Zobrazeno 1 - 10
of 12
pro vyhledávání: '"T. E. Blue"'
Publikováno v:
Proceedings of the 1989 IEEE Particle Accelerator Conference, . 'Accelerator Science and Technology.
A conceptual design of a low-energy neutron generator for treatment of brain tumors by boron neutron capture therapy (BNCT) is presented. The concept is based on a 2.5-MeV proton beam from a radio-frequency quadrupole (RFQ) linac, and the neutrons ar
Publikováno v:
Journal of neuro-oncology. 33(1-2)
The dismal clinical results in the treatment of glioblastoma multiforme despite aggressive surgery, conventional radiotherapy, and chemotherapy, either alone or in combination has led to the development of alternative therapeutic modalities. Among th
Publikováno v:
Medical physics. 20(2 Pt 1)
The effect of head phantom size on the 10B and 1H[n,gamma]2H dose distributions for a broad epithermal neutron radiation field generated by an accelerator-based epithermal neutron source for boron neutron capture therapy (BNCT) have been studied. Als
Autor:
T E, Blue, M S, Jarzemba
Publikováno v:
Health physics. 63(2)
It was previously suggested that the calibration factor (CF) relating the detected activity (A) of the radon decay products 214Bi and 214Pb within a charcoal canister to the radon concentration (CR) in air be defined as CF = A/(E x DF x CR), where E
Publikováno v:
Basic life sciences. 54
An accelerator-based neutron irradiation facility (ANIF), which has been proposed for BNCT, is based on a 2.5-MeV proton beam bombarding a thick lithium target. Neutrons which are emitted from the lithium target are too energetic for BNCT and must be
Autor:
D. B. Harris, T. E. Blue
Publikováno v:
Nuclear Science and Engineering. 77:463-469
It is proposed that the ratio of deuterium-tritium (D-T) to neutron producing deuterium-deuterium (D-D) reactions (RDT/RDD) be used as a diagnostic of the fuel density-radius product (〈ρR〉) for ini...
Publikováno v:
Journal of Applied Physics. 54:615-620
The ratio of D‐3He to D‐D reactions (RD3He/RDD) is proportional to fuel ρR for D2 and D‐T filled targets. For D2 filled targets, the ratio varies as (RD3He/RDD)=0.14ρR, for ρR≲0.02 g/cm2. For present day D2 filled target experiments, it is
Publikováno v:
Radiation Protection Dosimetry. 29:199-202
On se propose de definir la relation entre la concentration en radon gazeux du sol et la concentration permanente en radon dans une cavite du sol d'une par et d'autre part de definir la relation entre l'activite du charbon de bois a l'interieur de la