This article provides a comprehensive resource for researchers and drug development professionals on the statistical validation of brain functional connectivity.
Moving beyond traditional pairwise models of brain connectivity, higher-order connectomics captures complex interactions among three or more brain regions simultaneously.
This article explores the paradigm of single-subject brain functional connectivity fingerprinting, a revolutionary approach that identifies individuals based on their unique patterns of neural wiring.
This article provides a comprehensive framework for the development and validation of brain signatures as reliable biomarkers across independent cohorts—a critical step for their translation into clinical and research applications.
This article explores the transformative potential of leverage score sampling, a computational technique from randomized linear algebra, for identifying robust and individual-specific neural signatures from functional connectomes.
This article provides a comprehensive framework for researchers and drug development professionals on the creation, application, and validation of data-driven brain signatures as biomarkers for behavioral outcomes.
This article synthesizes recent breakthroughs demonstrating that individual neurons embed robust signatures of their anatomical location within their spike trains—a fundamental and generalizable dimension of the neural code.
This article provides a comprehensive overview of Higher-Order Interactions (HOIs) in brain networks, a paradigm shift beyond traditional pairwise connectivity.
This article provides a comprehensive synthesis for researchers and drug development professionals on the specialized cognitive functions of key brain regions, integrating foundational neuroanatomy with cutting-edge methodological approaches.
This article explores the transformative potential of spatial overlap frequency maps and consensus signature methodologies in biomedical research and drug development.