

2016
Masayori Ishikawa Tetsuya Yamamoto Akira Matsumura Junichi Hiratsuka Shin-Ichi Miyatake Itsuro Kato Yoshinori Sakurai Hiroaki Kumada Shubhechha J. Shrestha Koji Ono

BACKGROUND Real-time measurement of thermal neutrons in the tumor region is essential for proper evaluation of the absorbed dose in boron neutron capture therapy (BNCT) treatment. The gold wire activation method has been routinely used to measure the neutron flux distribution in BNCT irradiation, but a real-time measurement using gold wire is not possible. To overcome this issue, the scintillat...

2014
Kenta Takada Tomonori Isobe Hiroaki Kumada Tetsuya Yamamoto Koichi Shida Daisuke Kobayashi Yutaro Mori Hideyuki Sakurai Takeji Sakae

Boron neutron capture therapy (BNCT) is a radiation treatment for cancer that uses charged particles from the B(n, α) Li reaction. The dose from the resulting alpha particles and Li nuclei is called the boron dose, and is the primary dose delivered to tumor cells. Dose to the tumor and surrounding cells during neutron beam irradiation comes not only from the boron dose, but also from dose resul...

2014
Makoto Shirakawa Kei Nakai Fumiyo Yoshida Tetsuya Yamamoto Akira Matsumura

One of the radiotherapy has boron neutron capture therapy (BNCT). They may make it easier to kill tumor cells with BNCT. In BNCT, it is important for boron agents, which have high selectively and high accumulation, to be introduced into tumor cells. To date, the main boron compounds used by the clinical study are sodium mercaptododecaborate (BSH) and pboronophenylalanine (BPA). But, there are n...

Journal: :Molecular cancer therapeutics 2008
Andrea Wittig Heinrich F Arlinghaus Christian Kriegeskotte Raymond L Moss Klaas Appelman Kurt W Schmid Wolfgang A G Sauerwein

The exact intracellular localization and distribution of molecules and elements becomes increasingly important for the development of targeted therapies and contrast agents. We show that laser postionization secondary neutral mass spectrometry (laser-SNMS) is well suited to localize particular elements and small molecules with subcellular spatial resolution applying the technique exemplary to B...

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