An open-source development based on photogrammetry for a real-time IORT treatment planning system

被引:1
作者
Lozares-Cordero, Sergio [1 ,8 ]
Bermejo-Barbanoj, Carlos [2 ]
Badias-Herbera, Alberto [3 ]
Ibanez-Carreras, Reyes [4 ]
Ligorred-Padilla, Luis [5 ]
Ponce-Ortega, Jose Miguel
Gonzalez-Perez, Victor [6 ]
Gandia-Martinez, Almudena [1 ]
Font-Gomez, Jose Antonio [1 ]
Blas-Borroy, Olga [7 ]
Gonzalez-Ibanez, David [2 ]
机构
[1] Miguel Servet Univ Hosp, Phys & Radiat Protect Dept, Zaragoza, Spain
[2] Univ Zaragoza, Aragon Inst Engn Res, Zaragoza, Spain
[3] Univ Politecn Madrid, Higher Tech Sch Ind Engn, Madrid, Spain
[4] Miguel Servet Univ Hosp, Radiat Oncol Dept, Zaragoza, Spain
[5] Miguel Servet Univ Hosp, Dept Gen & Gastrointestinal Surg, Esophagogastr Surg & Sarcoma Unit, Zaragoza, Spain
[6] IVO Fdn, Med Physicist Dept, Valencia, Spain
[7] Miguel Servet Univ Hosp, Engn & Maintenance Serv, Zaragoza, Spain
[8] Miguel Servet Univ Hosp, Paseo Isabel Catol 1-3, Zaragoza 50009, Spain
来源
PHYSICA MEDICA-EUROPEAN JOURNAL OF MEDICAL PHYSICS | 2023年 / 112卷
关键词
IORT; TPS; Photogrammetry; Radiochromic films; Electronic brachytherapy; IN-VIVO DOSIMETRY; RADIOCHROMIC FILM DOSIMETRY; SOFT-TISSUE SARCOMA; RADIATION-THERAPY; BRACHYTHERAPY; RECOMMENDATIONS; RADIOTHERAPY; CALIBRATION; MODEL; WATER;
D O I
10.1016/j.ejmp.2023.102622
中图分类号
R8 [特种医学]; R445 [影像诊断学];
学科分类号
1002 ; 100207 ; 1009 ;
摘要
Purpose: This study presents a treatment planning system for intraoperative low-energy photon radiotherapy based on photogrammetry from real images of the surgical site taken in the operating room.Material and methods: The study population comprised 15 patients with soft-tissue sarcoma. The system obtains the images of the area to be irradiated with a smartphone or tablet, so that the absorbed doses in the tissue can be calculated from the reconstruction without the need for computed tomography.The system was commissioned using 3D printing of the reconstructions of the tumor beds. The absorbed doses at various points were verified using radiochromic films that were suitably calibrated for the corresponding energy and beam quality.Results: The average reconstruction time of the 3D model from the video sequence in the 15 patients was 229,6 & PLUSMN;7,0 s. The entire procedure, including video capture, reconstruction, planning, and dose calculation was 520,6 & PLUSMN;39,9 s. Absorbed doses were measured on the 3D printed model with radiochromic film, the differences between these measurements and those calculated by the treatment planning system were 1.4% at the applicator surface, 2.6% at 1 cm, 3.9% at 2 cm and 6.2% at 3 cm.Conclusions: The study shows a photogrammetry-based low-energy photon IORT planning system, capable of obtaining real-time images inside the operating room, immediately after removal of the tumor and immediately before irradiation. The system was commissioned with radiochromic films measurements in 3D-printed model.
引用
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页数:10
相关论文
共 50 条
[41]   RADIANCE-A planning software for intra-operative radiation therapy [J].
Valdivieso-Casique, Manlio F. ;
Rodriguez, Raul ;
Rodriguez-Bescos, Samuel ;
Lardies, Dolores ;
Guerra, Pedro ;
Ledesma, Maria J. ;
Santos, Andres ;
Ibanez, Paula ;
Vidal, Marie ;
Udias, Jose M. ;
Otaduy, Miguel A. ;
Calama, Juan A. ;
Lopez-Tarjuelo, Juan ;
Antonio Santos-Miranda, Juan ;
Desco, Manuel ;
Garcia-Vazquez, Veronica ;
Marinetto, Eugenio ;
Pascau, Javier ;
Calvo, Felipe ;
Illana, Carlos .
TRANSLATIONAL CANCER RESEARCH, 2015, 4 (02) :196-209
[42]   Monte Carlo uncertainty analysis of dose estimates in radiochromic film dosimetry with single-channel and multichannel algorithms [J].
Vera-Sanchez, Juan Antonio ;
Ruiz-Morales, Carmen ;
Gonzalez-Lopez, Antonio .
PHYSICA MEDICA-EUROPEAN JOURNAL OF MEDICAL PHYSICS, 2018, 47 :23-33
[43]   Soft Tissue Sarcoma, Version 2.2018 [J].
von Mehren, Margaret ;
Randall, R. Lor ;
Benjamin, Robert S. ;
Boles, Sarah ;
Bui, Marilyn M. ;
Ganjoo, Kristen N. ;
George, Suzanne ;
Gonzalez, Ricardo J. ;
Heslin, Martin J. ;
Kane, John M., III ;
Keedy, Vicki ;
Kim, Edward ;
Koon, Henry ;
Mayerson, Joel ;
McCarter, Martin ;
McGarry, Sean V. ;
Meyer, Christian ;
Morris, Zachary S. ;
O'Donnell, Richard J. ;
Pappo, Alberto S. ;
Paz, I. Benjamin ;
Petersen, Ivy A. ;
Pfeifer, John D. ;
Riedel, Richard F. ;
Ruo, Bernice ;
Schuetze, Scott ;
Tap, William D. ;
Wayne, Jeffrey D. ;
Bergman, Mary Anne ;
Scavone, Jillian L. .
JOURNAL OF THE NATIONAL COMPREHENSIVE CANCER NETWORK, 2018, 16 (05) :536-563
[44]  
Vries J, 2014, LEARNOPENGL
[45]   A new calibration model of camera lens distortion [J].
Wang, Jianhua ;
Shi, Fanhuai ;
Zhang, Jing ;
Liu, Yuncai .
PATTERN RECOGNITION, 2008, 41 (02) :607-615
[46]  
White DR., 1989, Journal of the International Commission on Radiation Units and Measurements, DOI DOI 10.1093/JICRU/OS23.1.REPORT44
[47]   Comparison of TG-43 and TG-186 in breast irradiation using a low energy electronic brachytherapy source [J].
White, Shane A. ;
Landry, Guillaume ;
Fonseca, Gabriel Paiva ;
Holt, Randy ;
Rusch, Thomas ;
Beaulieu, Luc ;
Verhaegen, Frank ;
Reniers, Brigitte .
MEDICAL PHYSICS, 2014, 41 (06)
[48]   AAPM Task Group Report 238: 3D C-arms with volumetric imaging capability [J].
Xu, Zhigang ;
Wang, Guanqun ;
Zhai, Siming ;
Liu, Peng .
MEDICAL PHYSICS, 2023, 50 (08) :E904-E945
[49]   Randomized prospective study of the benefit of adjuvant radiation therapy in the treatment of soft tissue sarcomas of the extremity [J].
Yang, JC ;
Chang, AE ;
Baker, AR ;
Sindelar, WF ;
Danforth, DN ;
Topalian, SL ;
Delaney, T ;
Glatstein, E ;
Steinberg, SM ;
Merino, MJ ;
Rosenberg, SA .
JOURNAL OF CLINICAL ONCOLOGY, 1998, 16 (01) :197-203
[50]  
Zehtabian M, 2012, A Review on Main Defects of TG-43, Brachytherapy, DOI [10.5772/34360, DOI 10.5772/34360]