Total reference air kerma: To what extent can it predict intracavitary volume enclosed by isodose surfaces during multiple high-dose rate brachytherapy?
Author:
Publisher
Elsevier BV
Subject
Radiology, Nuclear Medicine and imaging,Oncology
Reference16 articles.
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2. Survey of the use of the ICRU 38 in recording and reporting cervical cancer brachytherapy;Pötter;Radiother Oncol,2001
3. The ICRU recommendations for reporting intracavitary therapy in gynecology and the Manchester method of treating cancer of the cervix uteri;Wilkinson;Br J Radiol,1989
4. Estimation of tissue volume irradiated by intracavitary implants;Eisbruch;Int J Radiat Oncol Biol Phys,1993
5. Treatment volume from total reference air kerma (TRAK) in intracavitary applications and its composition with ICRU reference volume;Deshpande;Int J Radiat Oncol Biol Phys,1994
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1. 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;Journal of Cancer Research and Therapeutics;2022
2. Relationship between biodosimetric parameters and treatment volumes in three types of prostate radiotherapy;Scientific Reports;2021-12
3. Reporting of dose–volume specifications for “Martinez Universal Perineal Interstitial Template–based interstitial high-dose-rate brachytherapy for gynecological cancers” according to International Commission on Radiation Units and Measurements 58 with early clinical outcomes;Brachytherapy;2021-05
4. Correlation of total reference air-kerma (TRAK) to prescription isodose surface volume in vaginal cylinder high-dose-rate brachytherapy;Journal of Contemporary Brachytherapy;2021
5. Total reference air kerma can accurately predict isodose surface volumes in cervix cancer brachytherapy. A multicenter study;Brachytherapy;2017-11
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