A Scalable Toolkit for Modeling 3D Surface-Based Brain Geometry
Yanghee Im, Leila Nabulsi, Melody J.Y. Kang, Sophia I. Thomopoulos, Ana M. Diaz Zuluaga, Anders M. Dale, Andriana Karuk, Annabella Di Giorgio, Benson Mwangi, Boris A. Gutman, Bronwyn J. Overs, Carlos López‐Jaramillo, Colm McDonald, Dan Joseph Stein, Dara M. Cannon, David C. Glahn, Diego Hidalgo‐Mazzei, Diliana Pecheva, Dominik Grotegerd, Edith Pomarol-Clotet, Eduard Vieta, Émilie Olié, Enric Vilajosana Chertó, Fabio Sambataro, Fleur M. Howells, Freda Scheffler, Geraldo F. Busatto, Gerard Anmella, Giovana Zunta‐Soares, Gloria Roberts, Henk Temmingh, Ian H. Gotlib, Ingrid Agartz, Jair C. Soares, James A. Karantonis, James J. Prisciandaro, Janice M. Fullerton, Joaquim Raduà, Jonathan Savitz, Josselin Houenou, Kang Sim, Kenichiro Harada, Klaus Berger, Koji Matsuo, Lakshmi N. Yatham, Lars T. Westlye, Lisa T. Eyler, Lisa S. Furlong, Anna Luisa Klahn, Marco Hermesdorf, Marcus V. Zanetti, Matthew J. Kempton, Matthew D. Sacchet, Mikael Landén, Mon‐Ju Wu, Pedro G. P. Rosa, Philip B. Mitchell, Pravesh Parekh, Raymond Salvador, Rayus Kuplicki, Salvador Sarró, Susan L. Rossell, Tamsyn E. Van Rheenen, Theodore D. Satterthwaite, Tilo Kircher, Tomáš Hájek, Udo Dannlowski, Xavier Caseras, Yuji Zhao, Ole A. Andreassen, Paul M. Thompson, Christopher R. K. Ching (2025). A Scalable Toolkit for Modeling 3D Surface-Based Brain GeometryDOI: https://doi.org/10.1007/978-3-032-06774-6_18,
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