Zobrazeno 1 - 10
of 10
pro vyhledávání: '"Liam R. J. Day"'
Autor:
Lloyd M. L. Smyth, Cameron J. Nowell, Leonie Cann, Liam R. J. Day, Peter Rogers, Jacqueline F. Donoghue, Helen B. Forrester, Jeffrey C. Crosbie, Jessica Ventura
Publikováno v:
International Journal of Radiation Biology. 97:642-656
γH2AX biodosimetry has been proposed as an alternative dosimetry method for microbeam radiation therapy (MRT) because conventional dosimeters, such as ionization chambers, lack the spatial resolution required to accurately measure the MRT valley dos
Autor:
Liam R. J. Day, Sashendra Senthi, Jeffrey C. Crosbie, Lloyd M. L. Smyth, Peter Rogers, Katrina Woodford
Publikováno v:
Physica Medica. 60:111-119
Purpose: Synchrotron Microbeam Radiation Therapy (MRT) is a pre-clinical modality characterised by spatial dose fractionation on a microscopic scale. Treatment planning studies using clinical datasets have not yet been conducted. Our aim was to inves
Autor:
Paolo Pellicioli, Lloyd M. L. Smyth, Liam R. J. Day, Jeffrey C. Crosbie, Mattia Donzelli, Stefan Bartzsch, Micah Barnes
Publikováno v:
Physics in medicine and biology. 66(5)
Synchrotron Radiotherapy (SyncRT) is a preclinical radiation treatment which delivers synchrotron x-rays to cancer targets. SyncRT allows for novel treatments such as Microbeam Radiotherapy, which has been shown to have exceptional healthy tissue spa
Autor:
Jessica Lye, Paolo Pellicioli, M. Barnes, Frank M. Gagliardi, Peter Rogers, Andrew W. Stevenson, Lloyd M. L. Smyth, Christopher Poole, Jayde Livingstone, D. J. Butler, Jeffrey C. Crosbie, Daniel Hausermann, Liam R. J. Day
Publikováno v:
Physica medica : PM : an international journal devoted to the applications of physics to medicine and biology : official journal of the Italian Association of Biomedical Physics (AIFB). 77
Experimental measurement of Synchrotron Radiotherapy (SyncRT) doses is challenging, especially for Microbeam Radiotherapy (MRT), which is characterised by very high dynamic ranges with spatial resolutions on the micrometer scale. Monte Carlo (MC) sim
Publikováno v:
Medical Physics. 45:1255-1265
Purpose: Synchrotron Radiation Therapy techniques are currently being trialed and commissioned at synchrotrons around the world. The patient treatment planning systems (TPS) developed for these treatments use simulated data of the synchrotron x-ray b
Autor:
D. Hausermann, S. Ryan, Stefan Bartzsch, M. Klein, M. Barnes, L. Smyth, Liam R. J. Day, D. J. Butler, Jeffrey C. Crosbie, Mattia Donzelli
Publikováno v:
Radiotherapy and Oncology. 152:S999
Autor:
Stéphanie Corde, Jeffrey C. Crosbie, Mattia Donzelli, Lloyd M. L. Smyth, Stefan Bartzsch, Moeava Tehei, Michael L. F Lerch, Paolo Pellicioli, Liam R. J. Day, Michael Krisch
Publikováno v:
Phys. Med. Biol. 65:02TR01 (2020)
In the last 25 years microbeam radiation therapy (MRT) has emerged as a promising alternative to conventional radiation therapy at large, third generation synchrotrons. In MRT, a multi-slit collimator modulates a kilovoltage x-ray beam on a micromete
Autor:
Liam R. J. Day, Jayde Livingstone, Jacqueline F. Donoghue, Peter Rogers, Lloyd M. L. Smyth, Jeffrey C. Crosbie, Jessica Ventura, Tracy E. Bailey
Publikováno v:
Scientific Reports
Scientific Reports, Vol 8, Iss 1, Pp 1-11 (2018)
Scientific Reports, Vol 8, Iss 1, Pp 1-11 (2018)
Synchrotron radiation can facilitate novel radiation therapy modalities such as microbeam radiation therapy (MRT) and high dose-rate synchrotron broad-beam radiation therapy (SBBR). Both of these modalities have unique physical properties that could
Publikováno v:
Biomedical Physics & Engineering Express. 3:025001
In this paper we use a research licensed version of the EclipseTM treatment planning system (TPS) from Varian Medical Systems, Inc. to develop a novel treatment planning environment for synchrotron microbeam radiotherapy (MRT). This research license
Publikováno v:
Biomedical Physics & Engineering Express; Apr2017, Vol. 3 Issue 2, p1-1, 1p