Zobrazeno 1 - 10
of 15
pro vyhledávání: '"Edith Brignoni-Pérez"'
Autor:
Edith Brignoni-Pérez, Maya Chan Morales, Virginia A. Marchman, Melissa Scala, Heidi M. Feldman, Kristen Yeom, Katherine E. Travis
Publikováno v:
Trials, Vol 22, Iss 1, Pp 1-9 (2021)
Abstract Background Infants born very preterm (
Externí odkaz:
https://doaj.org/article/10f49cb3478a42d7b5a564280ff99b25
Autor:
Edith Brignoni-Pérez, Sarah E. Dubner, Michal Ben-Shachar, Shai Berman, Aviv A. Mezer, Heidi M. Feldman, Katherine E. Travis
Publikováno v:
NeuroImage, Vol 256, Iss , Pp 119240- (2022)
Many diffusion magnetic resonance imaging (dMRI) studies document associations between reading skills and fractional anisotropy (FA) within brain white matter, suggesting that efficient transfer of information across the brain contributes to individu
Externí odkaz:
https://doaj.org/article/ff7a366d672e4887a049a36f6d21b74e
Autor:
Molly F. Lazarus, Virginia A. Marchman, Edith Brignoni-Pérez, Sarah Dubner, Heidi M. Feldman, Melissa Scala, Katherine E. Travis
Publikováno v:
medRxiv
BackgroundLimited research links hospital-based experiences of Kangaroo Care (KC), or skin-to-skin holding to longer-term neurodevelopmental outcomes in preterm children. The present study examined relations between inpatient KC and cognitive abiliti
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::ca3029bc18d2891d05f16ea09c2c4d75
https://europepmc.org/articles/PMC10104190/
https://europepmc.org/articles/PMC10104190/
Autor:
Melissa Scala, Virginia A. Marchman, Edith Brignoni-Pérez, Heidi M. Feldman, Katherine E. Travis
Publikováno v:
J Dev Behav Pediatr
OBJECTIVESThe aim of this study was to investigate whether preterm infants whose families have lower socioeconomic status (SES) or communicate with clinical staff in a language other than English experience differences in the total amount, frequency,
Autor:
Kristen W. Yeom, Heidi M. Feldman, Edith Brignoni-Pérez, Melissa Scala, Virginia A. Marchman, Maya Chan Morales, Katherine E. Travis
Publikováno v:
Trials, Vol 22, Iss 1, Pp 1-9 (2021)
Trials
Trials
Background Infants born very preterm ( Methods This randomized controlled trial assesses the long-term effects of increased maternal speech exposure on structural connectivity at 12 months of age (age adjusted for prematurity (AA)) and language outco
Publikováno v:
Human brain mapping. 43(16)
Gray matter has been shown to be greater in early bilingual adults relative to monolingual adults in regions associated with language (Mechelli et al., 2004), and executive control (EC; Olulade et al., 2016). It is not known, however, if language exp
Autor:
Virginia A. Marchman, Edith Brignoni-Pérez, Melissa Scala, Maya Chan Morales, Katherine E. Travis
Publikováno v:
Early Human Development
ObjectivesTo assess the impact of the COVID-19 pandemic on rates of hospital visitation and rates and durations of developmental care practices for infants born preterm delivered by both families and clinical staff.MethodsWe analyzed electronic medic
Autor:
Maya Chan Morales, Katherine E. Travis, Sarah E. Dubner, Melissa Scala, Virginia A. Marchman, Edith Brignoni-Pérez
Publikováno v:
medRxiv
Objectives To assess the impact of the COVID-19 pandemic on rates of hospital visitation and rates and durations of developmental care practices for infants born preterm. Methods We analyzed electronic medical record data from 129 infants born at les
Autor:
Helena Melero, Anupa Ambili Vijayakumari, Eduardo Caverzasi, Fang-Cheng Yeh, René Labounek, Daniel Bullock, Vivek Prabhakaran, Shaun Warrington, Ping Hong Yeh, Narciso López-López, Mavilde Arantes, Michael Lauricella, Katja Heuer, Vince D. Calhoun, Francisco Guerreiro Fernandes, Aristotle N. Voineskos, Fan Zhang, Claire E. Kelly, Sila Genc, Franco Pestilli, Giorgio M. Innocenti, Rujirutana Srikanchana, Erick J. Canales-Rodríguez, Jonathan Rafael-Patino, Alessandro Daducci, Philippe Karan, Christophe Lenglet, Michael Joseph, Garikoitz Lerma-Usabiaga, Jian Chen, Lucius S. Fekonja, Sarah R. Heilbronner, Yihao Xia, Lucas Roitman, Matteo Mancini, Cristina Granziera, Dogu Baran Aydogan, Stephen J. Wastling, Wataru Uchida, Sirio Cocozza, Kiran K. Seunarine, Eleftherios Garyfallidis, Drew Parker, Hojjatollah Azadbakht, Ragini Verma, Simona Schiavi, Laura Korobova, Giuseppe Pontillo, Masahiro Abe, Nikos Makris, Egidio D'Angelo, Cyril Poupon, Gabriel Girard, Jerome Joseph Maller, Ramón Aranda, Jerome Cochereau, Bennett A. Landman, François Rheault, Andrea Vázquez, Muhamed Barakovic, Gabrielle Grenier, Maria Petracca, Giovanni Savini, Louise Emsell, Colin B. Hansen, Elda Fischi-Gomez, Claudia A. M. Wheeler-Kingshott, José Paulo Andrade, Lidia Manzanedo, Emilio Sanz-Morales, Sjoerd B. Vos, Roza G. Bayrak, Mariano Rivera Meraz, Wei Tang, Yonggang Shi, Mathijs Raemaekers, Stefan Sunaert, Fernando Calamante, Stijn Michielse, Yang Zhan, Laura Mancini, Susana M. Silva, Josselin Houenou, Maxime Descoteaux, Chris A. Clark, Alberto De Luca, Rajikha Raja, Alexandra J. Golby, Bramsh Qamar Chandio, Ryan P. Cabeen, Vejay N. Vakharia, Javier Guaje, Amy Paulson, Laurent Petit, Igor Nestrasil, Adam W. Anderson, Ahmed Radwan, Edith Brignoni-Pérez, Pamela Guevara, Ángel Peña-Melián, Joseph Yuan-Mou Yang, Arthur W. Toga, Arnaud Attyé, Luis Concha, John S. Duncan, Yogesh Rathi, Navona Calarco, Mario Ocampo-Pineda, Nicolò Rolandi, Alexander Leemans, Hajer Nakua, Christina Andica, Marco Pizzolato, Yuya Saito, Lauren J. O'Donnell, Jon Haitz Legarreta, Thomas Welton, Chun-Hung Yeh, Štefánia Aulická, Fabien Almairac, Claude J. Bajada, Koji Kamagata, Vishwesh Nath, Chantal M. W. Tax, Alonso Ramirez-Manzanares, Jess E. Reynolds, Kurt G. Schilling, Thomas Yu, Hamied A. Haroon, Jean-Philippe Thiran, Veena A. Nair, Maxime Chamberland, Simone Sacco, Chiara Maffei, Jean-François Mangin, Colin D. McKnight, Andrew L. Alexander, Catherine Lebel, C. Roman, Nagesh Adluru, Fulvia Palesi
Publikováno v:
Neuroimage, 243:118502. Elsevier Science
NeuroImage, Vol 243, Iss, Pp 118502-(2021)
Addi. Archivo Digital para la Docencia y la Investigación
instname
NeuroImage
NeuroImage, 2021, 243, pp.118502. ⟨10.1016/j.neuroimage.2021.118502⟩
Neuroimage
NeuroImage, Elsevier, 2021, 243, pp.118502. ⟨10.1016/j.neuroimage.2021.118502⟩
Schilling, K G, Rheault, F, Petit, L, Hansen, C B, Nath, V, Yeh, F C, Girard, G, Barakovic, M, Rafael-Patino, J, Yu, T, Fischi-Gomez, E, Pizzolato, M, Ocampo-Pineda, M, Schiavi, S, Canales-Rodríguez, E J, Daducci, A, Granziera, C, Innocenti, G, Thiran, J P, Mancini, L, Wastling, S, Cocozza, S, Petracca, M, Pontillo, G, Mancini, M, Vos, S B, Vakharia, V N, Duncan, J S, Melero, H, Manzanedo, L, Sanz-Morales, E, Peña-Melián, Á, Calamante, F, Attyé, A, Cabeen, R P, Korobova, L, Toga, A W, Vijayakumari, A A, Parker, D, Verma, R, Radwan, A, Sunaert, S, Emsell, L, De Luca, A, Leemans, A, Bajada, C J, Haroon, H, Azadbakht, H, Chamberland, M, Genc, S, Tax, C M W, Yeh, P H, Srikanchana, R, Mcknight, C D, Yang, J Y M, Chen, J, Kelly, C E, Yeh, C H, Cochereau, J, Maller, J J, Welton, T, Almairac, F, Seunarine, K K, Clark, C A, Zhang, F, Makris, N, Golby, A, Rathi, Y, O'Donnell, L J, Xia, Y, Aydogan, D B, Shi, Y, Fernandes, F G, Raemaekers, M, Warrington, S, Michielse, S, Ramírez-Manzanares, A, Concha, L, Aranda, R, Meraz, M R, Lerma-Usabiaga, G, Roitman, L, Fekonja, L S, Calarco, N, Joseph, M, Nakua, H, Voineskos, A N, Karan, P, Grenier, G, Legarreta, J H, Adluru, N, Nair, V A, Prabhakaran, V, Alexander, A L, Kamagata, K, Saito, Y, Uchida, W, Andica, C, Abe, M, Bayrak, R G, Wheeler-Kingshott, C A M G, D'Angelo, E, Palesi, F, Savini, G, Rolandi, N, Guevara, P, Houenou, J, López-López, N, Mangin, J F, Poupon, C, Román, C, Vázquez, A, Maffei, C, Arantes, M, Andrade, J P, Silva, S M, Calhoun, V D, Caverzasi, E, Sacco, S, Lauricella, M, Pestilli, F, Bullock, D, Zhan, Y, Brignoni-Perez, E, Lebel, C, Reynolds, J E, Nestrasil, I, Labounek, R, Lenglet, C, Paulson, A, Aulicka, S, Heilbronner, S R, Heuer, K, Chandio, B Q, Guaje, J, Tang, W, Garyfallidis, E, Raja, R, Anderson, A W, Landman, B A & Descoteaux, M 2021, ' Tractography dissection variability: What happens when 42 groups dissect 14 white matter bundles on the same dataset? ', NeuroImage, vol. 243, 118502 . https://doi.org/10.1016/j.neuroimage.2021.118502
NeuroImage, Vol 243, Iss, Pp 118502-(2021)
Addi. Archivo Digital para la Docencia y la Investigación
instname
NeuroImage
NeuroImage, 2021, 243, pp.118502. ⟨10.1016/j.neuroimage.2021.118502⟩
Neuroimage
NeuroImage, Elsevier, 2021, 243, pp.118502. ⟨10.1016/j.neuroimage.2021.118502⟩
Schilling, K G, Rheault, F, Petit, L, Hansen, C B, Nath, V, Yeh, F C, Girard, G, Barakovic, M, Rafael-Patino, J, Yu, T, Fischi-Gomez, E, Pizzolato, M, Ocampo-Pineda, M, Schiavi, S, Canales-Rodríguez, E J, Daducci, A, Granziera, C, Innocenti, G, Thiran, J P, Mancini, L, Wastling, S, Cocozza, S, Petracca, M, Pontillo, G, Mancini, M, Vos, S B, Vakharia, V N, Duncan, J S, Melero, H, Manzanedo, L, Sanz-Morales, E, Peña-Melián, Á, Calamante, F, Attyé, A, Cabeen, R P, Korobova, L, Toga, A W, Vijayakumari, A A, Parker, D, Verma, R, Radwan, A, Sunaert, S, Emsell, L, De Luca, A, Leemans, A, Bajada, C J, Haroon, H, Azadbakht, H, Chamberland, M, Genc, S, Tax, C M W, Yeh, P H, Srikanchana, R, Mcknight, C D, Yang, J Y M, Chen, J, Kelly, C E, Yeh, C H, Cochereau, J, Maller, J J, Welton, T, Almairac, F, Seunarine, K K, Clark, C A, Zhang, F, Makris, N, Golby, A, Rathi, Y, O'Donnell, L J, Xia, Y, Aydogan, D B, Shi, Y, Fernandes, F G, Raemaekers, M, Warrington, S, Michielse, S, Ramírez-Manzanares, A, Concha, L, Aranda, R, Meraz, M R, Lerma-Usabiaga, G, Roitman, L, Fekonja, L S, Calarco, N, Joseph, M, Nakua, H, Voineskos, A N, Karan, P, Grenier, G, Legarreta, J H, Adluru, N, Nair, V A, Prabhakaran, V, Alexander, A L, Kamagata, K, Saito, Y, Uchida, W, Andica, C, Abe, M, Bayrak, R G, Wheeler-Kingshott, C A M G, D'Angelo, E, Palesi, F, Savini, G, Rolandi, N, Guevara, P, Houenou, J, López-López, N, Mangin, J F, Poupon, C, Román, C, Vázquez, A, Maffei, C, Arantes, M, Andrade, J P, Silva, S M, Calhoun, V D, Caverzasi, E, Sacco, S, Lauricella, M, Pestilli, F, Bullock, D, Zhan, Y, Brignoni-Perez, E, Lebel, C, Reynolds, J E, Nestrasil, I, Labounek, R, Lenglet, C, Paulson, A, Aulicka, S, Heilbronner, S R, Heuer, K, Chandio, B Q, Guaje, J, Tang, W, Garyfallidis, E, Raja, R, Anderson, A W, Landman, B A & Descoteaux, M 2021, ' Tractography dissection variability: What happens when 42 groups dissect 14 white matter bundles on the same dataset? ', NeuroImage, vol. 243, 118502 . https://doi.org/10.1016/j.neuroimage.2021.118502
Available online 22 August 2021. White matter bundle segmentation using diffusion MRI fiber tractography has become the method of choice to identify white matter fiber pathways in vivo in human brains. However, like other analyses of complex data, th
Publikováno v:
Human Brain Mapping; Nov2022, Vol. 43 Issue 16, p4817-4834, 18p