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Phys Med Biol ; 55(9): 2451-63, 2010 May 07.
Artigo em Inglês | MEDLINE | ID: mdl-20371905

RESUMO

Spinal metastases are a common and serious manifestation of cancer, and are often treated with vertebroplasty/kyphoplasty followed by external beam radiation therapy (EBRT). As an alternative, we have introduced radioactive bone cement, i.e. bone cement incorporated with a radionuclide. In this study, we present a Monte Carlo radiation transport modeling method to calculate dose distributions within vertebrae containing radioactive cement. Model accuracy was evaluated by comparing model-predicted depth-dose curves to those measured experimentally in eight cadaveric vertebrae using radiochromic film. The high-gradient regions of the depth-dose curves differed by radial distances of 0.3-0.9 mm, an improvement over EBRT dosimetry accuracy. The low-gradient regions differed by 0.033-0.055 Gy/h/mCi, which may be important in situations involving prior spinal cord irradiation. Using a more rigorous evaluation of model accuracy, four models predicted the measured dose distribution within the experimental uncertainty, as represented by the 95% confidence interval of the measured log-linear depth-dose curve. The remaining four models required modification to account for marrow lost from the vertebrae during specimen preparation. However, the accuracy of the modified model results indicated that, when this source of uncertainty is accounted for, this modeling method can be used to predict dose distributions in vertebrae containing radioactive cement.


Assuntos
Cimentos Ósseos , Modelos Biológicos , Radiação , Medula Óssea/diagnóstico por imagem , Medula Óssea/efeitos da radiação , Osso e Ossos/diagnóstico por imagem , Osso e Ossos/efeitos da radiação , Feminino , Humanos , Injeções , Método de Monte Carlo , Medicina de Precisão , Dosagem Radioterapêutica , Tomografia Computadorizada por Raios X
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