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1.
Phys Rev Lett ; 100(21): 210801, 2008 May 30.
Artículo en Inglés | MEDLINE | ID: mdl-18518594

RESUMEN

An experiment (E166) at the Stanford Linear Accelerator Center has demonstrated a scheme in which a multi-GeV electron beam passed through a helical undulator to generate multi-MeV, circularly polarized photons which were then converted in a thin target to produce positrons (and electrons) with longitudinal polarization above 80% at 6 MeV. The results are in agreement with GEANT4 simulations that include the dominant polarization-dependent interactions of electrons, positrons, and photons in matter.

2.
Med Phys ; 26(11): 2476-81, 1999 Nov.
Artículo en Inglés | MEDLINE | ID: mdl-10587236

RESUMEN

A new approach to optimize curative eye plaque brachytherapy is presented. The application of ophthalmic plaques is a common therapy modality for small and medium sized intraocular tumors. At Essen University Hospital eye applicators with photon emitting 125I seeds are used for the treatment of tumors with a thickness from 5 to 10 mm. Our clinical experiences indicate that the dose distributions of these applicators-used so far worldwide-are not optimal. A steeper dose falloff would meet the radiobiological requirements better, to provide the eradication of all tumor cells as well as sufficient occlusion of tumor supplying blood vessels. Our investigations for eye plaque optimization are based both on measurements and Monte Carlo simulation. For fast dosimetric measurements we have built a computer controlled device which allows reading out, directly and simultaneously, 16 1 mm3 scintillators. For the numerical simulations of the dose distribution of 125I eye plaques we have adapted a Monte Carlo program originally developed to calculate the synchrotron radiation in particle physics. We have investigated the influence of geometrical as well as physical eye plaque parameters on the dose distribution: Shielding of the primary radiation, penumbra modification, and energy conversion by exploiting fluorescence x-radiation have been considered. New types of fluorescence eye applicators have been designed which are more suitable for the prevention of radiopathic effects on structures at risk.


Asunto(s)
Braquiterapia/instrumentación , Neoplasias del Ojo/radioterapia , Radioisótopos de Yodo/administración & dosificación , Radiometría/normas , Planificación de la Radioterapia Asistida por Computador/instrumentación , Diseño de Equipo , Fluorescencia , Humanos , Método de Montecarlo , Fantasmas de Imagen , Postura , Protección Radiológica
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