Addressing inconsistency in functional neuroimaging: A replicable data-driven multi-scale functional atlas for canonical brain networks
Jensen, K. M.; Turner, J. A.; Calhoun, V. D.; Iraji, A.
Show abstract
The advent of multiple neuroimaging methodologies has greatly aided in the conceptualization of large-scale functional brain networks in the field of cognitive neuroscience. However, there is inconsistency across studies in both nomenclature and the functional entities being described. There is a need for a unifying framework that standardizes terminology across studies while also bringing analyses and results into the same reference space. Here we present a whole-brain atlas of canonical functional brain networks derived from more than 100,000 resting-state fMRI datasets. These data-driven functional networks are highly replicable across datasets and capture information from multiple spatial scales. We have organized, labeled, and described the networks with terms familiar to the fields of cognitive and affective neuroscience in order to optimize their utility in future neuroimaging analyses and enhance the accessibility of new findings. The benefits of this atlas are not limited to future template-based or reference-guided analyses, but also extend to other data-driven neuroimaging approaches across modalities, such as those using blind independent component analysis (ICA). Future studies utilizing this atlas will contribute to greater harmonization and standardization in functional neuroimaging research.
Matching journals
The top 8 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Human subsystems of medial temporal lobes extend locally to amygdala nuclei and globally to an allostatic-interoceptive system 96%
- A set of functionally-defined brain regions with improved representation of the subcortex and cerebellum 96%
- Structural connectivity-based segmentation of the human entorhinal cortex 96%
Similar papers in this journal
Similar papers in this journal
- Atlas for the Lateralized Visuospatial Attention Networks (ALANs): Insights from fMRI and Network Analyses 98%
- Evidence for a Compensatory Relationship between Left- and Right-Lateralized Brain Networks 96%
- The macaque ventral intraparietal functional connectivity patterns reveal an anterio-posterior specialization mirroring that described in human ventral intraparietal area 96%
Similar papers in this journal
- Overlapping Neural Correlates Underpin Theory of Mind and Semantic Cognition: Evidence from a Meta-Analysis of 344 Functional Neuroimaging Studies 95%
- Frontal language areas do not emerge in the absence of temporal language areas: A case study of an individual born without a left temporal lobe 95%
- Scene-selectivity in CA1/subicular complex: Multivoxel pattern analysis at 7T 95%
Similar papers in this journal
- The social cerebellum: A large-scale investigation of functional and structural specificity and connectivity 97%
- Distinct but cooperating brain networks supporting semantic cognition 96%
- Graded functional organisation in the left inferior frontal gyrus: evidence from task-free and task-based functional connectivity 96%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.