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The functional connectivity of the human caudate: An application of meta-analytic connectivity modeling with behavioral filtering

Jennifer L. Robinson, Angela R. Laird, David C. Glahn, John Blangero, Manjit K. Sanghera, Luiz Pessoa, P. Mickle Fox, Angela Uecker, Gerhard Friehs, Keith A. Young, Jennifer L. Griffin, William R. Lovallo (+1 others)
2012 NeuroImage  
Here, we apply meta-analytic connectivity modeling to the human caudate to 1) develop a model of functional connectivity, 2) determine if meta-analytic methods are sufficiently sensitive to detect behavioral  ...  Our results provide further validation of meta-analytic connectivity modeling, while also highlighting an additional potential, namely the extraction of behavioral domain specific functional connectivity  ...  Conflict of interest All authors report having no financial, personal, or organizational conflict of interest with the work outlined in this manuscript.  ... 
doi:10.1016/j.neuroimage.2011.12.010 pmid:22197743 pmcid:PMC3288226 fatcat:pdqebx4j5rd5tjk42wpkhvoo7m

Functional parcellation of human and macaque striatum reveals human-specific connectivity in the dorsal caudate

Xiaojin Liu, Simon B. Eickhoff, Svenja Caspers, Jianxiao Wu, Sarah Genon, Felix Hoffstaedter, Rogier B. Mars, Iris E. Sommer, Claudia R. Eickhoff, Ji Chen, Renaud Jardri, Kathrin Reetz (+7 others)
2021 NeuroImage  
Previous investigations have found a wide similarity in structural connectivity of the striatum between human and macaque, leaving the cross-species comparison of its functional organization unknown.  ...  In addition, we provided a testable hypothesis that abnormalities in a region with human-specific connectivity, i.e., dorsal caudate, might be associated with neuropsychiatric disorders.  ...  Differences in functional connectivity of meta-analytic connectivity modeling (MACM) between the head and body/tail of the caudate nucleus revealed that the head of the caudate is more involved in cognitive  ... 
doi:10.1016/j.neuroimage.2021.118006 pmid:33819611 fatcat:phux6h2epnb53g5duky272yh6q

Electrophysiological and functional connectivity of the human supplementary motor area

Shalini Narayana, Angela R. Laird, Nitin Tandon, Crystal Franklin, Jack L. Lancaster, Peter T. Fox
2012 NeuroImage  
Further, we drew upon the behavioral domain meta-data of the BrainMap® database to characterize the behavioral domain specificity of two maps.  ...  In this study, we applied transcranial magnetic stimulation during PET imaging (TMS/PET), a stimulation-based method, and meta-analytic connectivity modeling (MACM), a task-based method to map the connectivity  ...  Fox), and the National Institute of Deafness and Communication Disorders (R21-DC009467-01A1 to S. Narayana).  ... 
doi:10.1016/j.neuroimage.2012.04.060 pmid:22569543 pmcid:PMC3381058 fatcat:uzkcg7xi7bbnxfnoh7p2642dt4

Bridging the gap between functional and anatomical features of cortico-cerebellar circuits using meta-analytic connectivity modeling

Joshua H. Balsters, Angela R. Laird, Peter T. Fox, Simon B. Eickhoff
2013 Human Brain Mapping  
Through the use of a novel neuroimaging tool (Meta-Analytic Connectivity Modelling) we demonstrate for the first time that cortico-cerebellar connectivity patterns seen in anatomical studies and resting  ...  An analysis of the behavioral domains showed that these circuits were driven by distinct tasks.  ...  Modeling of Cortico-Cerebellar Circuits r r 9 r r Meta-Analytic Connectivity Modeling of Cortico-Cerebellar Circuits r r 11 r r Balsters et al. r r 14 r r Meta-Analytic Connectivity Modeling  ... 
doi:10.1002/hbm.22392 pmid:24142505 pmcid:PMC5293143 fatcat:v64rkxnqbfd4rn4q5eq6r7nc4e

Intrinsic functional connectivity of the central extended amygdala

Rachael M. Tillman, Melissa D. Stockbridge, Brendon M. Nacewicz, Salvatore Torrisi, Andrew S. Fox, Jason F. Smith, Alexander J. Shackman
2017 Human Brain Mapping  
The only regions showing stronger functional connectivity with the Ce were located in the anterior hippocampus and dorsal amygdala.  ...  the BST and the Ce show distinct patterns of intrinsic functional connectivity, remains incompletely understood.  ...  NY: Guilford. of human fear conditioning: an updated and extended meta-analysis of fMRI studies. Molecular Psychiatry, 21, 500-508.  ... 
doi:10.1002/hbm.23917 pmid:29235190 fatcat:2rfmxwbuibf6xg233zc6jc6lha

Functional Network Mirrored in the Prefrontal Cortex, Caudate Nucleus, and Thalamus: High-Resolution Functional Imaging and Structural Connectivity

H.-A. Jeon, A. Anwander, A. D. Friederici
2014 Journal of Neuroscience  
Here, we scrutinize the functional specificity of the cortico-subcortical loops depending on varying levels of cognitive hierarchy as well as their structural connectivity with high-resolution fMRI and  ...  This gradient pattern of activations was furthermore shown to be tenable by the parallel connectivity in dMRI tractography connecting the anterior regions of the PFC with the head of the CN and the VA  ...  This functional specificity within the CN is also supported by a recent meta-analytic approach revealing parallel functional and structural connections between the PFC and the CN along the anterior-to-posterior  ... 
doi:10.1523/jneurosci.0228-14.2014 pmid:25009254 pmcid:PMC6608361 fatcat:uywlkhrfnvf2diphxiut6juud4

Meta-Analysis in Human Neuroimaging: Computational Modeling of Large-Scale Databases

Peter T. Fox, Jack L. Lancaster, Angela R. Laird, Simon B. Eickhoff
2014 Annual Review of Neuroscience  
Recent advances now compute coactivation-based connectivity, connectivity-based functional parcellation, and complex network models powered from data sets representing tens of thousands of subjects.  ...  Meta-analyses of human neuroimaging data in large-scale databases now stand at the forefront of computational neurobiology.  ...  The functional connectivity of the human caudate: an application of meta-analytic connectivity modeling with behavioral filtering.  ... 
doi:10.1146/annurev-neuro-062012-170320 pmid:25032500 pmcid:PMC4782802 fatcat:ht3rjqrfuvhvbp7i45meh2bt4a

The hippocampal network model: A transdiagnostic metaconnectomic approach

Eithan Kotkowski, Larry R. Price, P. Mickle Fox, Thomas J. Vanasse, Peter T. Fox
2018 NeuroImage: Clinical  
We subsequently used meta-analytic connectivity modeling (MACM) to define edges of structural covariance between nodes from VBM data as well as functional covariance using the functional taskactivation  ...  Significance: This novel method of studying network covariance using VBM and functional meta-analytic techniques allows for the identification of generalizable patterns of functional and structural abnormalities  ...  This study was supported by funds from the National Institute of Health (NIMH: R01 MH074457, NIMH: 3R01MH074457-11S1) and Congressionally Directed Medical Research Programs (CDMRP: W81xWH-14-1-0316).  ... 
doi:10.1016/j.nicl.2018.01.002 pmid:29387529 pmcid:PMC5789756 fatcat:cxwkcmtdgrdrfi3itftawncm54

Distributed processing; distributed functions?

Peter T. Fox, Karl J. Friston
2012 NeuroImage  
We will focus this review on the growing momentum in the fields of functional connectivity and distributed brain responses and consider this in the light of meta-analyses that use very large data sets  ...  Second, there is an emerging interest in data-driven cognitive ontologies, i.e., that are internally consistent with functional anatomy.  ...  PTF was funded by the Research Imaging Institute and the Department of Radiology of the University of Texas Health Science Center at San Antonio, by the South Texas Veterans Health Care System, by the  ... 
doi:10.1016/j.neuroimage.2011.12.051 pmid:22245638 pmcid:PMC4791046 fatcat:hzenqqemyrfohb7ny7nbjieprm

Human pulvinar functional organization and connectivity

Daniel S. Barron, Simon B. Eickhoff, Mareike Clos, Peter T. Fox
2015 Human Brain Mapping  
Key words: pulvinar; functional anatomy; fMRI; cognitive neuroscience; attention r r r Human Pulvinar Functional Organization and Connectivity r r 3 r  ...  pulvinar specialization within the larger human attention-controlling network.  ...  This first ALE analysis served as a "global" meta-analytic connectivity model, encompassing all behavioral domains.  ... 
doi:10.1002/hbm.22781 pmid:25821061 pmcid:PMC4782796 fatcat:kc25ezdivram3om65ulspbyuwe

Networks of task co-activations

Angela R. Laird, Simon B. Eickhoff, Claudia Rottschy, Danilo Bzdok, Kimberly L. Ray, Peter T. Fox
2013 NeuroImage  
Recent progress in neuroimaging informatics and meta-analytic techniques has enabled a novel domain of human brain connectomics research that focuses on task-dependent co-activation patterns across behavioral  ...  Here, we review studies utilizing the BrainMap database to investigate data trends in the activation literature using methods such as meta-analytic connectivity modeling (MACM), connectivity-based parcellation  ...  Acknowledgments This work was funded by the National Institutes of Mental Health (MH74457 and MH084812).  ... 
doi:10.1016/j.neuroimage.2013.04.073 pmid:23631994 pmcid:PMC3720689 fatcat:cuvn3rpsk5dxdmwhrrvd7pmwai

Gray matter textural heterogeneity as a potential in-vivo biomarker of fine structural abnormalities in Asperger syndrome

E Radulescu, B Ganeshan, L Minati, F D C C Beacher, M A Gray, C Chatwin, R C D Young, N A Harrison, H D Critchley
2012 The Pharmacogenomics Journal  
HDC was supported by a Wellcome Trust Programme Grant and LM was supported by the Shirley Foundation during the acquisition of this data.  ...  Dr Nicholas Dowell's assistance with imaging processing is acknowledged.  ...  volume indicate an underlying disorganized architecture with possibly maldistributed neurons and disrupted local connectivity within the caudate volume.  ... 
doi:10.1038/tpj.2012.3 pmid:22333911 fatcat:dcv72tqdmjb6lo26xdp2vz7nlm

Neurofunctional topography of the human hippocampus

Jennifer L. Robinson, Daniel S. Barron, Lauren A. J. Kirby, Katherine L. Bottenhorn, Ashley C. Hill, Jerry E. Murphy, Jeffrey S. Katz, Nouha Salibi, Simon B. Eickhoff, Peter T. Fox
2015 Human Brain Mapping  
Coactivation-based parcellation, a meta-analytic approach, and ultra-high field, high-resolution functional and structural neuroimaging to characterize the neurofunctional topography of the hippocampus  ...  the occipital lobe coupled with functional connectivity to the precuneus and angular gyrus.  ...  Post-hoc meta-analytic connectivity modeling Coactivation profiles were then performed on each of the resultant clusters within the left and right hippocampus.  ... 
doi:10.1002/hbm.22987 pmid:26350954 pmcid:PMC4715517 fatcat:t4y66nbbdvg57luzrwi6tlv4em

Meta-analytic connectivity modelling of deception-related brain regions

Sarah K. Meier, Kimberly L. Ray, Juliana C. Mastan, Savannah R. Salvage, Donald A. Robin, David V. Smith
2021 PLoS ONE  
Meta-analytic connectivity modelling revealed an interconnected network amongst the 7 regions comprising both unidirectional and bidirectional connections.  ...  Together with subsequent behavioral and paradigm decoding, these findings implicate the supramarginal gyrus as a key component for the sociocognitive process of deception.  ...  Acknowledgments We acknowledge and are grateful for the help of Noah Waller, Laura Ireland, Ariana White, and Jenelle Delfino in coding papers for Sleuth, instruction for analyses, and preparing the manuscript  ... 
doi:10.1371/journal.pone.0248909 pmid:34432808 pmcid:PMC8386837 fatcat:mrkvbvndezhlflnhxdqq4kk3ra

Meta-analytic evidence for a superordinate cognitive control network subserving diverse executive functions

Tara A. Niendam, Angela R. Laird, Kimberly L. Ray, Y. Monica Dean, David C. Glahn, Cameron S. Carter
2012 Cognitive, Affective, & Behavioral Neuroscience  
on executive function measures was contrasted with an active control condition.  ...  To test this hypothesis in the largest sample to date, we used quantitative meta-analytic methods to analyze 193 functional neuroimaging studies of 2,832 healthy individuals, ages 18-60, in which performance  ...  The authors also thank the various researchers who responded to inquires about their sample demographics during the course of this analysis.  ... 
doi:10.3758/s13415-011-0083-5 pmid:22282036 pmcid:PMC3660731 fatcat:3ku6vfxgpffj7cukmmsftiayda
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