Improving automatic delineation for head and neck organs at risk by Deep Learning Contouring

被引:161
作者
van Dijk, Lisanne V. [1 ]
Van den Bosch, Lisa [1 ]
Aljabar, Paul [2 ]
Peressutti, Devis [2 ]
Both, Stefan [1 ]
Steenbakkers, Roel. J. H. M. [1 ]
Langendijk, Johannes A. [1 ]
Gooding, Mark J. [2 ]
Brouwer, Charlotte L. [1 ]
机构
[1] Univ Groningen, Univ Med Ctr Groningen, Dept Radiat Oncol, Groningen, Netherlands
[2] Oxford Ctr Innovat, Mirada Med Ltd, Oxford, England
关键词
Head and neck; Organs at risks; Deep learning; Artificial intelligent; Auto segmentation; Contouring; AUTO-SEGMENTATION; RADIOTHERAPY; CT; ATLAS; CANCER; VARIABILITY; ONCOLOGY; VOLUME;
D O I
10.1016/j.radonc.2019.09.022
中图分类号
R73 [肿瘤学];
学科分类号
100214 ;
摘要
Introduction: Adequate head and neck (HN) organ-at-risk (OAR) delineation is crucial for HN radiotherapy and for investigating the relationships between radiation dose to OARs and radiation-induced side effects. The automatic contouring algorithms that are currently in clinical use, such as atlas-based contouring (ABAS), leave room for improvement. The aim of this study was to use a comprehensive evaluation methodology to investigate the performance of HN OAR auto-contouring when using deep learning contouring (DLC), compared to ABAS. Methods: The DLC neural network was trained on 589 HN cancer patients. DLC was compared to ABAS by providing each method with an independent validation cohort of 104 patients, which had also been manually contoured. For each of the 22 OAR contours - glandular, upper digestive tract and central nervous system (CNS)-related structures - the dice similarity coefficient (DICE), and absolute mean and max dose differences (vertical bar Delta mean-dose vertical bar and vertical bar Delta max-dose vertical bar) performance measures were obtained. For a subset of 7 OARs, an evaluation of contouring time, inter-observer variation and subjective judgement was performed. Results: DLC resulted in equal or significantly improved quantitative performance measures in 19 out of 22 OARs, compared to the ABAS (DICE/vertical bar Delta mean dose vertical bar/vertical bar Delta max dose vertical bar: 0.59/4.2/4.1 Gy (ABAS); 0.74/1.1/0.8 Gy (DLC)). The improvements were mainly for the glandular and upper digestive tract OARs. DLC significantly reduced the delineation time for the inexperienced observer. The subjective evaluation showed that DLC contours were more often preferable to the ABAS contours overall, were considered to be more precise, and more often confused with manual contours. Manual contours still outperformed both DLC and ABAS; however, DLC results were within or bordering the inter-observer variability for the manual edited contours in this cohort. Conclusion: The DLC, trained on a large HN cancer patient cohort, outperformed the ABAS for the majority of HN OARs. (C) 2019 The Authors. Published by Elsevier B.V.
引用
收藏
页码:115 / 123
页数:9
相关论文
共 40 条
[1]   Comparison of auto-contouring methods for regions of interest in prostate CT [J].
Aljabar, P. ;
Peressutti, D. ;
Brunenberg, E. ;
Smeenk, R. ;
Van Leeuwen, R. ;
Gooding, M. .
RADIOTHERAPY AND ONCOLOGY, 2018, 127 :S218-S219
[2]  
[Anonymous], [No title captured]
[3]   Practical contouring guidelines with an MR-based atlas of brainstem structures involved in radiation-induced nausea and vomiting [J].
Beddok, Arnaud ;
Faivre, Jean-Christophe ;
Coutte, Alexandre ;
Le Guevelou, Jennifer ;
Welmant, Julien ;
Clavier, Jean-Baptiste ;
Guihard, Sebastien ;
Janoray, Guillaume ;
Calugaru, Valentin ;
Pointreau, Yoann ;
Lacout, Alexis ;
Salleron, Julia ;
Lefranc, Michel ;
Hasboun, Dominique ;
Duvernoy, Henri M. ;
Thariat, Juliette .
RADIOTHERAPY AND ONCOLOGY, 2019, 130 :113-120
[4]   NTCP models for patient-rated xerostomia and sticky saliva after treatment with intensity modulated radiotherapy for head and neck cancer: The role of dosimetric and clinical factors [J].
Beetz, Ivo ;
Schilstra, Cornelis ;
van der Schaaf, Arjen ;
van den Heuvel, Edwin R. ;
Doornaert, Patricia ;
van Luijk, Peter ;
Vissink, Arjan ;
van der Laan, Bernard F. A. M. ;
Leemans, Charles R. ;
Bijl, Henk P. ;
Christianen, Miranda E. M. C. ;
Steenbakkers, Roel J. H. M. ;
Langendijk, Johannes A. .
RADIOTHERAPY AND ONCOLOGY, 2012, 105 (01) :101-106
[5]   CT-based delineation of organs at risk in the head and neck region: DAHANCA, EORTC, GORTEC, HKNPCSG, NCIC CTG, NCRI, NRG Oncology and TROG consensus guidelines [J].
Brouwer, Charlotte L. ;
Steenbakkers, Roel J. H. M. ;
Bourhis, Jean ;
Budach, Wilfried ;
Grau, Cai ;
Gregoire, Vincent ;
van Herk, Marcel ;
Lee, Anne ;
Maingon, Philippe ;
Nutting, Chris ;
O'Sullivan, Brian ;
Porceddu, Sandro V. ;
Rosenthal, David I. ;
Sijtsema, Nanna M. ;
Langendijk, Johannes A. .
RADIOTHERAPY AND ONCOLOGY, 2015, 117 (01) :83-90
[6]   3D Variation in delineation of head and neck organs at risk [J].
Brouwer, Charlotte L. ;
Steenbakkers, Roel J. H. M. ;
van den Heuvel, Edwin ;
Duppen, Joop C. ;
Navran, Arash ;
Bijl, Henk P. ;
Chouvalova, Olga ;
Burlage, Fred R. ;
Meertens, Harm ;
Langendijk, Johannes A. ;
van 't Veld, Aart A. .
RADIATION ONCOLOGY, 2012, 7
[7]   RADIOTHERAPY DOSE-VOLUME EFFECTS ON SALIVARY GLAND FUNCTION [J].
Deasy, Joseph O. ;
Moiseenko, Vitali ;
Marks, Lawrence ;
Chao, K. S. Clifford ;
Nam, Jiho ;
Eisbruch, Avraham .
INTERNATIONAL JOURNAL OF RADIATION ONCOLOGY BIOLOGY PHYSICS, 2010, 76 (03) :S58-S63
[8]   MEASURES OF THE AMOUNT OF ECOLOGIC ASSOCIATION BETWEEN SPECIES [J].
DICE, LR .
ECOLOGY, 1945, 26 (03) :297-302
[9]   Normal Tissue Anatomy for Oropharyngeal Cancer: Contouring Variability and Its Impact on Optimization [J].
Feng, Mary ;
Demiroz, Candan ;
Vineberg, Karen A. ;
Eisbruch, Avraham ;
Balter, James M. .
INTERNATIONAL JOURNAL OF RADIATION ONCOLOGY BIOLOGY PHYSICS, 2012, 84 (02) :E245-E249
[10]   Automatic segmentation for adaptive planning in nasopharyngeal carcinoma IMRT: Time, geometrical, and dosimetric analysis [J].
Fung, Nelson Tsz Cheong ;
Hung, Wai Man ;
Sze, Chun Kin ;
Lee, Michael Chi Hang ;
Ng, Wai Tong .
MEDICAL DOSIMETRY, 2020, 45 (01) :60-65