Showing results (1-10 of 16) with videos related to
Sort By:
Pageof 2
Clinical Oncology (Royal College of Radiologists (Great Britain))|March 16, 2019
Evolution of the Supermodel: Progress in Modelling Radiotherapy Response in MiceK T ButterworthThe British Journal of Radiology|June 9, 2015
Prostate cancer radiotherapy: potential applications of metal nanoparticles for imaging and therapyJ A Coulter, K T Butterworth, S JainThe British Journal of Radiology|November 13, 2014
Small animal image-guided radiotherapy: status, considerations and potential for translational impactK T Butterworth, K M Prise, F VerhaegenClinical Oncology (Royal College of Radiologists (Great Britain))|August 29, 2021
A Brief Overview of the Preclinical and Clinical Radiobiology of Microbeam RadiotherapyH Fukunaga, K T Butterworth, S J McMahon, et al.Clinical Oncology (Royal College of Radiologists (Great Britain))|July 16, 2013
Bystander signalling: exploring clinical relevance through new approaches and new modelsK T Butterworth, S J McMahon, A R Hounsell, et al.Nanotechnology|April 16, 2016
Protein disulphide isomerase as a target for nanoparticle-mediated sensitisation of cancer cells to radiationL E Taggart, S J McMahon, K T Butterworth, et al.Radiation Research|October 28, 2011
Cell survival responses after exposure to modulated radiation fieldsC Trainor, K T Butterworth, C K McGarry, et al.Radiation Research|September 4, 2008
Variation of strand break yield for plasmid DNA irradiated with high-Z metal nanoparticlesK T Butterworth, J A Wyer, M Brennan-Fournet, et al.Physics in Medicine and Biology|July 11, 2009
Fragmentation and plasmid strand breaks in pure and gold-doped DNA irradiated by beams of fast hydrogen atomsJ A Wyer, K T Butterworth, D G Hirst, et al.Nanotechnology|July 6, 2010
Evaluation of cytotoxicity and radiation enhancement using 1.9 nm gold particles: potential application for cancer therapyK T Butterworth, J A Coulter, S Jain, et al.Pageof 2