Atlas-based semiautomatic target volume definition (CTV) for head-and-neck tumors.
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Soulimane Abdellaoui | Rita Engenhart-Cabillic | Nina Timmesfeld | G. Straßmann | E. Fokas | R. Engenhart-Cabillic | Gerd Strassmann | Detlef Richter | Fayzal Bekkaoui | Marlene Haderlein | Emmanouil Fokas | Birgitt Vogel | Martin Henzel | N. Timmesfeld | Detlef Richter | Birgitt Vogel | M. Henzel | Soulimane Abdellaoui | Fayzal Bekkaoui | Marlene Haderlein
[1] Di Yan,et al. Automatic delineation of on-line head-and-neck computed tomography images: toward on-line adaptive radiotherapy. , 2007, International journal of radiation oncology, biology, physics.
[2] J E Medina,et al. Standardizing neck dissection terminology. Official report of the Academy's Committee for Head and Neck Surgery and Oncology. , 1991, Archives of otolaryngology--head & neck surgery.
[3] Y. Nishimura,et al. Analysis of interfractional set-up errors and intrafractional organ motions during IMRT for head and neck tumors to define an appropriate planning target volume (PTV)- and planning organs at risk volume (PRV)-margins. , 2006, Radiotherapy and oncology : journal of the European Society for Therapeutic Radiology and Oncology.
[4] C. Perez,et al. Intensity-modulated radiation therapy reduces late salivary toxicity without compromising tumor control in patients with oropharyngeal carcinoma: a comparison with conventional techniques. , 2001, Radiotherapy and oncology : journal of the European Society for Therapeutic Radiology and Oncology.
[5] D. Hallahan,et al. A study on adaptive IMRT treatment planning using kV cone-beam CT. , 2007, Radiotherapy and oncology : journal of the European Society for Therapeutic Radiology and Oncology.
[6] C. Terhaard,et al. Intensity-modulated radiotherapy significantly reduces xerostomia compared with conventional radiotherapy. , 2006, International journal of radiation oncology, biology, physics.
[7] David Sarrut,et al. Deformable registration for image-guided radiation therapy. , 2006, Zeitschrift fur medizinische Physik.
[8] K. Herfarth,et al. Changes in salivary gland function after radiotherapy of head and neck tumors measured by quantitative pertechnetate scintigraphy: comparison of intensity-modulated radiotherapy and conventional radiation therapy with and without Amifostine. , 2007, International journal of radiation oncology, biology, physics.
[9] Feng Xu,et al. The clinical feasibility and effect of online cone beam computer tomography-guided intensity-modulated radiotherapy for nasopharyngeal cancer. , 2009, Radiotherapy and oncology : journal of the European Society for Therapeutic Radiology and Oncology.
[10] Grégoire Malandain,et al. Atlas-based delineation of lymph node levels in head and neck computed tomography images. , 2008, Radiotherapy and oncology : journal of the European Society for Therapeutic Radiology and Oncology.
[11] Lei Dong,et al. Reduce in variation and improve efficiency of target volume delineation by a computer-assisted system using a deformable image registration approach. , 2007, International journal of radiation oncology, biology, physics.
[12] David A Jaffray,et al. A method to analyze the cord geometrical uncertainties during head and neck radiation therapy using cone beam CT. , 2009, Radiotherapy and oncology : journal of the European Society for Therapeutic Radiology and Oncology.
[13] P. Xia,et al. Intensity-modulated radiation therapy for head-and-neck cancer: the UCSF experience focusing on target volume delineation. , 2003, International journal of radiation oncology, biology, physics.
[14] Grégoire Malandain,et al. Evaluation of an atlas-based automatic segmentation software for the delineation of brain organs at risk in a radiation therapy clinical context. , 2008, Radiotherapy and oncology : journal of the European Society for Therapeutic Radiology and Oncology.
[15] K. Robbins,et al. Classification of neck dissection: current concepts and future considerations. , 1998, Otolaryngologic clinics of North America.
[16] H. Curtin,et al. An imaging-based classification for the cervical nodes designed as an adjunct to recent clinically based nodal classifications. , 1999, Archives of otolaryngology--head & neck surgery.
[17] Hwa-Koon Wu,et al. Nasopharyngeal carcinoma volume measurements determined with computed tomography: study of intraobserver and interobserver variability. , 2002, The Journal of otolaryngology.
[18] J. Shah,et al. TNM Staging of Cancers of the Head and Neck: Striving for Uniformity Among Diversity , 2005, CA: a cancer journal for clinicians.
[19] Jan-Jakob Sonke,et al. Setup uncertainties of anatomical sub-regions in head-and-neck cancer patients after offline CBCT guidance. , 2009, International journal of radiation oncology, biology, physics.
[20] D. Devakumar,et al. The adaptation of megavoltage cone beam CT for use in standard radiotherapy treatment planning. , 2009, Physics in medicine and biology.
[21] Brian O'Sullivan,et al. Intraobserver and interobserver variability in GTV delineation on FDG-PET-CT images of head and neck cancers. , 2007, International journal of radiation oncology, biology, physics.
[22] K. Robbins. Integrating radiological criteria into the classification of cervical lymph node disease. , 1999, Archives of otolaryngology--head & neck surgery.
[23] V. Grégoire,et al. Anatomical bases for the radiological delineation of lymph node areas. Major collecting trunks, head and neck. , 2007, Radiotherapy and oncology : journal of the European Society for Therapeutic Radiology and Oncology.
[24] Suzanne L Wolden,et al. A comparison of intensity-modulated radiation therapy and concomitant boost radiotherapy in the setting of concurrent chemotherapy for locally advanced oropharyngeal carcinoma. , 2006, International journal of radiation oncology, biology, physics.
[25] Sébastien Ourselin,et al. Computation of the mid-sagittal plane in 3-D brain images , 2002, IEEE Transactions on Medical Imaging.
[26] Nancy Lee,et al. Head-and-neck target delineation among radiation oncology residents after a teaching intervention: a prospective, blinded pilot study. , 2009, International journal of radiation oncology, biology, physics.
[27] Dezhong Yao,et al. A study on medical image registration by mutual information with pyramid data structure , 2007, Comput. Biol. Medicine.
[28] K. Ang,et al. CT-based delineation of lymph node levels and related CTVs in the node-negative neck: DAHANCA, EORTC, GORTEC, NCIC,RTOG consensus guidelines. , 2003, Radiotherapy and oncology : journal of the European Society for Therapeutic Radiology and Oncology.
[29] Gary E. Christensen,et al. Consistent landmark and intensity-based image registration , 2002, IEEE Transactions on Medical Imaging.