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1.
Rev. med. nucl. Alasbimn j ; 9(37)July 2007. tab, graf
Article in English | LILACS | ID: lil-474913

ABSTRACT

A program to calculate the neutron KERMA in human tissues has been developed. The program was developed in Mathcad and contains the neutron kerma factors of those elements that are present in different human tissues. Having the elemental composition of any human tissue the neutron kerma can be easily calculated. The program was tested using the elemental composition of tumor tissues such as sarcoma, melanoma, carcinoma and adenoid cystic. Neutron kerma for adipose and muscle tissue for normal adult was calculated. The results are in agreement with those published in literature. The neutron kerma for water was also calculated because in some dosimetric calculations water is used to describe normal and tumor tissues. From this comparison was found that at larger energies kerma factors are approximately the same, but energies less than 100 eV the differences are large.


Subject(s)
Humans , Neoplasms/chemistry , Neutrons , Background Radiation , Connective Tissue/chemistry , Algorithms
2.
Rev. med. nucl. Alasbimn j ; 9(36)Apr. 2007. ilus, tab, graf
Article in Spanish | LILACS | ID: lil-474905

ABSTRACT

Mediante una serie de medidas y cálculos Monte Carlo se han determinado las características dosimétricas y los espectros de los fotoneutrones que se producen en torno a un acelerador lineal para radioterapia de 18 MV. Las medidas se realizaron con dosímetros termoluminiscentes TLD 600 y TLD 700 que se expusieron desnudos y emparedados con Cd, así como dentro de una esfera de parafina y dentro de esferas Bonner.


Measurements and Monte Carlo calculations has been utilized to determine the dosimetric features as well as the neutron spectra of photoneutrons produced around an 18 MV linear accelerator for radiotherapy. Measurementes were carried out with bare and Cd covered thermolumiscent dosimeters, TLD600 and TLD700, as well as inside a paraffine moderator. TLD pairs were also utilized as thermal neutrons inside a Bonner sphere spectrometer.


Subject(s)
Humans , Particle Accelerators , Photons , Neutrons , Radiotherapy/instrumentation , Algorithms , Spectrum Analysis , Radiotherapy Dosage , Radiation Dosimeters , Monte Carlo Method , Technology, Radiologic
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