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PRIMAGE project: predictive in silico multiscale analytics to support childhood cancer personalised evaluation empowered by imaging biomarkers

PRIMAGE is one of the largest and more ambitious research projects dealing with medical imaging, artificial intelligence and cancer treatment in children. It is a 4-year European Commission-financed project that has 16 European partners in the consortium, including the European Society for Paediatri...

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Autores principales: Martí-Bonmatí, Luis, Alberich-Bayarri, Ángel, Ladenstein, Ruth, Blanquer, Ignacio, Segrelles, J. Damian, Cerdá-Alberich, Leonor, Gkontra, Polyxeni, Hero, Barbara, García-Aznar, J. M., Keim, Daniel, Jentner, Wolfgang, Seymour, Karine, Jiménez-Pastor, Ana, González-Valverde, Ismael, Martínez de las Heras, Blanca, Essiaf, Samira, Walker, Dawn, Rochette, Michel, Bubak, Marian, Mestres, Jordi, Viceconti, Marco, Martí-Besa, Gracia, Cañete, Adela, Richmond, Paul, Wertheim, Kenneth Y., Gubala, Tomasz, Kasztelnik, Marek, Meizner, Jan, Nowakowski, Piotr, Gilpérez, Salvador, Suárez, Amelia, Aznar, Mario, Restante, Giuliana, Neri, Emanuele
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Springer International Publishing 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7125275/
https://www.ncbi.nlm.nih.gov/pubmed/32246291
http://dx.doi.org/10.1186/s41747-020-00150-9
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author Martí-Bonmatí, Luis
Alberich-Bayarri, Ángel
Ladenstein, Ruth
Blanquer, Ignacio
Segrelles, J. Damian
Cerdá-Alberich, Leonor
Gkontra, Polyxeni
Hero, Barbara
García-Aznar, J. M.
Keim, Daniel
Jentner, Wolfgang
Seymour, Karine
Jiménez-Pastor, Ana
González-Valverde, Ismael
Martínez de las Heras, Blanca
Essiaf, Samira
Walker, Dawn
Rochette, Michel
Bubak, Marian
Mestres, Jordi
Viceconti, Marco
Martí-Besa, Gracia
Cañete, Adela
Richmond, Paul
Wertheim, Kenneth Y.
Gubala, Tomasz
Kasztelnik, Marek
Meizner, Jan
Nowakowski, Piotr
Gilpérez, Salvador
Suárez, Amelia
Aznar, Mario
Restante, Giuliana
Neri, Emanuele
author_facet Martí-Bonmatí, Luis
Alberich-Bayarri, Ángel
Ladenstein, Ruth
Blanquer, Ignacio
Segrelles, J. Damian
Cerdá-Alberich, Leonor
Gkontra, Polyxeni
Hero, Barbara
García-Aznar, J. M.
Keim, Daniel
Jentner, Wolfgang
Seymour, Karine
Jiménez-Pastor, Ana
González-Valverde, Ismael
Martínez de las Heras, Blanca
Essiaf, Samira
Walker, Dawn
Rochette, Michel
Bubak, Marian
Mestres, Jordi
Viceconti, Marco
Martí-Besa, Gracia
Cañete, Adela
Richmond, Paul
Wertheim, Kenneth Y.
Gubala, Tomasz
Kasztelnik, Marek
Meizner, Jan
Nowakowski, Piotr
Gilpérez, Salvador
Suárez, Amelia
Aznar, Mario
Restante, Giuliana
Neri, Emanuele
author_sort Martí-Bonmatí, Luis
collection PubMed
description PRIMAGE is one of the largest and more ambitious research projects dealing with medical imaging, artificial intelligence and cancer treatment in children. It is a 4-year European Commission-financed project that has 16 European partners in the consortium, including the European Society for Paediatric Oncology, two imaging biobanks, and three prominent European paediatric oncology units. The project is constructed as an observational in silico study involving high-quality anonymised datasets (imaging, clinical, molecular, and genetics) for the training and validation of machine learning and multiscale algorithms. The open cloud-based platform will offer precise clinical assistance for phenotyping (diagnosis), treatment allocation (prediction), and patient endpoints (prognosis), based on the use of imaging biomarkers, tumour growth simulation, advanced visualisation of confidence scores, and machine-learning approaches. The decision support prototype will be constructed and validated on two paediatric cancers: neuroblastoma and diffuse intrinsic pontine glioma. External validation will be performed on data recruited from independent collaborative centres. Final results will be available for the scientific community at the end of the project, and ready for translation to other malignant solid tumours.
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spelling pubmed-71252752020-04-08 PRIMAGE project: predictive in silico multiscale analytics to support childhood cancer personalised evaluation empowered by imaging biomarkers Martí-Bonmatí, Luis Alberich-Bayarri, Ángel Ladenstein, Ruth Blanquer, Ignacio Segrelles, J. Damian Cerdá-Alberich, Leonor Gkontra, Polyxeni Hero, Barbara García-Aznar, J. M. Keim, Daniel Jentner, Wolfgang Seymour, Karine Jiménez-Pastor, Ana González-Valverde, Ismael Martínez de las Heras, Blanca Essiaf, Samira Walker, Dawn Rochette, Michel Bubak, Marian Mestres, Jordi Viceconti, Marco Martí-Besa, Gracia Cañete, Adela Richmond, Paul Wertheim, Kenneth Y. Gubala, Tomasz Kasztelnik, Marek Meizner, Jan Nowakowski, Piotr Gilpérez, Salvador Suárez, Amelia Aznar, Mario Restante, Giuliana Neri, Emanuele Eur Radiol Exp Original Article PRIMAGE is one of the largest and more ambitious research projects dealing with medical imaging, artificial intelligence and cancer treatment in children. It is a 4-year European Commission-financed project that has 16 European partners in the consortium, including the European Society for Paediatric Oncology, two imaging biobanks, and three prominent European paediatric oncology units. The project is constructed as an observational in silico study involving high-quality anonymised datasets (imaging, clinical, molecular, and genetics) for the training and validation of machine learning and multiscale algorithms. The open cloud-based platform will offer precise clinical assistance for phenotyping (diagnosis), treatment allocation (prediction), and patient endpoints (prognosis), based on the use of imaging biomarkers, tumour growth simulation, advanced visualisation of confidence scores, and machine-learning approaches. The decision support prototype will be constructed and validated on two paediatric cancers: neuroblastoma and diffuse intrinsic pontine glioma. External validation will be performed on data recruited from independent collaborative centres. Final results will be available for the scientific community at the end of the project, and ready for translation to other malignant solid tumours. Springer International Publishing 2020-04-03 /pmc/articles/PMC7125275/ /pubmed/32246291 http://dx.doi.org/10.1186/s41747-020-00150-9 Text en © The Author(s) 2020 Open AccessThis article is licensed under a Creative Commons Attribution 4.0 International License, which permits use, sharing, adaptation, distribution and reproduction in any medium or format, as long as you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons licence, and indicate if changes were made. The images or other third party material in this article are included in the article's Creative Commons licence, unless indicated otherwise in a credit line to the material. If material is not included in the article's Creative Commons licence and your intended use is not permitted by statutory regulation or exceeds the permitted use, you will need to obtain permission directly from the copyright holder. To view a copy of this licence, visit http://creativecommons.org/licenses/by/4.0/.
spellingShingle Original Article
Martí-Bonmatí, Luis
Alberich-Bayarri, Ángel
Ladenstein, Ruth
Blanquer, Ignacio
Segrelles, J. Damian
Cerdá-Alberich, Leonor
Gkontra, Polyxeni
Hero, Barbara
García-Aznar, J. M.
Keim, Daniel
Jentner, Wolfgang
Seymour, Karine
Jiménez-Pastor, Ana
González-Valverde, Ismael
Martínez de las Heras, Blanca
Essiaf, Samira
Walker, Dawn
Rochette, Michel
Bubak, Marian
Mestres, Jordi
Viceconti, Marco
Martí-Besa, Gracia
Cañete, Adela
Richmond, Paul
Wertheim, Kenneth Y.
Gubala, Tomasz
Kasztelnik, Marek
Meizner, Jan
Nowakowski, Piotr
Gilpérez, Salvador
Suárez, Amelia
Aznar, Mario
Restante, Giuliana
Neri, Emanuele
PRIMAGE project: predictive in silico multiscale analytics to support childhood cancer personalised evaluation empowered by imaging biomarkers
title PRIMAGE project: predictive in silico multiscale analytics to support childhood cancer personalised evaluation empowered by imaging biomarkers
title_full PRIMAGE project: predictive in silico multiscale analytics to support childhood cancer personalised evaluation empowered by imaging biomarkers
title_fullStr PRIMAGE project: predictive in silico multiscale analytics to support childhood cancer personalised evaluation empowered by imaging biomarkers
title_full_unstemmed PRIMAGE project: predictive in silico multiscale analytics to support childhood cancer personalised evaluation empowered by imaging biomarkers
title_short PRIMAGE project: predictive in silico multiscale analytics to support childhood cancer personalised evaluation empowered by imaging biomarkers
title_sort primage project: predictive in silico multiscale analytics to support childhood cancer personalised evaluation empowered by imaging biomarkers
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7125275/
https://www.ncbi.nlm.nih.gov/pubmed/32246291
http://dx.doi.org/10.1186/s41747-020-00150-9
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