A mathematical model to predict the different isodose volumes using TRAK value in HDR intracavitary brachytherapy for revised Manchester and ICRU-89 based Point A plans using computer tomography images

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dc.contributor.author Mourya, Ankur
dc.contributor.author Choudhary, Sunil
dc.contributor.author Sharma, Neeraj
dc.contributor.author Shahi, Uday Pratap
dc.contributor.author Singh, Gaganpreet
dc.contributor.author Pradhan, Satyajit
dc.contributor.author Aggarwal, Lalit Mohan
dc.date.accessioned 2023-04-20T07:30:22Z
dc.date.available 2023-04-20T07:30:22Z
dc.date.issued 2022-07
dc.identifier.issn 09731482
dc.identifier.uri http://localhost:8080/xmlui/handle/123456789/2135
dc.description This paper is submitted by the author of IIT (BHU), Varanasi, India en_US
dc.description.abstract To find out the simple relationship between Total Reference Air Kerma (TRAK) and various isodose volumes. Calculated isodose volumes were compared with experimental data for revised Manchester and International Commission on Radiation Units and measurements (ICRU)-89 Point A-based treatment plans. The accuracy of the formula was compared with the results of other relationships available in the literature. Materials and Methods: Dosimetric data from 62 intracavitary brachytherapy (ICBT) treatment plans of 31 patients with cervical cancer were studied. Each patient had treatment plans normalized to revised Manchester and ICRU-89 Points A (A flange and A icru89). For each treatment plan, TRAK values, V 350, V 700, V 1050, and V 1400 were obtained. The modeling curve was plotted between Isodose volume (V d) and the ratio of d/TRAK obtained from A flange plans to get a mathematical relation. The results of this formula were compared with the experimental data and outcomes of other formulas available in the literature. A paired-sample t-Test was performed to assess the statistical significance. Results: In the case of revised Manchester-based A flange normalization plans, the mean isodose volume of V 350, V 700, V 1050, and V 1400 were 285.98 ± 32.3 cm 3, 101.96 ± 10.63 cm 3, 52.71 ± 4.72 cm 3, and 31.44 ± 2.33 cm 3 respectively. Likewise, for ICRU-89 based A icru89 normalization plans, the mean isodose volumes of V 350, V 700, V 1050, and V 1400 were 304.11 ± 26.17 cm 3, 108.88 ± 8.29 cm 3, 56.62 ± 3.69 cm 3 and 34 ± 2.23 cm 3 respectively. The mean difference was significant. The Mathematical relationship developed was [INLINE:1]. No correlation was found between TRAK and D 0.1cm 3,D 2cm 3 for organs at risk. Conclusions: The developed formula calculated isodose volumes within the accuracy of ± 3% in ICBT plans. en_US
dc.language.iso en en_US
dc.publisher Wolters Kluwer Medknow Publications en_US
dc.relation.ispartofseries Journal of Cancer Research and Therapeutics;Volume 18, Issue 4, Pages 1105 - 1113
dc.subject American Brachytherapy Society en_US
dc.subject Cervical brachytherapy en_US
dc.subject ICRU en_US
dc.subject Intracavitary brachytherapy en_US
dc.subject Isodose en_US
dc.subject Total reference air kerma en_US
dc.subject Brachytherapy en_US
dc.subject Computers en_US
dc.subject Female en_US
dc.subject Humans en_US
dc.subject Models en_US
dc.subject Theoretical en_US
dc.subject Radiotherapy Dosage en_US
dc.subject Radiotherapy Planning en_US
dc.subject Computer-Assisted en_US
dc.subject Rectum en_US
dc.subject Tomography en_US
dc.subject X-Ray Computed en_US
dc.subject Uterine Cervical Neoplasms en_US
dc.subject adult; Article; brachytherapy; cancer patient; clinical article; computer assisted tomography; controlled study; female; human; mathematical model; treatment planning; uterine cervix cancer; volume; computer; diagnostic imaging; procedures; radiotherapy dosage; radiotherapy planning system; rectum; theoretical model; uterine cervix tumor; x-ray computed tomography en_US
dc.title A mathematical model to predict the different isodose volumes using TRAK value in HDR intracavitary brachytherapy for revised Manchester and ICRU-89 based Point A plans using computer tomography images en_US
dc.type Article en_US


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