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Virtual modelling of novel applicator prototypes for cervical cancer brachytherapy


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Gerbaulet A, Pötter R, Haie-Meder C. Cervix cancer. In: Gerbaulet A, Pötter R, Mazeron JJ, Meertens H, Van Limbergen E, editors. The GEC ESTRO handbook of brachytherapy. Brussels: European Society of Therapeutic Radiology and Oncology; 2002. p 300-63.GerbauletAPötterRHaie-MederC.Cervix cancerGerbauletAPötterRMazeronJJMeertensHVan LimbergenEThe GEC ESTRO handbook of brachytherapyBrusselsEuropean Society of Therapeutic Radiology and Oncology200230063Search in Google Scholar

Horiot JC, Pigneux J, Pourquier H. Radiotherapy alone in carcinoma of intactuterine cervix according to Fletcher guidelines: a French cooperative study of 1383 cases. Int J Radiat Oncol Biol Phys 1988; 14: 605-11.HoriotJCPigneuxJPourquierH.Radiotherapy alone in carcinoma of intactuterine cervix according to Fletcher guidelines: a French cooperative study of 1383 casesInt J Radiat Oncol Biol Phys1988146051110.1016/0360-3016(88)90080-6Search in Google Scholar

Perez CA, Breaux S, Bedwinek JM, Madoc-Jones H, Camel HM, Purdy JA, et al. Radiation therapy alone in the treatment of carcinoma of the uterine cervix II. Analysis of complications. Cancer 1984; 54: 35-46.PerezCABreauxSBedwinekJMMadoc-JonesHCamelHMPurdyJAet alRadiation therapy alone in the treatment of carcinoma of the uterine cervix II. Analysis of complicationsCancer198454354610.1002/1097-0142(19840715)54:2<235::AID-CNCR2820540210>3.0.CO;2-HSearch in Google Scholar

Pernot M, Hoffstetter S, Peiffert D, Carolus JM, Guillemin F, Verhaeghe JL, et al. Statistical study of a series of 672 cases of carcinoma of the uterine cervix. Results and complications according to age and modalities of treatment. Bull Cancer 1995; 82: 568-81.PernotMHoffstetterSPeiffertDCarolusJMGuilleminFVerhaegheJLet alStatistical study of a series of 672 cases of carcinoma of the uterine cervix. Results and complications according to age and modalities of treatmentBull Cancer19958256881Search in Google Scholar

Pötter R, Knocke TH, Fellner C, Baldass M, Reinthaller A, Kucera A. Definitive radiotherapy based on HDR brachytherapy with Iridium–192 in cervix cancer–report on the recent Vienna university hospital experience (1993–1997) compared to the preceding period, referring to ICRU 38 recommendations. Cancer Radiother 2000; 4: 159-172.PötterRKnockeTHFellnerCBaldassMReinthallerAKuceraA.Definitive radiotherapy based on HDR brachytherapy with Iridium–192 in cervix cancer–report on the recent Vienna university hospital experience (1993–1997) compared to the preceding period, referring to ICRU 38 recommendationsCancer Radiother2000415917210.1016/S1278-3218(00)88900-3Search in Google Scholar

Pötter R, Kirisits C, Fidarova EF, Dimopoulos JC, Berger D, Tanderup K, Lindegaard JC. Present status and future of high-precision image guided adaptive brachytherapy for cervix carcinoma. Acta Oncol 2008; 47: 1325-36.PötterRKirisitsCFidarovaEFDimopoulosJCBergerDTanderupKLindegaardJC.Present status and future of high-precision image guided adaptive brachytherapy for cervix carcinomaActa Oncol20084713253610.1080/02841860802282794Search in Google Scholar

Lindegaard JC, Tanderup K, Nielsen SK, Haack S, Gelineck J. MRI-Guided 3D Optimization Significantly Improves DVH Parameters of Pulsed-Dose-Rate Brachytherapy in Locally Advanced Cervical Cancer. Int J Radiat Oncol Biol Phys 2008; 71: 756-64.LindegaardJCTanderupKNielsenSKHaackSGelineckJ.MRI-Guided 3D Optimization Significantly Improves DVH Parameters of Pulsed-Dose-Rate Brachytherapy in Locally Advanced Cervical CancerInt J Radiat Oncol Biol Phys2008717566410.1016/j.ijrobp.2007.10.032Search in Google Scholar

De Brabandere M, Mousa AG, Nulens A, Swinnen A, Van Limbergen E. Potential of dose optimisation in MRI-based PDR brachytherapy of cervix carcinoma. Radiother Oncol 2008; 88: 217-26.De BrabandereMMousaAGNulensASwinnenAVan LimbergenE.Potential of dose optimisation in MRI-based PDR brachytherapy of cervix carcinomaRadiother Oncol2008882172610.1016/j.radonc.2007.10.026Search in Google Scholar

Pötter R, Dimopoulos J, Georg P, Lang S, Waldhäusl C, Wachter-Gerstner N, et al. Clinical impact of MRI assisted dose volume adaptation and dose escalation in brachytherapy of locally advanced cervix cancer. Radiother Oncol 2007; 83: 148-55.PötterRDimopoulosJGeorgPLangSWaldhäuslCWachter-GerstnerNet alClinical impact of MRI assisted dose volume adaptation and dose escalation in brachytherapy of locally advanced cervix cancerRadiother Oncol2007831485510.1016/j.radonc.2007.04.012Search in Google Scholar

Pötter R, Georg P, Dimopoulos JC, Grim MM, Berger D, Nesvacil N, et al. Clinical outcome of protocol based image (MRI) guided adaptive brachy-therapy combined with 3D conformal radiotherapy with or without chemotherapy in patients with locally advanced cervical cancer. Radiother Oncol 2011; 100: 116-23.PötterRGeorgPDimopoulosJCGrimMMBergerDNesvacilNet alClinical outcome of protocol based image (MRI) guided adaptive brachy-therapy combined with 3D conformal radiotherapy with or without chemotherapy in patients with locally advanced cervical cancerRadiother Oncol20111001162310.1016/j.radonc.2011.07.012Search in Google Scholar

Haie-Meder C, Chargari C, Rey A, Dumas I, Morice P, Magné N. MRI-based low dose-rate brachytherapy experience in locally advanced cervical cancer patients initially treated by concomitant chemoradiotherapy. Radiother Oncol 2010; 96: 161-5.Haie-MederCChargariCReyADumasIMoricePMagnéN.MRI-based low dose-rate brachytherapy experience in locally advanced cervical cancer patients initially treated by concomitant chemoradiotherapyRadiother Oncol201096161510.1016/j.radonc.2010.04.015Search in Google Scholar

Ribeiro I, Janssen H, De Brabandere M, Nulens A, De Bal D, Vergote I, Van Limbergen E. Long term experience with 3D image guided brachy-therapy and clinical outcome in cervical cancer patients. Radiother Oncol 2016;[Epub ahead of print] PMID: 27157510RibeiroIJanssenHDe BrabandereMNulensADe BalDVergoteIVan LimbergenE.Long term experience with 3D image guided brachy-therapy and clinical outcome in cervical cancer patientsRadiother Oncol2016[Epub ahead of print] PMID2715751010.1016/j.radonc.2016.04.016Search in Google Scholar

Fokdal L, Sturdza A, Mazeron R, Haie-Meder C, Tan LT, Gillham C, et al. Image guided adaptive brachytherapy with combined intracavitary and interstitial technique improves the therapeutic ratio in locally advanced cervical cancer: Analysis from the retroEMBRACE study. Radiother Oncol 2016; doi: 10.1016/j.radonc.2016.04.016. [Epub ahead of print] PMID: 27113795FokdalLSturdzaAMazeronRHaie-MederCTanLTGillhamCet alImage guided adaptive brachytherapy with combined intracavitary and interstitial technique improves the therapeutic ratio in locally advanced cervical cancer: Analysis from the retroEMBRACE studyRadiother Oncol201610.1016/j.radonc.2016.04.016[Epub ahead of print] PMID2711379527157510Open DOISearch in Google Scholar

Sturdza A, Pötter R, Fokdal LU, Haie-Meder C, Tan LT, Mazeron R, Petric P, et al. Image guided brachytherapy in locally advanced cervical cancer: Improved pelvic control and survival in RetroEMBRACE, a multicenter cohort study. Radiother Oncol 2016; [Epub ahead of print] PMID: 27134181SturdzaAPötterRFokdalLUHaie-MederCTanLTMazeronRPetricPet alImage guided brachytherapy in locally advanced cervical cancer: Improved pelvic control and survival in RetroEMBRACE, a multicenter cohort studyRadiother Oncol2016[Epub ahead of print] PMID2713418110.1016/j.radonc.2016.03.01127134181Search in Google Scholar

Kirchheiner K, Pötter R, Tanderup K, Lindegaard JC, Haie-Meder C, Petric P, et al. EMBRACE Collaborative Group. Health-related quality of life in locally advanced cervical cancer patients after definitive chemoradiation therapy including image guided adaptive brachytherapy: An analysis from the EMBRACE study. Int J Radiat Oncol Biol Phys 2016; 94: 1088-98.KirchheinerKPötterRTanderupKLindegaardJCHaie-MederCPetricPet alEMBRACE Collaborative Group. Health-related quality of life in locally advanced cervical cancer patients after definitive chemoradiation therapy including image guided adaptive brachytherapy: An analysis from the EMBRACE studyInt J Radiat Oncol Biol Phys20169410889810.1016/j.ijrobp.2015.12.36326876955Search in Google Scholar

Castelnau-Marchand P, Chargari C, Maroun P, Dumas I, Del Campo ER, Cao K, et al. Clinical outcomes of definitive chemoradiation followed by intracavitary pulsed-dose rate image-guided adaptive brachytherapy in locally advanced cervical cancer. Gynecol Oncol 2015; 139: 288-94.Castelnau-MarchandPChargariCMarounPDumasIDel CampoERCaoKet alClinical outcomes of definitive chemoradiation followed by intracavitary pulsed-dose rate image-guided adaptive brachytherapy in locally advanced cervical cancerGynecol Oncol20151392889410.1016/j.ygyno.2015.09.00826364808Search in Google Scholar

Kirisits C, Pötter R, Lang S, Dimopoulos J, Wachter-Gerstner N, Georg D. Dose and volume parameters for MRI based treatment planning in intracavitary brachytherapy of cervix cancer. Int J Raddiat Oncol Biol Phys 2005; 62: 901-11.KirisitsCPötterRLangSDimopoulosJWachter-GerstnerNGeorgD.Dose and volume parameters for MRI based treatment planning in intracavitary brachytherapy of cervix cancerInt J Raddiat Oncol Biol Phys2005629011110.1016/j.ijrobp.2005.02.04015936576Search in Google Scholar

Dimopoulos JC, Lang S, Kirisits C, Fidarova EF, Berger D, Georg P, et al. Dose-volume histogram parameters and local tumor control in magnetic resonance image-guided cervical cancer brachytherapy. Int J Radiat Oncol Biol Phys 2009; 75: 56-63.DimopoulosJCLangSKirisitsCFidarovaEFBergerDGeorgPet alDose-volume histogram parameters and local tumor control in magnetic resonance image-guided cervical cancer brachytherapyInt J Radiat Oncol Biol Phys200975566310.1016/j.ijrobp.2008.10.03319289267Search in Google Scholar

Schmid MP, Kirisits C, Nesvacil N, Dimopoulos JC, Berger D, Pötter R. Local recurrences in cervical cancer patients in the setting of image-guided brachytherapy: a comparison of spatial dose distribution within a matchedpair analysis. Radiother Oncol 2011; 100: 468-72.SchmidMPKirisitsCNesvacilNDimopoulosJCBergerDPötterR.Local recurrences in cervical cancer patients in the setting of image-guided brachytherapy: a comparison of spatial dose distribution within a matchedpair analysisRadiother Oncol20111004687210.1016/j.radonc.2011.08.014320043921924510Search in Google Scholar

Dimopoulos JCA, Kirisits C, Petric P, Georg P, Lang S, Berger D, Pötter R. The Vienna applicator for combined intracavitary and interstitial brachytherapy of cervical cancer: clinical feasibility and preliminary results. Int J Radiat Oncol Biol Phys 2006; 66: 83-90.DimopoulosJCAKirisitsCPetricPGeorgPLangSBergerDPötterR.The Vienna applicator for combined intracavitary and interstitial brachytherapy of cervical cancer: clinical feasibility and preliminary resultsInt J Radiat Oncol Biol Phys200666839010.1016/j.ijrobp.2006.04.04116839702Search in Google Scholar

Kirisits C, Lang S, Dimopoulos J, Berger D, Georg D, Pötter R. The Vienna applicator for combined intracavitary and interstitial brachytherapy of cervical cancer: design, application, treatment planning, and dosimetric results. Int J Radiat Oncol Biol Phys 2006; 65: 624-30.KirisitsCLangSDimopoulosJBergerDGeorgDPötterR.The Vienna applicator for combined intracavitary and interstitial brachytherapy of cervical cancer: design, application, treatment planning, and dosimetric resultsInt J Radiat Oncol Biol Phys2006656243010.1016/j.ijrobp.2006.01.03616690444Search in Google Scholar

Nomden CN, De Leeuw AAC, Moerland MA, Roesink JM, Tersteeg RJ, Jürgenliemk-Schulz I. Clinical use of the Utrecht applicator for combined intracavitary/interstitial brachytherapy treatment in locally advanced cervical cancer. Int J Radiat Oncol Biol Phys 2012; 82: 1424-30.NomdenCNDe LeeuwAACMoerlandMARoesinkJMTersteegRJJürgenliemk-SchulzI.Clinical use of the Utrecht applicator for combined intracavitary/interstitial brachytherapy treatment in locally advanced cervical cancerInt J Radiat Oncol Biol Phys20128214243010.1016/j.ijrobp.2011.04.04421669505Search in Google Scholar

Jürgenliemk-Schulz IM, Tersteeg RJHA, Roesink JM, Bijmolt S, Nomden Cn, Moerland MA, de Leeuw AA. MRI-guided treatment planning optimisation in intracavitary or combined intracavitary/interstitial PDR brachytherapy using tandem ovoid applicators in locally advanced cervical cancer. Radiother Oncol 2009; 93: 322-30.Jürgenliemk-SchulzIMTersteegRJHARoesinkJMBijmoltSNomdenCnMoerlandMAde LeeuwAA.MRI-guided treatment planning optimisation in intracavitary or combined intracavitary/interstitial PDR brachytherapy using tandem ovoid applicators in locally advanced cervical cancerRadiother Oncol2009933223010.1016/j.radonc.2009.08.014Search in Google Scholar

Petric P, Hudej R, Rogelj P, Lindegaard J, Tanderup K, Kirisits C, et al. Frequency-distribution mapping of HR CTV in cervix cancer: possibilities and limitations of existent and prototype applicators. Radiother Oncol 2010; 96(Suppl 1): S70.PetricPHudejRRogeljPLindegaardJTanderupKKirisitsCet alFrequency-distribution mapping of HR CTV in cervix cancer: possibilities and limitations of existent and prototype applicatorsRadiother Oncol201096Suppl 1S70Search in Google Scholar

Petric P, Hudej R, Hanuna O, Marolt P, Al-Hammadi N, Riyas MP, Segedin B. MRI-assisted cervix cancer brachytherapy pre-planning, based on application in paracervical anaesthesia: final report. Radiol Oncol 2014; 48: 293-300.PetricPHudejRHanunaOMaroltPAl-HammadiNRiyasMPSegedinB.MRI-assisted cervix cancer brachytherapy pre-planning, based on application in paracervical anaesthesia: final reportRadiol Oncol20144829330010.2478/raon-2014-0009Search in Google Scholar

Pötter R, Van Limbergen E, Wambersie A. Reporting in Brachytherapy: Dose and Volume Specification. In: Gerbaulet A, Pötter R, Mazeron JJ, Meertens H, Van Limbergen E, editors. The GEC ESTRO Handbook of Brachytherapy. Brussels: European Society of Therapeutic Radiology and Oncology; 2002. p. 153-215.PötterRVan LimbergenEWambersieA.Reporting in Brachytherapy: Dose and Volume SpecificationGerbauletAPötterRMazeronJJMeertensHVan LimbergenEThe GEC ESTRO Handbook of BrachytherapyBrusselsEuropean Society of Therapeutic Radiology and Oncology2002153215Search in Google Scholar

Heymann J. The so-called Stockholm method and the results of treatment of uterine cancer at Radiumhemmet. Acta Radiol 1935; 16: 129-48.HeymannJ.The so-called Stockholm method and the results of treatment of uterine cancer at RadiumhemmetActa Radiol1935161294810.3109/00016923509174759Search in Google Scholar

Kottmeier HL. Surgical and radiation treatment of carcinoma of the uterine cervix. Experience by the current individualized Stockholm technique. Acta Obstet Gynecol Scand 1964; 43: 1-48.KottmeierHL.Surgical and radiation treatment of carcinoma of the uterine cervix. Experience by the current individualized Stockholm techniqueActa Obstet Gynecol Scand19644314810.3109/00016346409156823Search in Google Scholar

Tod M, Meredith WJ. Treatment of cancer of the cervix uteri: A revised Manchester method. Br J Radiol 1953; 26: 252-7.TodMMeredithWJ.Treatment of cancer of the cervix uteri: A revised Manchester methodBr J Radiol195326252710.1259/0007-1285-26-305-252Search in Google Scholar

Jamema SV, Kirisits C, Mahantshetty U, Trnkova P, Deshpande DD, Shrivastava SK, Pötter R. Comparison of DVH parameters and loading patterns of standard loading, manual and inverse optimization for intracavitary brachytherapy on a subset of tandem/ovoid cases. Radiother Oncol 2010; 97: 501-6.JamemaSVKirisitsCMahantshettyUTrnkovaPDeshpandeDDShrivastavaSKPötterR.Comparison of DVH parameters and loading patterns of standard loading, manual and inverse optimization for intracavitary brachytherapy on a subset of tandem/ovoid casesRadiother Oncol201097501610.1016/j.radonc.2010.08.011Search in Google Scholar

Hira M, Podgorsak MB, Jaggernauth W, Malhotra HK. Measurement of dose perturbation around shielded ovoids in high-dose-rate brachytherapy. Brachytherapy 2011; 10: 232-41.HiraMPodgorsakMBJaggernauthWMalhotraHK.Measurement of dose perturbation around shielded ovoids in high-dose-rate brachytherapyBrachytherapy2011102324110.1016/j.brachy.2010.08.008Search in Google Scholar

Gifford KA, Horton JL, Pelloski CE, Jhingran A, Court LE, Mourtada F, Eifel P. A three-dimensional computed tomography-assisted Monte Carlo evaluation of ovoid shielding on the dose to the bladder and rectum in intracavitary radiotherapy for cervical cancer. Int J Radiat Oncol Biol Phys 2005; 63: 615-21.GiffordKAHortonJLPelloskiCEJhingranACourtLEMourtadaFEifelP.A three-dimensional computed tomography-assisted Monte Carlo evaluation of ovoid shielding on the dose to the bladder and rectum in intracavitary radiotherapy for cervical cancerInt J Radiat Oncol Biol Phys2005636152110.1016/j.ijrobp.2005.03.043Search in Google Scholar

Price MJ, Gifford KA, Horton JL, Eifel PJ, Gillin T, Lawyer AA, Mourtada F. Monte Carlo model for a prototype CT-compatible, anatomically adaptive, shielded intracavitary brachytherapy applicator for the treatment of cervical cancer. Med Phys 2009; 36: 4147-55.PriceMJGiffordKAHortonJLEifelPJGillinTLawyerAAMourtadaF.Monte Carlo model for a prototype CT-compatible, anatomically adaptive, shielded intracavitary brachytherapy applicator for the treatment of cervical cancerMed Phys20093641475510.1118/1.3193682Search in Google Scholar

Steggarda MJ, Moonen LM, Damen EM, Lebesque JV. An analysis of the effect of ovoid shields in a selectron-LDR cervical applicator on dose distribution in rectum and bladder. Int J Radiat Oncol Biol Phys 1997; 39: 237-45.SteggardaMJMoonenLMDamenEMLebesqueJV.An analysis of the effect of ovoid shields in a selectron-LDR cervical applicator on dose distribution in rectum and bladderInt J Radiat Oncol Biol Phys1997392374510.1016/S0360-3016(97)00298-8Search in Google Scholar

Han DY, Webster MJ, Scanderberg DJ, Yashar C, Choi D, Song B, et al. Direction-modulated brachytherapy for high-dose-rate treatment of cervical cancer. I: theoretical design. Int J Radiat Oncol Biol Phys 2014; 89: 666-73.HanDYWebsterMJScanderbergDJYasharCChoiDSongBet alDirection-modulated brachytherapy for high-dose-rate treatment of cervical cancer. I: theoretical designInt J Radiat Oncol Biol Phys2014896667310.1016/j.ijrobp.2014.02.03924751413Search in Google Scholar

Liu Y, Flynn RT, Kim Y, Yang W, Wu X. Dynamic rotating-shield brachytherapy. Med Phys 2013; 40: 12703LiuYFlynnRTKimYYangWWuX.Dynamic rotating-shield brachytherapyMed Phys2013401270310.1118/1.4828778383843024320489Search in Google Scholar

Adams QE, Xu J, Breitbach EK, Li X, Enger SA, Rockey WR, et al. Interstitial rotating shield brachytherapy for prostate cancer. Med Phys 2014; 41: 051703.AdamsQEXuJBreitbachEKLiXEngerSARockeyWRet alInterstitial rotating shield brachytherapy for prostate cancerMed Phys20144105170310.1118/1.487044124784369Search in Google Scholar

Haie-Meder C, Pötter R, Van Limbergen E, Briot E, De Brabandere M, Dimopoulos J, et al. Recommendations from Gynaecological (GYN) GEC-ESTRO Working Group (I): concepts and terms in 3D image based 3D treatment planning in cervix cancer brachytherapy with emphasis on MRI assessment of GTV and CTV. Radiother Oncol 2005; 74: 235-45.Haie-MederCPötterRVan LimbergenEBriotEDe BrabandereMDimopoulosJet alRecommendations from Gynaecological (GYN) GEC-ESTRO Working Group (I): concepts and terms in 3D image based 3D treatment planning in cervix cancer brachytherapy with emphasis on MRI assessment of GTV and CTVRadiother Oncol2005742354510.1016/j.radonc.2004.12.01515763303Search in Google Scholar

Pötter R, Haie-Meder C, Van Limbergen E, Barillot I, De Brabandere M, Dimopoulos J. et al. Recommendations from gynaecological (GYN) GEC-ESTRO Working Group: (II): concepts and terms of 3D imaging, radiation physics, radiobiology, and 3D dose volume parameters. Radiother Oncol 2006; 78: 67-77.PötterRHaie-MederCVan LimbergenEBarillotIDe BrabandereMDimopoulosJ.et alRecommendations from gynaecological (GYN) GEC-ESTRO Working Group: (II): concepts and terms of 3D imaging, radiation physics, radiobiology, and 3D dose volume parametersRadiother Oncol200678677710.1016/j.radonc.2005.11.01416403584Search in Google Scholar

Hellebust TP, Kirisits C, Berger D, Pérez-Calatayud J, De Brabandere M, De Leeuw AA, et al. Recommendations from Gynaecological (GYN) GEC-ESTRO Working Group: Considerations and pitfalls in comissioning and applicator reconstruction in 3D image-based treatment planning of cervix cancer brachytherapy. Radiother Oncol 2010; 96: 153-60.HellebustTPKirisitsCBergerDPérez-CalatayudJDe BrabandereMDe LeeuwAAet alRecommendations from Gynaecological (GYN) GEC-ESTRO Working Group: Considerations and pitfalls in comissioning and applicator reconstruction in 3D image-based treatment planning of cervix cancer brachytherapyRadiother Oncol2010961536010.1016/j.radonc.2010.06.00420663578Search in Google Scholar

Dimopoulos JC, Petrow P, Tanderup K, Petric P, Berger D, Kirisits C, et al. Recommendations from Gynaecological (GYN) GEC-ESTRO Working Group (IV): Basic principles and parameters for MRI imaging within the frame of image based adaptive cervix cancer brachytherapy. Radiother Oncol 2012; 103: 113-22.DimopoulosJCPetrowPTanderupKPetricPBergerDKirisitsCet alRecommendations from Gynaecological (GYN) GEC-ESTRO Working Group (IV): Basic principles and parameters for MRI imaging within the frame of image based adaptive cervix cancer brachytherapyRadiother Oncol20121031132210.1016/j.radonc.2011.12.024333608522296748Search in Google Scholar

Lindegaard JC, Madsen ML, Traberg A, Meisner B, Nielsen SK, Tanderup K, et al. Individualised 3D printed vaginal template for MRI guided brachytherapy in locally advanced cervical cancer. Radiother Oncol 2016; 118: 173-5.LindegaardJCMadsenMLTrabergAMeisnerBNielsenSKTanderupKet alIndividualised 3D printed vaginal template for MRI guided brachytherapy in locally advanced cervical cancerRadiother Oncol2016118173510.1016/j.radonc.2015.12.01226743833Search in Google Scholar

Segedin B, Petric P. Uncertainties in target volume delineation in radiotherapy – are they relevant and what can we do about them? Radiol Oncol 2016; 50: 254-62.SegedinBPetricP.Uncertainties in target volume delineation in radiotherapy – are they relevant and what can we do about them?Radiol Oncol2016502546210.1515/raon-2016-0023502465527679540Search in Google Scholar

Petric P, Hudej R, Rogelj P, Blas M, Tanderup K, Fidarova E, et al. Uncertainties of target vloume delineation in MRI guided adaptive brachytherapy of cervix cancer: A multi-institutional study. Radiother Oncol 2013; 107: 6-12.PetricPHudejRRogeljPBlasMTanderupKFidarovaEet alUncertainties of target vloume delineation in MRI guided adaptive brachytherapy of cervix cancer: A multi-institutional studyRadiother Oncol201310761210.1016/j.radonc.2013.01.01423453539Search in Google Scholar

Dimopoulos JC, De Vos V, Berger D, Petric P, Dumas I, Kirisits C, et al. Interobserver comparison of target delineation for MRI-assisted cervical cancer brachytherapy: application of the GYN GEC-ESTRO recommendations. Radiother Oncol 2009; 91: 166-72.DimopoulosJCDe VosVBergerDPetricPDumasIKirisitsCet alInterobserver comparison of target delineation for MRI-assisted cervical cancer brachytherapy: application of the GYN GEC-ESTRO recommendationsRadiother Oncol2009911667210.1016/j.radonc.2008.10.023Search in Google Scholar

Petric P, Dimopoulos J, Kirisits C, Berger D, Hudej R, Pötter R. et al. Inter-and intra observer variation in HR-CTV contouring: Intercomparison of transverse and paratransverse image orientation in 3D-MRI assisted cervix cancer brachytherapy. Radiother Oncol 2008; 89: 164-71.PetricPDimopoulosJKirisitsCBergerDHudejRPötterR.et alInter-and intra observer variation in HR-CTV contouring: Intercomparison of transverse and paratransverse image orientation in 3D-MRI assisted cervix cancer brachytherapyRadiother Oncol2008891647110.1016/j.radonc.2008.07.030Search in Google Scholar

Petric P, Hudej R, Rogelj P, Blas M, Segedin B, Logar HB, Dimopoulos JC. Comparison of 3D MRI with high sampling efficiency and 2D multiplanar MRI for contouring in cervix cancer brachytherapy. Radiol Oncol 2012; 46: 242-51.PetricPHudejRRogeljPBlasMSegedinBLogarHBDimopoulosJC.Comparison of 3D MRI with high sampling efficiency and 2D multiplanar MRI for contouring in cervix cancer brachytherapyRadiol Oncol2012462425110.2478/v10019-012-0023-1Search in Google Scholar

Hellebust TP, Tanderup K, Lervåg C, Fidarova E, Berger D, Malinen E, et al. Dosimetric impact of interobserver variability in MRI-based delineation for cervical cancer brachytherapy. Radiother Oncol 2013; 107: 13-9.HellebustTPTanderupKLervågCFidarovaEBergerDMalinenEet alDosimetric impact of interobserver variability in MRI-based delineation for cervical cancer brachytherapyRadiother Oncol201310713910.1016/j.radonc.2012.12.017Search in Google Scholar

Petric P, Pötter R, Van Limbergen E, Haie-Meder C. Adaptive contouring of the target vloume and organs at risk. In: Viswanathan AN, ed. Gynecologic Radiation Therapy: Novel Approaches to Image-Guidance and Management. Heidelberg: Springer, corp. 2011, p. 99-118.PetricPPötterRVan LimbergenEHaie-MederC.Adaptive contouring of the target vloume and organs at riskViswanathanANGynecologic Radiation Therapy: Novel Approaches to Image-Guidance and ManagementHeidelbergSpringer, corp20119911810.1007/978-3-540-68958-4_9Search in Google Scholar

Viswanathan AN, Erickson B, Gaffney DK, Beriwal S, Bhatia SK, Lee Burnett O 3rd, et al. Comparison and consenus guidelines for delineation of clinical target volume for CT-and MR-based brachytherapy in locally advanced cervical cancer. Int J Radiat Oncol Biol Phys 2014; 90: 320-8.ViswanathanANEricksonBGaffneyDKBeriwalSBhatiaSKLee BurnettO3rdet alComparison and consenus guidelines for delineation of clinical target volume for CT-and MR-based brachytherapy in locally advanced cervical cancerInt J Radiat Oncol Biol Phys201490320810.1016/j.ijrobp.2014.06.005Search in Google Scholar

Duane FK, Langan B, Gillham C, Walsh L, Rangaswamy G, Lyons C, et al. Impact of delineation uncertainties on dose to organs at risk in CT-guided intracavitary brachytherapy. Brachytherapy 2014; 13: 210-8.DuaneFKLanganBGillhamCWalshLRangaswamyGLyonsCet alImpact of delineation uncertainties on dose to organs at risk in CT-guided intracavitary brachytherapyBrachytherapy201413210810.1016/j.brachy.2013.08.010Search in Google Scholar

Saarnak AE, Boersma M, Van Bunnigen BNFM, Wolterink R, Steggarda MJ. Inter-observer variation in delineation of bladder and rectum contours for brachytherapy of cervical cancer. Radiother Oncol 2000; 56: 37-42.SaarnakAEBoersmaMVan BunnigenBNFMWolterinkRSteggardaMJ.Inter-observer variation in delineation of bladder and rectum contours for brachytherapy of cervical cancerRadiother Oncol200056374210.1016/S0167-8140(00)00185-7Search in Google Scholar

Petric P, Hellebust TP, Tanderup K, Poolakundan MR, Divakar SR, Al-Hammadi N, et al. Uncertainness of organs at risk delineation in MRI guided adaptive cervix cancer brachytherapy: A multi-institutional study. Eur J Cancer 2013; 49: S726.PetricPHellebustTPTanderupKPoolakundanMRDivakarSRAl-HammadiNet alUncertainness of organs at risk delineation in MRI guided adaptive cervix cancer brachytherapy: A multi-institutional studyEur J Cancer201349S726Search in Google Scholar

Viswanathan AN, Dimopoulos JCA, Kirisits C, Berger D, Pötter R. CT versus MRI-based contouring in cervical cancer brachytherapy: results of a prospectivetrial and preliminary guidelines for standardized Contours. Int J Radiat Oncol Biol Phys 2007; 68: 491-8.ViswanathanANDimopoulosJCAKirisitsCBergerDPötterR.CT versus MRI-based contouring in cervical cancer brachytherapy: results of a prospectivetrial and preliminary guidelines for standardized ContoursInt J Radiat Oncol Biol Phys200768491810.1016/j.ijrobp.2006.12.02117331668Search in Google Scholar

eISSN:
1581-3207
Language:
English
Publication timeframe:
4 times per year
Journal Subjects:
Medicine, Clinical Medicine, Internal Medicine, Haematology, Oncology, Radiology