Assessment of minimal aperture size for a plastic collimator for efficient formation of medical electron beams; Biomedical Engineering; Vol. 57, iss. 6

Bibliografische gegevens
Parent link:Biomedical Engineering.— .— New York: Springer Science+Business Media LLC., 2024
Vol. 57, iss. 6.— 2024.— P. 378-381
Coauteur: Томский политехнический университет
Andere auteurs: Miloichikova I. A. Irina Alekseevna, Bulavskaya A. A. Angelina Aleksandrovna, Bushmina E. A. Elizaveta Alekseevna, Grigorieva (Grigorjeva) A. A. Anna Anatoljevna, Kokontsev D. A. Dmitry Aleksandrovich, Loginova A. A., Stuchebrov S. G. Sergey Gennadevich
Samenvatting:Title screen
We present here the results of an experimental study assessing the influence of the diameter of the collimation window in a 3D-printed plastic object on the dose distribution of a medical electron beam. Experiments were run using a test object developed and manufactured as a rectangular parallelepiped with 12 round perforating holes with different diameters. The experiments were carried out using a medical electron beam. The radiation was delivered in such a way that the axes of the apertures were parallel to the beam axis. The distributions profiles formed by each hole were captured. The results showed that development of electron beam-shaping devices should avoid collimation apertures of diameter less than 7 mm.
Текстовый файл
AM_Agreement
Taal:Engels
Gepubliceerd in: 2024
Onderwerpen:
Online toegang:https://doi.org/10.1007/s10527-024-10339-6
Formaat: Elektronisch Hoofdstuk
KOHA link:https://koha.lib.tpu.ru/cgi-bin/koha/opac-detail.pl?biblionumber=673705

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330 |a We present here the results of an experimental study assessing the influence of the diameter of the collimation window in a 3D-printed plastic object on the dose distribution of a medical electron beam. Experiments were run using a test object developed and manufactured as a rectangular parallelepiped with 12 round perforating holes with different diameters. The experiments were carried out using a medical electron beam. The radiation was delivered in such a way that the axes of the apertures were parallel to the beam axis. The distributions profiles formed by each hole were captured. The results showed that development of electron beam-shaping devices should avoid collimation apertures of diameter less than 7 mm. 
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701 1 |a Miloichikova  |b I. A.  |c physicist  |c Associate Professor of Tomsk Polytechnic University, Candidate of Physical and Mathematical Sciences  |f 1988-  |g Irina Alekseevna  |9 18707 
701 1 |a Bulavskaya  |b A. A.  |c Specialist in the field of nuclear technologies  |c Senior Lecturer of Tomsk Polytechnic University, Candidate of Physical and Mathematical Sciences  |f 1993-  |g Angelina Aleksandrovna  |9 22019 
701 1 |a Bushmina  |b E. A.  |c specialist in the field of nuclear technologies  |c Engineer of Tomsk Polytechnic University  |f 2000-  |g Elizaveta Alekseevna  |9 22672 
701 1 |a Grigorieva (Grigorjeva)  |b A. A.  |c nuclear technology specialist  |c engineer of Tomsk Polytechnic University  |f 1995-  |g Anna Anatoljevna  |9 22382 
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701 1 |a Loginova  |b A. A. 
701 1 |a Stuchebrov  |b S. G.  |c physicist  |c Associate Professor of Tomsk Polytechnic University, Candidate of Physical and Mathematical Sciences  |f 1981-  |g Sergey Gennadevich  |9 15719 
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