935
Views
38
CrossRef citations to date
0
Altmetric
Research Article

Feasibility and sensitivity study of helical tomotherapy for dose painting plans

, , &
Pages 991-996 | Received 19 May 2010, Accepted 03 Jun 2010, Published online: 13 Sep 2010

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (6)

Sarah Differding, Edmond Sterpin, Guillaume Janssens, François-Xavier Hanin, John Aldo Lee & Vincent Grégoire. (2016) Methodology for adaptive and robust FDG-PET escalated dose painting by numbers in head and neck tumors. Acta Oncologica 55:2, pages 217-225.
Read now
Marius Røthe Arnesen, Ingerid Skjei Knudtsen, Bernt Louni Rekstad, Karsten Eilertsen, Einar Dale, Kjersti Bruheim, Åslaug Helland, Ayca Muftuler Løndalen, Taran Paulsen Hellebust & Eirik Malinen. (2015) Dose painting by numbers in a standard treatment planning system using inverted dose prescription maps. Acta Oncologica 54:9, pages 1607-1613.
Read now
Stéphanie Servagi-Vernat, Sarah Differding, Edmond Sterpin, Francois-Xavier Hanin, Daniel Labar, Anne Bol, John A. Lee & Vincent Grégoire. (2015) Hypoxia-guided adaptive radiation dose escalation in head and neck carcinoma: A planning study. Acta Oncologica 54:7, pages 1008-1016.
Read now
Edmond Sterpin, Sarah Differding, Guillaume Janssens, Xavier Geets, Vincent Grégoire & John A. Lee. (2015) Generation of prescriptions robust against geometric uncertainties in dose painting by numbers. Acta Oncologica 54:2, pages 253-260.
Read now
Iuliana Toma-Dasu, Johan Uhrdin, Laura Antonovic, Alexandru Dasu, Sandra Nuyts, Piet Dirix, Karin Haustermans & Anders Brahme. (2012) Dose prescription and treatment planning based on FMISO-PET hypoxia. Acta Oncologica 51:2, pages 222-230.
Read now
Cai Grau, Dag Rune Olsen, Jens Overgaard, Morten Høyer, Jacob Christian Lindegaard & Ludvig Paul Muren. (2010) Biology-guided adaptive radiation therapy – presence or future?. Acta Oncologica 49:7, pages 884-887.
Read now

Articles from other publishers (32)

Yaru Pang, Hui Wang & He Li. (2022) Medical Imaging Biomarker Discovery and Integration Towards AI-Based Personalized Radiotherapy. Frontiers in Oncology 11.
Crossref
Jing Zeng & Stephen R. Bowen. (2021) Treatment Intensification in Locally Advanced/Unresectable NSCLC Through Combined Modality Treatment and Precision Dose Escalation. Seminars in Radiation Oncology 31:2, pages 105-111.
Crossref
Daniela Thorwarth. (2018) Biologically adapted radiation therapy. Zeitschrift für Medizinische Physik 28:3, pages 177-183.
Crossref
Julie Schatteman, Dirk Van Gestel, Dieter Berwouts, Werner De Gersem, Geert De Kerf, Wilfried De Neve, Bie De Ost, Ana Maria Luiza Olteanu, Sylvie Rottey, Tom Vercauteren, Ingeborg Goethals & Fréderic Duprez. (2018) A feasibility study on adaptive 18F-FDG-PET-guided radiotherapy for recurrent and second primary head and neck cancer in the previously irradiated territoryMachbarkeitsstudie zur adaptiven 18F-FDG-PET-gestützten Radiotherapie bei rezidivierenden und sekundären Kopf-Hals-Tumoren in zuvor bestrahltem Gebiet. Strahlentherapie und Onkologie 194:8, pages 727-736.
Crossref
Hannah Mary Thomas, Paul E Kinahan, James Jebaseelan E Samuel & Stephen R Bowen. (2017) Impact of tumour motion compensation and delineation methods on FDG PET ‐based dose painting plan quality for NSCLC radiation therapy . Journal of Medical Imaging and Radiation Oncology 62:1, pages 81-90.
Crossref
Vincent Grégoire, Daniela Thorwarth & John Aldo Lee. (2018) Molecular Imaging-Guided Radiotherapy for the Treatment of Head-and-Neck Squamous Cell Carcinoma: Does it Fulfill the Promises?. Seminars in Radiation Oncology 28:1, pages 35-45.
Crossref
Sarah Differding, Edmond Sterpin, Nicolas Hermand, Bianca Vanstraelen, Sandra Nuyts, Nathalie de Patoul, Jean-Marc Denis, John Aldo Lee & Vincent Grégoire. (2017) Radiation dose escalation based on FDG-PET driven dose painting by numbers in oropharyngeal squamous cell carcinoma: a dosimetric comparison between TomoTherapy-HA and RapidArc. Radiation Oncology 12:1.
Crossref
E. Jiménez-Ortega, A. Ureba, A. Vargas, J.A. Baeza, A. Wals-Zurita, F.J. García-Gómez, A.R. Barbeiro & A. Leal. (2017) Dose painting by means of Monte Carlo treatment planning at the voxel level. Physica Medica 42, pages 339-344.
Crossref
Malgorzata Skorska, Tomasz Piotrowski & Adam Ryczkowski. (2017) Comparison of dose distribution for head and neck cancer patients with and without dose painting escalation during radiotherapy realized with tomotherapy unit. The British Journal of Radiology 90:1075, pages 20170019.
Crossref
Malgorzata Skórska & Tomasz Piotrowski. (2017) Personalized radiotherapy treatment planning based on functional imaging. Reports of Practical Oncology & Radiotherapy 22:4, pages 327-330.
Crossref
Eunsin Lee, Jing Zeng, Robert S. Miyaoka, Jatinder Saini, Paul E. Kinahan, George A. Sandison, Tony Wong, Hubert J. Vesselle, Ramesh Rengan & Stephen R. Bowen. (2017) Functional lung avoidance and response-adaptive escalation (FLARE) RT: Multimodality plan dosimetry of a precision radiation oncology strategy. Medical Physics 44:7, pages 3418-3429.
Crossref
Alexei V. Chvetsov, Joseph G. Rajendran, Jing Zeng, Shilpen A. Patel, Stephen R. Bowen & Edward Y. Kim. (2017) Theoretical effectiveness of cell survival in fractionated radiotherapy with hypoxia-targeted dose escalation. Medical Physics 44:5, pages 1975-1982.
Crossref
Maria Picchio, Elena Incerti & Nadia Di Muzio. 2017. Basic Science of PET Imaging. Basic Science of PET Imaging 577 608 .
M. Orlandi, A. Botti, R. Sghedoni, E. Cagni, P. Ciammella, C. Iotti & M. Iori. (2016) Feasibility of voxel-based Dose Painting for recurrent Glioblastoma guided by ADC values of Diffusion-Weighted MR imaging. Physica Medica 32:12, pages 1651-1658.
Crossref
Małgorzata Skórska. (2016) Zastosowanie obrazów funkcjonalnych w planowaniu leczenia radioterapii ze szczególnym uwzględnieniem metody „dose painting”. Letters in Oncology Science 13:1, pages 1-7.
Crossref
Malgorzata Skórska, Tomasz Piotrowski, Adam Ryczkowski & Joanna Kaźmierska. (2016) Comparison of treatment planning parameters for dose painting head and neck plans delivered with tomotherapy. The British Journal of Radiology 89:1060, pages 20150970.
Crossref
M. Orlandi, A. Botti, E. Cagni, R. Sghedoni, L. Orsingher, P. Ciammella, C. Iotti & M. Iori. (2016) A feasibility study of tomotherapy dose painting hypofractionated treatments on glioblastoma multiforme (GBM) guided by MRI. Physica Medica 32, pages 47.
Crossref
M. Orlandi, A. Botti, E. Cagni, R. Sghedoni, L. Orsingher, P. Ciammella, C. Iotti & M. Iori. (2016) A method to define isodose-based structures in dose painting treatment optimization of glioblastoma multiforme tumors (GBM). Physica Medica 32, pages 47.
Crossref
Robert Jeraj, Tyler Bradshaw & Urban Simončič. (2015) Molecular Imaging to Plan Radiotherapy and Evaluate Its Efficacy. Journal of Nuclear Medicine 56:11, pages 1752-1765.
Crossref
R. Alonzi. (2015) Functional Radiotherapy Targeting using Focused Dose Escalation. Clinical Oncology 27:10, pages 601-617.
Crossref
Stephen R. Bowen, Jatinder Saini, Tobias R. Chapman, Robert S. Miyaoka, Paul E. Kinahan, George A. Sandison, Tony Wong, Hubert J. Vesselle, Matthew J. Nyflot & Smith Apisarnthanarax. (2015) Differential hepatic avoidance radiation therapy: Proof of concept in hepatocellular carcinoma patients. Radiotherapy and Oncology 115:2, pages 203-210.
Crossref
A. M. Barragán, S. Differding, G. Janssens, J. A. Lee & E. Sterpin. (2015) Feasibility and robustness of dose painting by numbers in proton therapy with contour-driven plan optimization. Medical Physics 42:4, pages 2006-2017.
Crossref
Suzanne E. Lapi, Jason S. Lewis & Farrokh Dehdashti. (2015) Evaluation of Hypoxia With Copper-Labeled Diacetyl-bis(N-Methylthiosemicarbazone). Seminars in Nuclear Medicine 45:2, pages 177-185.
Crossref
Xiaorong Shi, Xue Meng, Xindong Sun, Ligang Xing & Jinming Yu. (2014) PET/CT imaging-guided dose painting in radiation therapy. Cancer Letters 355:2, pages 169-175.
Crossref
Ingerid Skjei Knudtsen, Wouter van Elmpt, Michel Öllers & Eirik Malinen. (2014) Impact of PET reconstruction algorithm and threshold on dose painting of non-small cell lung cancer. Radiotherapy and Oncology 113:2, pages 210-214.
Crossref
S. Servagi-Vernat & P. Giraud. (2014) Apport de l’imagerie fonctionnelle dans la radiothérapie des cancers des voies aérodigestives supérieures : vers l’adaptation à la biologie ?. Cancer/Radiothérapie 18:5-6, pages 565-571.
Crossref
Román Bohoslavsky, Marnix G Witte, Tomas M Janssen & Marcel van Herk. (2013) Probabilistic objective functions for margin-less IMRT planning. Physics in Medicine and Biology 58:11, pages 3563-3580.
Crossref
Stephen R. Bowen, Richard J. Chappell, Søren M. Bentzen, Michael A. Deveau, Lisa J. Forrest & Robert Jeraj. (2012) Spatially resolved regression analysis of pre-treatment FDG, FLT and Cu-ATSM PET from post-treatment FDG PET: An exploratory study. Radiotherapy and Oncology 105:1, pages 41-48.
Crossref
Vincent Grégoire, Robert Jeraj, John Aldo Lee & Brian O’Sullivan. (2012) Radiotherapy for head and neck tumours in 2012 and beyond: conformal, tailored, and adaptive?. The Lancet Oncology 13:7, pages e292-e300.
Crossref
Thomas Dirscherl, Mark Rickhey & Ludwig Bogner. (2012) Feasibility of TCP-based dose painting by numbers applied to a prostate case with 18F-Choline PET imaging. Zeitschrift für Medizinische Physik 22:1, pages 48-57.
Crossref
Marnix Witte, Georgy Shakirin, Antonetta Houweling, Heike Peulen & Marcel van Herk. (2011) Dealing with geometric uncertainties in dose painting by numbers: Introducing the ΔVH1This work was supported by Dutch Cancer Society grant 2007-3895.1. Radiotherapy and Oncology 100:3, pages 402-406.
Crossref
Jan Rødal, Einar Waldeland, Åste Søvik & Eirik Malinen. (2011) Dosimetric verification of biologically adapted IMRT. Medical Physics 38:5, pages 2586-2594.
Crossref

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.