Zobrazeno 1 - 10
of 10
pro vyhledávání: '"Gregory B Moffitt"'
Autor:
Peter H. Goff, Gregory B Moffitt, Upendra Parvathaneni, Thomas Pulliam, Robert D. Stewart, Miles D, Paul Nghiem, George A. Sandison, Ning Cao, Keith M. Stantz
PurposeCancer cells produce innate immune signals following radiation damage, with STING pathway signaling as a critical mediator. High linear energy transfer (LET) radiations create larger numbers of DNA double-strand breaks (DSBs) per unit dose tha
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_________::3dd40bde376b53523a0316ae4440122f
https://doi.org/10.1101/2021.07.07.451516
https://doi.org/10.1101/2021.07.07.451516
Publikováno v:
Cells
Volume 9
Issue 10
Cells, Vol 9, Iss 2302, p 2302 (2020)
Volume 9
Issue 10
Cells, Vol 9, Iss 2302, p 2302 (2020)
Accurate dosimetry and determination of the biological effectiveness of boron neutron capture therapy (BNCT) is challenging because of the mix of different types and energies of radiation at the cellular and subcellular levels. In this paper, we pres
Autor:
David C. Argento, Eric Dorman, Robert D. Stewart, Marissa E. Kranz, Gregory B Moffitt, Robert Emery
Publikováno v:
2019 IEEE Radiation Effects Data Workshop.
Because of the cascade of secondary particles, including neutrons, produced in the shielding of large spacecraft, it is important to test the reliability of electronic devices exposed to energetic (fast) neutrons. Additionally, devices located near a
Autor:
Upendra Parvathaneni, Robert D. Stewart, Gregory B Moffitt, L. Wootton, George E. Laramore, George A. Sandison, Björn Hårdemark
Publikováno v:
Physics in Medicine & Biology. 65:165009
The University of Washington (UW) Clinical Neutron Therapy System (CNTS) has been used to treat over 3300 patients. Treatment planning for these patients is currently performed using an MV x-ray model in Pinnacle® adapted to fit measurements of fast
Autor:
George A. Sandison, Upendra Parvathaneni, George E. Laramore, Tatjana Jevremovic, L. Wootton, John T. Goorley, David C. Argento, Robert Emery, Gregory B Moffitt, Robert D. Stewart
Publikováno v:
Physics in Medicine & Biology. 63:105008
The University of Washington (UW) Clinical Neutron Therapy System (CNTS), which generates high linear energy transfer fast neutrons through interactions of 50.5 MeV protons incident on a Be target, has depth-dose characteristics similar to 6 MV x-ray
Publikováno v:
International Journal of Radiation Oncology*Biology*Physics. 96:E613-E614
Autor:
Gregory B Moffitt, Robert S. Miyaoka, David C. Argento, Robert D. Stewart, Sara St. James, D DeWitt
Publikováno v:
Medical Physics. 43:3453-3453
Purpose: Fast neutron therapy is offered at the University of Washington Medical Center for treatment of selected cancers. The hardware and control systems of the UW Clinical Neutron Therapy System are undergoing upgrades to enable delivery of IMNT.
Publikováno v:
Medical Physics. 40:313-313
Purpose: To quantify the physical characteristics of a therapeutic fast neutron beam at the University of Washington (UW) using a Monte Carlo model validated against measured percentage depth‐dose (PDD) and lateral profiles. Methods: MCNPX modeling
Autor:
Gregory B Moffitt, Robert D Stewart, George A Sandison, John T Goorley, David C Argento, Tatjana Jevremovic, Robert Emery, Landon S Wootton, Upendra Parvathaneni, George E Laramore
Publikováno v:
Physics in Medicine & Biology; May2018, Vol. 63 Issue 10, p1-1, 1p
Autor:
Gregory B Moffitt, Robert D Stewart, George A Sandison, John T Goorley, David C Argento, Tatjana Jevremovic
Publikováno v:
Physics in Medicine & Biology; 1/21/2016, Vol. 61 Issue 2, p1-1, 1p