Zobrazeno 1 - 10
of 113
pro vyhledávání: '"Erick J Canales‐Rodríguez"'
Autor:
Noemí Hostalet, Rubèn Gonzàlez, Alejandro González, Xavier Sevillano, Erick J Canales-Rodríguez, Pilar Salgado-Pineda, Raymond Salvador, Edith Pomarol-Clotet, Neus Martínez-Abadías, Mar Fatjó-Vilas
Publikováno v:
IBRO Neuroscience Reports, Vol 15, Iss , Pp S101- (2023)
Externí odkaz:
https://doaj.org/article/8eaa86671d49466391d0597502d8e763
Autor:
Maria Guardiola-Ripoll, Carmen Almodóvar-Payá, Angelo Arias, Mariona Latorre-Guardia, Erick J Canales-Rodríguez, María Ángeles García-León, Paola Fuentes-Claramonte, Raymond Salvador, Edith Pomarol-Clotet, Mar Fatjó-Vilas
Publikováno v:
IBRO Neuroscience Reports, Vol 15, Iss , Pp S557-S558 (2023)
Externí odkaz:
https://doaj.org/article/d3d51487be58412e991b8827a84e4a04
Autor:
Carmen Almodóvar-Payá, Maria Guardiola-Ripoll, Carme Gallego, Mariona Latorre-Guardia, Erick J Canales-Rodríguez, Luis Callado, Salvador Miret, Bárbara Arias, Rafael Penadés, Raymond Salvador, Edith Pomarol-Clotet, Mar Fatjó-Vilas, Marcos Moreno
Publikováno v:
IBRO Neuroscience Reports, Vol 15, Iss , Pp S525-S526 (2023)
Externí odkaz:
https://doaj.org/article/7a469de87e964d54a3a13384232bdb02
Autor:
Raymond Salvador, Joaquim Radua, Erick J Canales-Rodríguez, Aleix Solanes, Salvador Sarró, José M Goikolea, Alicia Valiente, Gemma C Monté, María Del Carmen Natividad, Amalia Guerrero-Pedraza, Noemí Moro, Paloma Fernández-Corcuera, Benedikt L Amann, Teresa Maristany, Eduard Vieta, Peter J McKenna, Edith Pomarol-Clotet
Publikováno v:
PLoS ONE, Vol 12, Iss 4, p e0175683 (2017)
A relatively large number of studies have investigated the power of structural magnetic resonance imaging (sMRI) data to discriminate patients with schizophrenia from healthy controls. However, very few of them have also included patients with bipola
Externí odkaz:
https://doaj.org/article/ba90e241a26a400091c09c7242e86cef
Autor:
Erick J Canales-Rodríguez, Alessandro Daducci, Stamatios N Sotiropoulos, Emmanuel Caruyer, Santiago Aja-Fernández, Joaquim Radua, Jesús M Yurramendi Mendizabal, Yasser Iturria-Medina, Lester Melie-García, Yasser Alemán-Gómez, Jean-Philippe Thiran, Salvador Sarró, Edith Pomarol-Clotet, Raymond Salvador
Publikováno v:
PLoS ONE, Vol 10, Iss 10, p e0138910 (2015)
Spherical deconvolution (SD) methods are widely used to estimate the intra-voxel white-matter fiber orientations from diffusion MRI data. However, while some of these methods assume a zero-mean Gaussian distribution for the underlying noise, its real
Externí odkaz:
https://doaj.org/article/b2f425873b054c1580fd2f07e2de0fbc
Autor:
Yasser Iturria-Medina, Alejandro Pérez Fernández, Pedro Valdés Hernández, Lorna García Pentón, Erick J Canales-Rodríguez, Lester Melie-Garcia, Agustin Lage Castellanos, Marlis Ontivero Ortega
Publikováno v:
PLoS ONE, Vol 6, Iss 5, p e19071 (2011)
Neuroimaging classification procedures between normal and pathological subjects are sparse and highly dependent of an expert's clinical criterion. Here, we aimed to investigate whether possible brain structural network differences in the shiverer mou
Externí odkaz:
https://doaj.org/article/e20e9a1769b14e1fb4779b6b2241f1ca
Autor:
Philipp J. Koch, Gabriel Girard, Julia Brügger, Andéol G. Cadic-Melchior, Elena Beanato, Chang-Hyun Park, Takuya Morishita, Maximilian J. Wessel, Marco Pizzolato, Erick J. Canales-Rodríguez, Elda Fischi-Gomez, Simona Schiavi, Alessandro Daducci, Gian Franco Piredda, Tom Hilbert, Tobias Kober, Jean-Philippe Thiran, Friedhelm C. Hummel
Publikováno v:
NeuroImage, Vol 258, Iss , Pp 119356- (2022)
Tractography enables identifying and evaluating the healthy and diseased brain's white matter pathways from diffusion-weighted magnetic resonance imaging data. As previous evaluation studies have reported significant false-positive estimation biases,
Externí odkaz:
https://doaj.org/article/1d163d0489db4d309fe13d4b0d5d4039
Autor:
Chiara Maffei, Gabriel Girard, Kurt G. Schilling, Dogu Baran Aydogan, Nagesh Adluru, Andrey Zhylka, Ye Wu, Matteo Mancini, Andac Hamamci, Alessia Sarica, Achille Teillac, Steven H. Baete, Davood Karimi, Fang-Cheng Yeh, Mert E. Yildiz, Ali Gholipour, Yann Bihan-Poudec, Bassem Hiba, Andrea Quattrone, Aldo Quattrone, Tommy Boshkovski, Nikola Stikov, Pew-Thian Yap, Alberto de Luca, Josien Pluim, Alexander Leemans, Vivek Prabhakaran, Barbara B. Bendlin, Andrew L. Alexander, Bennett A. Landman, Erick J. Canales-Rodríguez, Muhamed Barakovic, Jonathan Rafael-Patino, Thomas Yu, Gaëtan Rensonnet, Simona Schiavi, Alessandro Daducci, Marco Pizzolato, Elda Fischi-Gomez, Jean-Philippe Thiran, George Dai, Giorgia Grisot, Nikola Lazovski, Santi Puch, Marc Ramos, Paulo Rodrigues, Vesna Prčkovska, Robert Jones, Julia Lehman, Suzanne N. Haber, Anastasia Yendiki
Publikováno v:
NeuroImage, Vol 257, Iss , Pp 119327- (2022)
Limitations in the accuracy of brain pathways reconstructed by diffusion MRI (dMRI) tractography have received considerable attention. While the technical advances spearheaded by the Human Connectome Project (HCP) led to significant improvements in d
Externí odkaz:
https://doaj.org/article/e111f2d4d7204bdabb7e61633ca37871
Autor:
Erick J. Canales-Rodríguez, Hans J. Grabe, Dirk J. Heslenfeld, Erik G. Jönsson, Oliver Gruber, Daniel Brandeis, Yang Wang, Henry Brodaty, Ruben C. Gur, Iris E. C. Sommer, Paul M. Thompson, Knut K. Kolskår, Christopher G. Davey, Dick J. Veltman, Eco J. C. de Geus, Tobias Banaschewski, Greig I. Zubicaray, Xavier Caseras, Sarah Baumeister, Raquel E. Gur, Vincent P. Clark, Maria J. Portella, Simon E. Fisher, Christopher R.K. Ching, Lars T. Westlye, Laura Koenders, Vince D. Calhoun, Carles Soriano-Mas, Nicholas G. Martin, Stefan Ehrlich, Fleur M. Howells, Catharina A. Hartman, Matthew D. Sacchet, Ole A. Andreassen, Josiane Bourque, Fabrice Crivello, Annette Conzelmann, Jaap Oosterlaan, Brenna C. McDonald, Gaelle E. Doucet, Avram J. Holmes, José M. Menchón, Danai Dima, Moji Aghajani, Joshua L. Roffman, Steven Williams, Lei Wang, David Mataix-Cols, Philip R. Szeszko, Bernd Weber, Tiril P. Gurholt, Sarah Hohmann, Ian H. Gotlib, Patricia Gruner, Anthony C. James, Paul Pauli, Lara M. Wierenga, Andrew M. McIntosh, Andrew J. Kalnin, Jim Lagopoulos, Henrik Walter, Andreas Reif, Andrew Simmons, Norbert Hosten, Pieter J. Hoekstra, Aristotle Voineskos, Alexander Tomyshev, Anton Albajes-Eizagirre, Jean-Paul Fouche, Dara M. Cannon, Ignacio Martínez‐Zalacaín, Geneviève Richard, Theophilus N. Akudjedu, David C. Glahn, Patricia J. Conrod, Ben J. Harrison, Alan Anticevic, Martine Hoogman, Francisco X. Castellanos, Bernd Kramer, Neda Jahanshad, Lieuwe de Haan, Dennis van der Meer, John D. West, Alan Breier, Jordan W. Smoller, P. G. P. Rosa, Katharina Wittfeld, Dan J. Stein, Jiyang Jiang, Jilly Naaijen, Christine Lochner, Dorret I. Boomsma, Alessandro Bertolino, Marise W. J. Machielsen, Hilleke E. Hulshoff Pol, Henry Völzke, Christian K. Tamnes, Ingrid Agartz, Georg C. Ziegler, Marieke Klein, Lars Nyberg, Perminder S. Sachdev, Philip Asherson, I.M. Veer, Sean N. Hatton, Núria Bargalló, Annabella Di Giorgio, Henk Temmingh, John A. Joska, Odile A. van den Heuvel, Wei Wen, Eveline A Crone, Kang Sim, Kathryn I. Alpert, Dennis van 't Ent, Jan K. Buitelaar, Joaquim Radua, Julian N. Trollor, B Mazoyer, Chaim Huyser, H. C. Whalley, Irina Lebedeva, Erin W. Dickie, Marcus Vinicus Zanetti, Stefan Borgwardt, Theodore D. Satterthwaite, Daniel H Wolf, Sophia I. Thomopoulos, Giulio Pergola, Luisa Lazaro, Ramona Baur-Streubel, Beathe Haatveit, Yannis Paloyelis, Ian B. Hickie, Jonna Kuntsi, Sophia Frangou, R. Salvador, Geraldo F. Busatto, Margaret J. Wright, Aurora Bonvino, Edith Pomarol-Clotet, Anouk den Braber, Lachlan T. Strike, Phil Lee, Anne Uhlmann, Yuliya N. Yoncheva, Mauricio H. Serpa, Dag Alnæs, Paola Fuentes-Claramonte, Katie L. McMahon, Andrew J. Saykin, Genevieve McPhilemy, Tiffany M. Chaim-Avancini, Sophie Maingault, Barbara Franke, Colm McDonald, Rachel M. Brouwer, Salvador Sarró
Publikováno v:
Human Brain Mapping. WILEY
Human Brain Mapping
Human Brain Mapping, 43, 1, pp. 470-499
Human Brain Mapping. Wiley-Liss Inc.
Human Brain Mapping, 43(1), 470-499. Wiley-Liss Inc.
Human Brain Mapping, 43, 470-499
Karolinska Schizophrenia Project (KaSP) consortium 2022, ' Greater male than female variability in regional brain structure across the lifespan ', Human Brain Mapping, vol. 43, no. 1, pp. 470-499 . https://doi.org/10.1002/hbm.25204, https://doi.org/10.1101/2020.02.17.952010
Human brain mapping 43(1), 470-499 (2022). doi:10.1002/hbm.25204 special issue: "The ENIGMA Consortium: the first 10 years"
2020, ' Greater male than female variability in regional brain structure across the lifespan ', Human Brain Mapping . https://doi.org/10.1002/hbm.25204
Human brain mapping, 43(1), 470-499. Wiley-Liss Inc.
Dipòsit Digital de Documents de la UAB
Universitat Autònoma de Barcelona
Human brain mapping, 43(1), 470-499. Wiley
HUMAN BRAIN MAPPING
r-IIB SANT PAU. Repositorio Institucional de Producción Científica del Instituto de Investigación Biomédica Sant Pau
instname
Human Brain Mapping, 43(1), 470-499. Wiley
Karolinska Schizophrenia Project (KaSP) consortium 2022, ' Greater male than female variability in regional brain structure across the lifespan ', Human Brain Mapping, vol. 43, no. 1, pp. 470-499 . https://doi.org/10.1002/hbm.25204
Human Brain Mapping
Human Brain Mapping, 43, 1, pp. 470-499
Human Brain Mapping. Wiley-Liss Inc.
Human Brain Mapping, 43(1), 470-499. Wiley-Liss Inc.
Human Brain Mapping, 43, 470-499
Karolinska Schizophrenia Project (KaSP) consortium 2022, ' Greater male than female variability in regional brain structure across the lifespan ', Human Brain Mapping, vol. 43, no. 1, pp. 470-499 . https://doi.org/10.1002/hbm.25204, https://doi.org/10.1101/2020.02.17.952010
Human brain mapping 43(1), 470-499 (2022). doi:10.1002/hbm.25204 special issue: "The ENIGMA Consortium: the first 10 years"
2020, ' Greater male than female variability in regional brain structure across the lifespan ', Human Brain Mapping . https://doi.org/10.1002/hbm.25204
Human brain mapping, 43(1), 470-499. Wiley-Liss Inc.
Dipòsit Digital de Documents de la UAB
Universitat Autònoma de Barcelona
Human brain mapping, 43(1), 470-499. Wiley
HUMAN BRAIN MAPPING
r-IIB SANT PAU. Repositorio Institucional de Producción Científica del Instituto de Investigación Biomédica Sant Pau
instname
Human Brain Mapping, 43(1), 470-499. Wiley
Karolinska Schizophrenia Project (KaSP) consortium 2022, ' Greater male than female variability in regional brain structure across the lifespan ', Human Brain Mapping, vol. 43, no. 1, pp. 470-499 . https://doi.org/10.1002/hbm.25204
Contains fulltext : 248376.pdf (Publisher’s version ) (Open Access) For many traits, males show greater variability than females, with possible implications for understanding sex differences in health and disease. Here, the ENIGMA (Enhancing Neuro
Autor:
Martin Alda, Daniel R. Weinberger, Elena de la Serna, Andreas Meyer-Lindenberg, Salvador Sarró, Yoonho Chung, Sonja M C de Zwarte, Ian S. Ramsay, Benson Mwangi, Alessandro Bertolino, Marinka M.G. Koenis, Sophia I. Thomopoulos, Caroline Demro, Joaquim Radua, Ceren Hıdıroglu Ongun, Neeltje E.M. van Haren, Eduard Vieta, Sophia Frangou, Annabella Di Giorgio, Gisela Sugranyes, Scott R. Sponheim, Tomas Hajek, Bernd Kramer, Rhoshel K. Lenroot, Esma M. Simsek, Qiang Chen, Fergus Kane, Miloslav Kopecek, Anja Richter, Jim van Os, Erick J. Canales-Rodríguez, Martin Ingvar, Carrie E. Bearden, Paul M. Thompson, David C. Glahn, Scott C. Fears, Stijn Michielse, Christina M. Hultman, Nefize Yalin, Machteld Marcelis, Giulio Pergola, Aurora Bonvino, Neda Jahanshad, Wiepke Cahn, Josefina Castro-Fornieles, Vina M. Goghari, Manon H.J. Hillegers, Matthew J. Kempton, Ayşegül Özerdem, Fatma Simsek, Ingrid Agartz, Emma L. Hawkins, Sonya Foley, Elvira Bramon, Jair C. Soares, Cheryl A. Olman, Erik G. Jönsson, Oliver Gruber, René S. Kahn, Janice M. Fullerton, Leila Nabulsi, Ole A. Andreassen, Jose Manuel Goikolea, Gaelle E. Doucet, M.C. Eker, Mon Ju Wu, Aaron L. Goldman, Hilleke E. Hulshoff Pol, Stephen M. Lawrie, Venkata S. Mattay, Dara M. Cannon, Caterina del Mar Bonnín, Robin M. Murray, Marco Picchioni, Christopher R.K. Ching, Ali Saffet Gonul, Edith Pomarol-Clotet, Andreas Heinz, Silvia Alonso-Lana, Susanne Erk, Giulia Tronchin, Josselin Houenou, H. C. Whalley, Theo G.M. van Erp, Viktoria Johansson, Dolores Moreno, Henrik Walter, Timothea Toulopoulou, Bronwyn Overs, Aybala Saricicek Aydogan, Rachel M. Brouwer, Philip B. Mitchell, Colm McDonald, Peter R. Schofield, Camille Piguet, Raymond Salvador, Jason Newport, Xavier Caseras, Mar Fatjó-Vilas, Tyrone D. Cannon, Elizabeth E.L. Buimer, Gloria Roberts
Publikováno v:
Human Brain Mapping, 43(1), 414-430. Wiley-Liss Inc.
Human Brain Mapping
Human Brain Mapping, 43(1), 414-430. Wiley
2020, ' Intelligence, educational attainment, and brain structure in those at familial high-risk for schizophrenia or bipolar disorder ', Human Brain Mapping . https://doi.org/10.1002/hbm.25206
Human Brain Mapping
Human Brain Mapping, 43(1), 414-430. Wiley
2020, ' Intelligence, educational attainment, and brain structure in those at familial high-risk for schizophrenia or bipolar disorder ', Human Brain Mapping . https://doi.org/10.1002/hbm.25206
First-degree relatives of patients diagnosed with schizophrenia (SZ-FDRs) show similar patterns of brain abnormalities and cognitive alterations to patients, albeit with smaller effect sizes. First-degree relatives of patients diagnosed with bipolar