نتایج جستجو برای: dose enhancement factor

تعداد نتایج: 1235773  

Journal: :iranian journal of medical physics 0
ahad ollah ezzati faculty of physics, university of tabriz, tabriz, iran seyed rabi mahdavi department of medical physics, iran university of medical sciences, tehran, iran

introduction in this study, we aimed to calculate dose enhancement factor (def) for gold (au) and iron (fe) nanoparticles (nps) in brachytherapy and teletherapy, using monte carlo (mc) method. materials and methods in this study, a new algorithm was introduced to calculate dose enhancement by aunps and fenps for iridium-192 (ir-192) brachytherapy and cobalt-60 (co-60) teletherapy sources, using...

Journal: :iranian journal of medical physics 0
hassan ranjbar msc. student, medical radiation dept., amir kabir university of technology, tehran, iran mojtaba shamsaei zafarqandi assistant professor, medical radiation dept., amir kabir university of technology, tehran, iran mahammad reza ghasemi assistant professor , nuclear science and technology research institute, tehran, iran

introduction: secondary radiation such as photoelectrons, auger electrons and characteristic radiations cause a local boost in dose for a tumor when irradiated with an external x-ray beam after being loaded with elements capable of activating the tumor, e.g.; i and gd. materials and methods:  in this investigation, the mcnpx code was used for simulation and calculation of dose enhancement facto...

Hassan Ranjbar, Mahammad Reza Ghasemi Mojtaba Shamsaei Zafarqandi

Introduction: Secondary radiation such as photoelectrons, Auger electrons and characteristic radiations cause a local boost in dose for a tumor when irradiated with an external X-ray beam after being loaded with elements capable of activating the tumor, e.g.; I and Gd. Materials and Methods:  In this investigation, the MCNPX code was used for simulation and calculation of dose enhancement facto...

Journal: :nanomedicine research journal 0
hossein khosravi health institute, chmran hospital, tehran, iran. armita mahdavi deparment of basic and clinical research, tehran heart center, tehran university of medical sciences faezeh rahmani department of physics, k. n. toosi university of technology, tehran, iran. ahmad ebadi health institute, chamran hospital, tehran, iran

objective(s): in this study we evaluate the impact of the different aspects of gold nano-particles (gnps) on the target absorptive dose enhancement factor (def) during external targeted radiotherapy with photon beams ranging from kilovolt to megavolt energies using monte carlo simulation. methods: we have simulated the interaction of photon beams with various energies of radiation using water s...

Journal: :modares journal of medical sciences: pathobiology 2012
karim khoshgard bijan hashemi azim arbabi mohammad javad rasaee masoud soleimani

objective: due to recent advances in nanotechnology it is now possible to accumulate high atomic-number nanomaterial such as gold nanoparticles (gnps) in cancerous cells and take advantage of their absorbed dose enhancement property as radiosensitizing agents. this study aimed to investigate the absorbed dose enhancement factor due to the presence of pegylated gnps under the irradiation of an m...

Journal: :iranian journal of radiation research 0
m. khadem-abolfazli physics department, mazandaran university, babolsar, iran m. mahdavi physics department, mazandaran university, babolsar, iran s.r.m. mahdavi medical physics department, iran university of medical sciences, tehran, iran gh. ataei para medical school, babol university of medical sciences, babol, iran

background: radiation-sensitive polymer gels are among the most promising three-dimensional dose verification tools and tissue-like developed to date. among the special features of this type of dosimeters, is be doped with other elements or chemicals which made them appropriate for investigating of dose enhancement with contrast agents, by high atomic number. material and methods: in this study...

Journal: :iranian journal of radiation research 0
n. banaee department of engineering, science and research branch, islamic azad university, tehran, iran h.a. nedaie radiotherapy oncology department, cancer research center, cancer institute, tehran university of medical sciences, tehran, iran a.r. shirazi department of medical physics and biomedical engineering, faculty of medicine and radiation oncology research centre, cancer institute, tehran university of medical sciences, tehran, iran a.r. zirak laser and optics research school, nstri, tehran, iran s. sadjadi nuclear science and technology research institute, tehran, iran

background: new treatment modalities are developed with the aim of escalating tumor absorbed dose and simultaneously sparing the normal structures. the use of nanotechnology in cancer treatment offers some possibilities including destroying cancer tumors with minimal damage to healthy tissues. zinc oxide nanoparticles (zno nps) are wide band gap semiconductors and seem to have a good effect on ...

Journal: :journal of biomedical physics and engineering 0
m m firoozabadi university of birjand gh izadi vasafi k karimi-sh university of birjand m ghorbani

background: in neutron interaction with matter and reduction of neutron energy due to multiple scatterings to the thermal energy range, increasing the probability of thermal neutron capture by neutron captures makes dose enhancement in the tumors loaded with these materials.   objective: the purpose of this study is to evaluate dose distribution in the presence of  10 b ,  157 gd  and  33 s  ne...

Introduction: Recently, the use of various sensitizers has been used to increase photon-induced doses in brachytherapy. One of these cases is the addition of heavy metal nanoparticles such as gold in the target area, which increases the production of ionizing electrons by increasing the possibility of photoelectric effects, and increases the efficacy of the treatment. In this study, the target ...

A.R. Shirazi, A.R. Zirak, H.A. Nedaie, N. Banaee, S. Sadjadi,

Background: New treatment modalities are developed with the aim of escalating tumor absorbed dose and simultaneously sparing the normal structures. The use of nanotechnology in cancer treatment offers some possibilities including destroying cancer tumors with minimal damage to healthy tissues. Zinc Oxide nanoparticles (ZnO NPs) are wide band gap semiconductors and seem to have a good effect on ...

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