Is this you?
Sign in with ORCID to claim this profile — instantly verify it’s yours, curate your publications, and take control of how your work appears here.
Recent publications · auto-generated until this profile is claimed
Is this you?
Sign in with ORCID to claim this profile — instantly verify it’s yours, curate your publications, and take control of how your work appears here.
Recent publications · auto-generated until this profile is claimed
Alan Anticevic’s indexed work centers on the neural basis of psychiatric illness and cognition, with a particular emphasis on large-scale brain network dynamics. His highly cited first-author research has characterized default network deactivation in relation to cognition and disease, establishing a framework for understanding how task-negative brain systems fail in conditions like schizophrenia. He has also pioneered analyses of thalamo-cortical disturbances in schizophrenia and bipolar illness, using neuroimaging to identify circuit-level disruptions that distinguish these disorders. His senior-authored contributions extend this line of inquiry to global brain signal alterations in schizophrenia and the role of the 5-HT2A receptor in LSD-induced altered states of consciousness, both of which underscore his focus on whole-brain connectivity as a transdiagnostic marker. Beyond his lead-author work, Anticevic has contributed to several high-impact collaborative efforts that shaped the field of connectomics. He was a key contributor to multi-task connectivity research revealing flexible hubs for adaptive task control, a highly cited study on how the brain reconfigures its network architecture during cognitive demands. His middle-author work also includes generative modeling of brain maps with spatial autocorrelation, a methodological contribution that has become a standard tool for null-model testing in neuroimaging. Collectively, his publications trace a consistent arc from describing network-level dysconnectivity in severe mental illness to developing and applying advanced analytic techniques for mapping brain organization, with his most recent efforts increasingly focused on the intersection of neuroimaging and computational modeling.
Katrin H Preller, Joshua B Burt, Jie Lisa Ji, Charles H Schleifer, Brendan D Adkinson, Philipp Stämpfli, Erich Seifritz, Grega Repovs, John H Krystal, John D Murray, Franz X Vollenweider, Alan Anticevic
0 publications
0 other materials
No GitHub profile linked
Alpha1 Science activity will appear here once this profile is claimed.
Joshua B Burt, Katrin H Preller, Murat Demirtas, Jie Lisa Ji, John H Krystal, Franz X Vollenweider, Alan Anticevic, John D Murray
Scott W Woods, Carrie E Bearden, Fred W Sabb, William S Stone, John Torous, Barbara A Cornblatt, Diana O Perkins, Kristin S Cadenhead, Jean Addington, Albert R Powers, Daniel H Mathalon, Monica E Calkins, Daniel H Wolf, Cheryl M Corcoran, Leslie E Horton, Vijay A Mittal, Jason Schiffman, Lauren M Ellman, Gregory P Strauss, Daniel Mamah, Jimmy Choi, Godfrey D Pearlson, Jai L Shah, Paolo Fusar-Poli, Celso Arango, Jesus Perez, Nikolaos Koutsouleris, Jijun Wang, Jun Soo Kwon, Barbara C Walsh, Thomas H McGlashan, Steven E Hyman, Raquel E Gur, Tyrone D Cannon, John M Kane, Alan Anticevic
Hengyi Cao, Yoonho Chung, Sarah C McEwen, Carrie E Bearden, Jean Addington, Bradley Goodyear, Kristin S Cadenhead, Heline Mirzakhanian, Barbara A Cornblatt, Ricardo Carrión, Daniel H Mathalon, Thomas H McGlashan, Diana O Perkins, Aysenil Belger, Larry J Seidman, Heidi Thermenos, Ming T Tsuang, Theo G M van Erp, Elaine F Walker, Stephan Hamann, Alan Anticevic, Scott W Woods, Tyrone D Cannon