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Dosimetric Study to Estimate Deviations in Delivered Radiation Dose due to Occluded Air Spaces in Vaginal Vault Brachytherapy Applications

BACKGROUND: To develop a dosimetric tool to estimate the dose delivered in the presence of air pockets with EBT3 film while simulating the conditions of vaginal vault brachytherapy (VVBT) with 3.0 diameter cylindrical applicator at a prescription dose distance of 5mm from the surface of it. MATERIAL...

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Autores principales: Srinivas, Challapalli, Banerjee, Sourjya, Lobo, Dilson, Athiyamaan, M S, Ramamoorthy, Ravichandran, Johan, Sunny, Abhishek, Krishna, Ajaykumar, Silpa, E S, Arun Kumar
Formato: Online Artículo Texto
Lenguaje:English
Publicado: West Asia Organization for Cancer Prevention 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10495909/
https://www.ncbi.nlm.nih.gov/pubmed/37247286
http://dx.doi.org/10.31557/APJCP.2023.24.5.1659
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author Srinivas, Challapalli
Banerjee, Sourjya
Lobo, Dilson
Athiyamaan, M S
Ramamoorthy, Ravichandran
Johan, Sunny
Abhishek, Krishna
Ajaykumar, Silpa
E S, Arun Kumar
author_facet Srinivas, Challapalli
Banerjee, Sourjya
Lobo, Dilson
Athiyamaan, M S
Ramamoorthy, Ravichandran
Johan, Sunny
Abhishek, Krishna
Ajaykumar, Silpa
E S, Arun Kumar
author_sort Srinivas, Challapalli
collection PubMed
description BACKGROUND: To develop a dosimetric tool to estimate the dose delivered in the presence of air pockets with EBT3 film while simulating the conditions of vaginal vault brachytherapy (VVBT) with 3.0 diameter cylindrical applicator at a prescription dose distance of 5mm from the surface of it. MATERIALS AND METHOD: Six acrylic plates (10 cm x 10 cm, 0.5 cm thick) with four different types of slots were designed and produced locally. They can hold a cylindrical vaginal brachytherapy applicator in the centre, air equivalent material from the applicator’s surface [(sizes 4.5 mm (A), 3.0 mm (B), and 2.0 mm (C)], EBT3 film at the prescribed dose distance, and holder rods. Plates were layered together with acrylic rods and assembled in a holding box in a water phantom. Three treatment plans done in TPS with prescription doses of 2 Gy, 3 Gy, and 4 Gy at 5.0 mm with a treatment length of 6 cm, and were executed in Co-60-based HDR brachytherapy unit (M/s SagiNova, Germany) with & without the placement of air equivalent material, and the dose received at slot locations A, B, & C were noted. RESULTS: The mean percentage deviation of measured dose without and with presence of air pocket at A, B and C was 13.9%, 11.0% and 6.4% respectively for all dose prescriptions. As the air pocket size expanded radially from 2.0 mm to 4.5 mm, the increase in dosage ranged from 6.4% to 13.9% which was due to the fact that the film was held at dosage prescription distance and the lack of attenuation of photons radially through air pocket. CONCLUSIONS: The present study can be carried out with a 3D printed phantom that simulates VVBT application having air pockets of different dimensions at different locations and also can be analyzed with Monte Carlo simulations.
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spelling pubmed-104959092023-09-13 Dosimetric Study to Estimate Deviations in Delivered Radiation Dose due to Occluded Air Spaces in Vaginal Vault Brachytherapy Applications Srinivas, Challapalli Banerjee, Sourjya Lobo, Dilson Athiyamaan, M S Ramamoorthy, Ravichandran Johan, Sunny Abhishek, Krishna Ajaykumar, Silpa E S, Arun Kumar Asian Pac J Cancer Prev Research Article BACKGROUND: To develop a dosimetric tool to estimate the dose delivered in the presence of air pockets with EBT3 film while simulating the conditions of vaginal vault brachytherapy (VVBT) with 3.0 diameter cylindrical applicator at a prescription dose distance of 5mm from the surface of it. MATERIALS AND METHOD: Six acrylic plates (10 cm x 10 cm, 0.5 cm thick) with four different types of slots were designed and produced locally. They can hold a cylindrical vaginal brachytherapy applicator in the centre, air equivalent material from the applicator’s surface [(sizes 4.5 mm (A), 3.0 mm (B), and 2.0 mm (C)], EBT3 film at the prescribed dose distance, and holder rods. Plates were layered together with acrylic rods and assembled in a holding box in a water phantom. Three treatment plans done in TPS with prescription doses of 2 Gy, 3 Gy, and 4 Gy at 5.0 mm with a treatment length of 6 cm, and were executed in Co-60-based HDR brachytherapy unit (M/s SagiNova, Germany) with & without the placement of air equivalent material, and the dose received at slot locations A, B, & C were noted. RESULTS: The mean percentage deviation of measured dose without and with presence of air pocket at A, B and C was 13.9%, 11.0% and 6.4% respectively for all dose prescriptions. As the air pocket size expanded radially from 2.0 mm to 4.5 mm, the increase in dosage ranged from 6.4% to 13.9% which was due to the fact that the film was held at dosage prescription distance and the lack of attenuation of photons radially through air pocket. CONCLUSIONS: The present study can be carried out with a 3D printed phantom that simulates VVBT application having air pockets of different dimensions at different locations and also can be analyzed with Monte Carlo simulations. West Asia Organization for Cancer Prevention 2023 /pmc/articles/PMC10495909/ /pubmed/37247286 http://dx.doi.org/10.31557/APJCP.2023.24.5.1659 Text en https://creativecommons.org/licenses/by-nc/4.0/This work is licensed under a Creative Commons Attribution-Non Commercial 4.0 International License. (https://creativecommons.org/licenses/by-nc/4.0/)
spellingShingle Research Article
Srinivas, Challapalli
Banerjee, Sourjya
Lobo, Dilson
Athiyamaan, M S
Ramamoorthy, Ravichandran
Johan, Sunny
Abhishek, Krishna
Ajaykumar, Silpa
E S, Arun Kumar
Dosimetric Study to Estimate Deviations in Delivered Radiation Dose due to Occluded Air Spaces in Vaginal Vault Brachytherapy Applications
title Dosimetric Study to Estimate Deviations in Delivered Radiation Dose due to Occluded Air Spaces in Vaginal Vault Brachytherapy Applications
title_full Dosimetric Study to Estimate Deviations in Delivered Radiation Dose due to Occluded Air Spaces in Vaginal Vault Brachytherapy Applications
title_fullStr Dosimetric Study to Estimate Deviations in Delivered Radiation Dose due to Occluded Air Spaces in Vaginal Vault Brachytherapy Applications
title_full_unstemmed Dosimetric Study to Estimate Deviations in Delivered Radiation Dose due to Occluded Air Spaces in Vaginal Vault Brachytherapy Applications
title_short Dosimetric Study to Estimate Deviations in Delivered Radiation Dose due to Occluded Air Spaces in Vaginal Vault Brachytherapy Applications
title_sort dosimetric study to estimate deviations in delivered radiation dose due to occluded air spaces in vaginal vault brachytherapy applications
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10495909/
https://www.ncbi.nlm.nih.gov/pubmed/37247286
http://dx.doi.org/10.31557/APJCP.2023.24.5.1659
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