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The challenge of mapping the human connectome based on diffusion tractography

Tractography based on non-invasive diffusion imaging is central to the study of human brain connectivity. To date, the approach has not been systematically validated in ground truth studies. Based on a simulated human brain data set with ground truth tracts, we organized an open international tracto...

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Autores principales: Maier-Hein, Klaus H., Neher, Peter F., Houde, Jean-Christophe, Côté, Marc-Alexandre, Garyfallidis, Eleftherios, Zhong, Jidan, Chamberland, Maxime, Yeh, Fang-Cheng, Lin, Ying-Chia, Ji, Qing, Reddick, Wilburn E., Glass, John O., Chen, David Qixiang, Feng, Yuanjing, Gao, Chengfeng, Wu, Ye, Ma, Jieyan, He, Renjie, Li, Qiang, Westin, Carl-Fredrik, Deslauriers-Gauthier, Samuel, González, J. Omar Ocegueda, Paquette, Michael, St-Jean, Samuel, Girard, Gabriel, Rheault, François, Sidhu, Jasmeen, Tax, Chantal M. W., Guo, Fenghua, Mesri, Hamed Y., Dávid, Szabolcs, Froeling, Martijn, Heemskerk, Anneriet M., Leemans, Alexander, Boré, Arnaud, Pinsard, Basile, Bedetti, Christophe, Desrosiers, Matthieu, Brambati, Simona, Doyon, Julien, Sarica, Alessia, Vasta, Roberta, Cerasa, Antonio, Quattrone, Aldo, Yeatman, Jason, Khan, Ali R., Hodges, Wes, Alexander, Simon, Romascano, David, Barakovic, Muhamed, Auría, Anna, Esteban, Oscar, Lemkaddem, Alia, Thiran, Jean-Philippe, Cetingul, H. Ertan, Odry, Benjamin L., Mailhe, Boris, Nadar, Mariappan S., Pizzagalli, Fabrizio, Prasad, Gautam, Villalon-Reina, Julio E., Galvis, Justin, Thompson, Paul M., Requejo, Francisco De Santiago, Laguna, Pedro Luque, Lacerda, Luis Miguel, Barrett, Rachel, Dell’Acqua, Flavio, Catani, Marco, Petit, Laurent, Caruyer, Emmanuel, Daducci, Alessandro, Dyrby, Tim B., Holland-Letz, Tim, Hilgetag, Claus C., Stieltjes, Bram, Descoteaux, Maxime
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group UK 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5677006/
https://www.ncbi.nlm.nih.gov/pubmed/29116093
http://dx.doi.org/10.1038/s41467-017-01285-x
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author Maier-Hein, Klaus H.
Neher, Peter F.
Houde, Jean-Christophe
Côté, Marc-Alexandre
Garyfallidis, Eleftherios
Zhong, Jidan
Chamberland, Maxime
Yeh, Fang-Cheng
Lin, Ying-Chia
Ji, Qing
Reddick, Wilburn E.
Glass, John O.
Chen, David Qixiang
Feng, Yuanjing
Gao, Chengfeng
Wu, Ye
Ma, Jieyan
He, Renjie
Li, Qiang
Westin, Carl-Fredrik
Deslauriers-Gauthier, Samuel
González, J. Omar Ocegueda
Paquette, Michael
St-Jean, Samuel
Girard, Gabriel
Rheault, François
Sidhu, Jasmeen
Tax, Chantal M. W.
Guo, Fenghua
Mesri, Hamed Y.
Dávid, Szabolcs
Froeling, Martijn
Heemskerk, Anneriet M.
Leemans, Alexander
Boré, Arnaud
Pinsard, Basile
Bedetti, Christophe
Desrosiers, Matthieu
Brambati, Simona
Doyon, Julien
Sarica, Alessia
Vasta, Roberta
Cerasa, Antonio
Quattrone, Aldo
Yeatman, Jason
Khan, Ali R.
Hodges, Wes
Alexander, Simon
Romascano, David
Barakovic, Muhamed
Auría, Anna
Esteban, Oscar
Lemkaddem, Alia
Thiran, Jean-Philippe
Cetingul, H. Ertan
Odry, Benjamin L.
Mailhe, Boris
Nadar, Mariappan S.
Pizzagalli, Fabrizio
Prasad, Gautam
Villalon-Reina, Julio E.
Galvis, Justin
Thompson, Paul M.
Requejo, Francisco De Santiago
Laguna, Pedro Luque
Lacerda, Luis Miguel
Barrett, Rachel
Dell’Acqua, Flavio
Catani, Marco
Petit, Laurent
Caruyer, Emmanuel
Daducci, Alessandro
Dyrby, Tim B.
Holland-Letz, Tim
Hilgetag, Claus C.
Stieltjes, Bram
Descoteaux, Maxime
author_facet Maier-Hein, Klaus H.
Neher, Peter F.
Houde, Jean-Christophe
Côté, Marc-Alexandre
Garyfallidis, Eleftherios
Zhong, Jidan
Chamberland, Maxime
Yeh, Fang-Cheng
Lin, Ying-Chia
Ji, Qing
Reddick, Wilburn E.
Glass, John O.
Chen, David Qixiang
Feng, Yuanjing
Gao, Chengfeng
Wu, Ye
Ma, Jieyan
He, Renjie
Li, Qiang
Westin, Carl-Fredrik
Deslauriers-Gauthier, Samuel
González, J. Omar Ocegueda
Paquette, Michael
St-Jean, Samuel
Girard, Gabriel
Rheault, François
Sidhu, Jasmeen
Tax, Chantal M. W.
Guo, Fenghua
Mesri, Hamed Y.
Dávid, Szabolcs
Froeling, Martijn
Heemskerk, Anneriet M.
Leemans, Alexander
Boré, Arnaud
Pinsard, Basile
Bedetti, Christophe
Desrosiers, Matthieu
Brambati, Simona
Doyon, Julien
Sarica, Alessia
Vasta, Roberta
Cerasa, Antonio
Quattrone, Aldo
Yeatman, Jason
Khan, Ali R.
Hodges, Wes
Alexander, Simon
Romascano, David
Barakovic, Muhamed
Auría, Anna
Esteban, Oscar
Lemkaddem, Alia
Thiran, Jean-Philippe
Cetingul, H. Ertan
Odry, Benjamin L.
Mailhe, Boris
Nadar, Mariappan S.
Pizzagalli, Fabrizio
Prasad, Gautam
Villalon-Reina, Julio E.
Galvis, Justin
Thompson, Paul M.
Requejo, Francisco De Santiago
Laguna, Pedro Luque
Lacerda, Luis Miguel
Barrett, Rachel
Dell’Acqua, Flavio
Catani, Marco
Petit, Laurent
Caruyer, Emmanuel
Daducci, Alessandro
Dyrby, Tim B.
Holland-Letz, Tim
Hilgetag, Claus C.
Stieltjes, Bram
Descoteaux, Maxime
author_sort Maier-Hein, Klaus H.
collection PubMed
description Tractography based on non-invasive diffusion imaging is central to the study of human brain connectivity. To date, the approach has not been systematically validated in ground truth studies. Based on a simulated human brain data set with ground truth tracts, we organized an open international tractography challenge, which resulted in 96 distinct submissions from 20 research groups. Here, we report the encouraging finding that most state-of-the-art algorithms produce tractograms containing 90% of the ground truth bundles (to at least some extent). However, the same tractograms contain many more invalid than valid bundles, and half of these invalid bundles occur systematically across research groups. Taken together, our results demonstrate and confirm fundamental ambiguities inherent in tract reconstruction based on orientation information alone, which need to be considered when interpreting tractography and connectivity results. Our approach provides a novel framework for estimating reliability of tractography and encourages innovation to address its current limitations.
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spelling pubmed-56770062017-11-13 The challenge of mapping the human connectome based on diffusion tractography Maier-Hein, Klaus H. Neher, Peter F. Houde, Jean-Christophe Côté, Marc-Alexandre Garyfallidis, Eleftherios Zhong, Jidan Chamberland, Maxime Yeh, Fang-Cheng Lin, Ying-Chia Ji, Qing Reddick, Wilburn E. Glass, John O. Chen, David Qixiang Feng, Yuanjing Gao, Chengfeng Wu, Ye Ma, Jieyan He, Renjie Li, Qiang Westin, Carl-Fredrik Deslauriers-Gauthier, Samuel González, J. Omar Ocegueda Paquette, Michael St-Jean, Samuel Girard, Gabriel Rheault, François Sidhu, Jasmeen Tax, Chantal M. W. Guo, Fenghua Mesri, Hamed Y. Dávid, Szabolcs Froeling, Martijn Heemskerk, Anneriet M. Leemans, Alexander Boré, Arnaud Pinsard, Basile Bedetti, Christophe Desrosiers, Matthieu Brambati, Simona Doyon, Julien Sarica, Alessia Vasta, Roberta Cerasa, Antonio Quattrone, Aldo Yeatman, Jason Khan, Ali R. Hodges, Wes Alexander, Simon Romascano, David Barakovic, Muhamed Auría, Anna Esteban, Oscar Lemkaddem, Alia Thiran, Jean-Philippe Cetingul, H. Ertan Odry, Benjamin L. Mailhe, Boris Nadar, Mariappan S. Pizzagalli, Fabrizio Prasad, Gautam Villalon-Reina, Julio E. Galvis, Justin Thompson, Paul M. Requejo, Francisco De Santiago Laguna, Pedro Luque Lacerda, Luis Miguel Barrett, Rachel Dell’Acqua, Flavio Catani, Marco Petit, Laurent Caruyer, Emmanuel Daducci, Alessandro Dyrby, Tim B. Holland-Letz, Tim Hilgetag, Claus C. Stieltjes, Bram Descoteaux, Maxime Nat Commun Article Tractography based on non-invasive diffusion imaging is central to the study of human brain connectivity. To date, the approach has not been systematically validated in ground truth studies. Based on a simulated human brain data set with ground truth tracts, we organized an open international tractography challenge, which resulted in 96 distinct submissions from 20 research groups. Here, we report the encouraging finding that most state-of-the-art algorithms produce tractograms containing 90% of the ground truth bundles (to at least some extent). However, the same tractograms contain many more invalid than valid bundles, and half of these invalid bundles occur systematically across research groups. Taken together, our results demonstrate and confirm fundamental ambiguities inherent in tract reconstruction based on orientation information alone, which need to be considered when interpreting tractography and connectivity results. Our approach provides a novel framework for estimating reliability of tractography and encourages innovation to address its current limitations. Nature Publishing Group UK 2017-11-07 /pmc/articles/PMC5677006/ /pubmed/29116093 http://dx.doi.org/10.1038/s41467-017-01285-x Text en © The Author(s) 2017 Open Access This 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 license, and indicate if changes were made. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in a credit line to the material. If material is not included in the article’s Creative Commons license 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 license, visit http://creativecommons.org/licenses/by/4.0/.
spellingShingle Article
Maier-Hein, Klaus H.
Neher, Peter F.
Houde, Jean-Christophe
Côté, Marc-Alexandre
Garyfallidis, Eleftherios
Zhong, Jidan
Chamberland, Maxime
Yeh, Fang-Cheng
Lin, Ying-Chia
Ji, Qing
Reddick, Wilburn E.
Glass, John O.
Chen, David Qixiang
Feng, Yuanjing
Gao, Chengfeng
Wu, Ye
Ma, Jieyan
He, Renjie
Li, Qiang
Westin, Carl-Fredrik
Deslauriers-Gauthier, Samuel
González, J. Omar Ocegueda
Paquette, Michael
St-Jean, Samuel
Girard, Gabriel
Rheault, François
Sidhu, Jasmeen
Tax, Chantal M. W.
Guo, Fenghua
Mesri, Hamed Y.
Dávid, Szabolcs
Froeling, Martijn
Heemskerk, Anneriet M.
Leemans, Alexander
Boré, Arnaud
Pinsard, Basile
Bedetti, Christophe
Desrosiers, Matthieu
Brambati, Simona
Doyon, Julien
Sarica, Alessia
Vasta, Roberta
Cerasa, Antonio
Quattrone, Aldo
Yeatman, Jason
Khan, Ali R.
Hodges, Wes
Alexander, Simon
Romascano, David
Barakovic, Muhamed
Auría, Anna
Esteban, Oscar
Lemkaddem, Alia
Thiran, Jean-Philippe
Cetingul, H. Ertan
Odry, Benjamin L.
Mailhe, Boris
Nadar, Mariappan S.
Pizzagalli, Fabrizio
Prasad, Gautam
Villalon-Reina, Julio E.
Galvis, Justin
Thompson, Paul M.
Requejo, Francisco De Santiago
Laguna, Pedro Luque
Lacerda, Luis Miguel
Barrett, Rachel
Dell’Acqua, Flavio
Catani, Marco
Petit, Laurent
Caruyer, Emmanuel
Daducci, Alessandro
Dyrby, Tim B.
Holland-Letz, Tim
Hilgetag, Claus C.
Stieltjes, Bram
Descoteaux, Maxime
The challenge of mapping the human connectome based on diffusion tractography
title The challenge of mapping the human connectome based on diffusion tractography
title_full The challenge of mapping the human connectome based on diffusion tractography
title_fullStr The challenge of mapping the human connectome based on diffusion tractography
title_full_unstemmed The challenge of mapping the human connectome based on diffusion tractography
title_short The challenge of mapping the human connectome based on diffusion tractography
title_sort challenge of mapping the human connectome based on diffusion tractography
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5677006/
https://www.ncbi.nlm.nih.gov/pubmed/29116093
http://dx.doi.org/10.1038/s41467-017-01285-x
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