Measurement of back-scattered radiation from micro multileaf collimator into the beam monitor chamber from a dual energy linear accelerator

Measurements designed to find the collimator backscatter into the beam monitor chamber from Micro Multileaf collimator of 6 MV photon beams of the Siemens Primus linear accelerator were made with the help of dose rate feedback control. The photons and electrons backscattered from the upper and lower...

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Main Authors: Muralidhar K, Murthy P, Sresty N.V.N.M, Dixit Pramod, Kumar Rajneesh, Raju A
Format: Article
Language:English
Published: Wolters Kluwer Medknow Publications 2007-01-01
Series:Journal of Medical Physics
Subjects:
Online Access:http://www.jmp.org.in/article.asp?issn=0971-6203;year=2007;volume=32;issue=2;spage=65;epage=67;aulast=Muralidhar
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spelling doaj-2c5b3db0c80347e0a19ec9c7c33f9f322020-11-24T22:02:44ZengWolters Kluwer Medknow PublicationsJournal of Medical Physics0971-62032007-01-013226567Measurement of back-scattered radiation from micro multileaf collimator into the beam monitor chamber from a dual energy linear acceleratorMuralidhar KMurthy PSresty N.V.N.MDixit PramodKumar RajneeshRaju AMeasurements designed to find the collimator backscatter into the beam monitor chamber from Micro Multileaf collimator of 6 MV photon beams of the Siemens Primus linear accelerator were made with the help of dose rate feedback control. The photons and electrons backscattered from the upper and lower secondary collimator jaws give rise to a significant increase in the ion charge measured by monitor chamber. This increase varies between the different accelerators. The output measurements were carried out in air at the isocenter. The effect of collimator backscatter was investigated by measuring the pulse width, number of beam pulses per monitor unit, monitor unit rate and dose for different mMLC openings. These measurements were made with and without dose rate feedback control, i.e., with constant electron beam current in the accelerator. Monitor unit rate (MU/min) was almost constant for all field sizes. The maximum variation between the open and the closed feedback control circuits was 2.5%. There was no difference in pulse width and negligible difference in pulse frequency. Maximum value of backscattered radiation from the micro Multileaf collimator into the beam monitor chamber was found to be 0.5%.http://www.jmp.org.in/article.asp?issn=0971-6203;year=2007;volume=32;issue=2;spage=65;epage=67;aulast=MuralidharBackscattered radiationbeam monitor chambermicro multileaf collimator
collection DOAJ
language English
format Article
sources DOAJ
author Muralidhar K
Murthy P
Sresty N.V.N.M
Dixit Pramod
Kumar Rajneesh
Raju A
spellingShingle Muralidhar K
Murthy P
Sresty N.V.N.M
Dixit Pramod
Kumar Rajneesh
Raju A
Measurement of back-scattered radiation from micro multileaf collimator into the beam monitor chamber from a dual energy linear accelerator
Journal of Medical Physics
Backscattered radiation
beam monitor chamber
micro multileaf collimator
author_facet Muralidhar K
Murthy P
Sresty N.V.N.M
Dixit Pramod
Kumar Rajneesh
Raju A
author_sort Muralidhar K
title Measurement of back-scattered radiation from micro multileaf collimator into the beam monitor chamber from a dual energy linear accelerator
title_short Measurement of back-scattered radiation from micro multileaf collimator into the beam monitor chamber from a dual energy linear accelerator
title_full Measurement of back-scattered radiation from micro multileaf collimator into the beam monitor chamber from a dual energy linear accelerator
title_fullStr Measurement of back-scattered radiation from micro multileaf collimator into the beam monitor chamber from a dual energy linear accelerator
title_full_unstemmed Measurement of back-scattered radiation from micro multileaf collimator into the beam monitor chamber from a dual energy linear accelerator
title_sort measurement of back-scattered radiation from micro multileaf collimator into the beam monitor chamber from a dual energy linear accelerator
publisher Wolters Kluwer Medknow Publications
series Journal of Medical Physics
issn 0971-6203
publishDate 2007-01-01
description Measurements designed to find the collimator backscatter into the beam monitor chamber from Micro Multileaf collimator of 6 MV photon beams of the Siemens Primus linear accelerator were made with the help of dose rate feedback control. The photons and electrons backscattered from the upper and lower secondary collimator jaws give rise to a significant increase in the ion charge measured by monitor chamber. This increase varies between the different accelerators. The output measurements were carried out in air at the isocenter. The effect of collimator backscatter was investigated by measuring the pulse width, number of beam pulses per monitor unit, monitor unit rate and dose for different mMLC openings. These measurements were made with and without dose rate feedback control, i.e., with constant electron beam current in the accelerator. Monitor unit rate (MU/min) was almost constant for all field sizes. The maximum variation between the open and the closed feedback control circuits was 2.5%. There was no difference in pulse width and negligible difference in pulse frequency. Maximum value of backscattered radiation from the micro Multileaf collimator into the beam monitor chamber was found to be 0.5%.
topic Backscattered radiation
beam monitor chamber
micro multileaf collimator
url http://www.jmp.org.in/article.asp?issn=0971-6203;year=2007;volume=32;issue=2;spage=65;epage=67;aulast=Muralidhar
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