SciELO - Scientific Electronic Library Online

 
vol.34 número3NANOPARTÍCULAS DE COBRE PARA DOSIMETRÍA DE RADIACIÓN IONIZANTE PARA TERANÓSTICADESCRIPCIÓN DEL ESTADO FUNDAMENTAL DEL 22C índice de autoresíndice de materiabúsqueda de artículos
Home Pagelista alfabética de revistas  

Servicios Personalizados

Revista

Articulo

Indicadores

  • No hay articulos citadosCitado por SciELO

Links relacionados

  • No hay articulos similaresSimilares en SciELO

Compartir


Anales (Asociación Física Argentina)

versión impresa ISSN 0327-358Xversión On-line ISSN 1850-1168

Resumen

GAYOL, A.  y  VALENTE, M.. EFFECT OF INTENSE MAGNETIC FIELDS ON THE TRAJECTORY OF ELECTRONS PROPAGATING IN LOW DENSITY MEDIA OF INTEREST FOR MRI-LINAC RADIOTHERAPY. An. AFA [online]. 2023, vol.34, n.3, pp.3-3. ISSN 0327-358X.  http://dx.doi.org/10.31527/analesafa.2023.34.3.65.

Ionizing radiation transport mechanisms in presence of magnetic fields can be described in terms of formalisms based on the Boltzmann radiation transport equation. However, when the transport occurs not in vacuum but in scattering media the difficulty of its analytical calculation considerably increases because of the random character of the radiation interaction processes with the scattering medium. In this context, the present work proposes and describe a methodology to characterize effects due to strong magnetic fields on electron trajectories by means of numerical techniques, such as Monte Carlo simulation, to be applied to scattering media, typically present in MRI-LINAC devices in radiotherapy situations. The obtained results for air as the scattering material show that variations of the electrons' trajectories depend jointly on the magnetic field and the interactions with the scattering medium. Increasing the magnetic field intensity enhances the curvature of the trajectories while decreasing the displacement in the radial direction.

Palabras clave : IGRT; MRI-LINAC; Monte Carlo simulations; magnetic field.

        · resumen en Español     · texto en Español     · Español ( pdf )