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Journal Abstract Search


1993 related items for PubMed ID: 28716961

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  • 6. Resting state dynamics meets anatomical structure: Temporal multiple kernel learning (tMKL) model.
    Surampudi SG, Misra J, Deco G, Bapi RS, Sharma A, Roy D.
    Neuroimage; 2019 Jan 01; 184():609-620. PubMed ID: 30267857
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  • 9. Effective Connectivity Measured Using Optogenetically Evoked Hemodynamic Signals Exhibits Topography Distinct from Resting State Functional Connectivity in the Mouse.
    Bauer AQ, Kraft AW, Baxter GA, Wright PW, Reisman MD, Bice AR, Park JJ, Bruchas MR, Snyder AZ, Lee JM, Culver JP.
    Cereb Cortex; 2018 Jan 01; 28(1):370-386. PubMed ID: 29136125
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  • 10. Task- and stimulus-related cortical networks in language production: Exploring similarity of MEG- and fMRI-derived functional connectivity.
    Liljeström M, Stevenson C, Kujala J, Salmelin R.
    Neuroimage; 2015 Oct 15; 120():75-87. PubMed ID: 26169324
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  • 11. Elucidating the complementarity of resting-state networks derived from dynamic [18F]FDG and hemodynamic fluctuations using simultaneous small-animal PET/MRI.
    Ionescu TM, Amend M, Hafiz R, Biswal BB, Wehrl HF, Herfert K, Pichler BJ.
    Neuroimage; 2021 Aug 01; 236():118045. PubMed ID: 33848625
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  • 12. Correlated Gene Expression and Anatomical Communication Support Synchronized Brain Activity in the Mouse Functional Connectome.
    Mills BD, Grayson DS, Shunmugavel A, Miranda-Dominguez O, Feczko E, Earl E, Neve KA, Fair DA.
    J Neurosci; 2018 Jun 20; 38(25):5774-5787. PubMed ID: 29789379
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  • 13. Interpreting temporal fluctuations in resting-state functional connectivity MRI.
    Liégeois R, Laumann TO, Snyder AZ, Zhou J, Yeo BTT.
    Neuroimage; 2017 Dec 20; 163():437-455. PubMed ID: 28916180
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  • 14. The structural and functional connectivity of the posterior cingulate cortex: comparison between deterministic and probabilistic tractography for the investigation of structure-function relationships.
    Khalsa S, Mayhew SD, Chechlacz M, Bagary M, Bagshaw AP.
    Neuroimage; 2014 Nov 15; 102 Pt 1():118-27. PubMed ID: 24365673
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  • 15. Nonhuman primate meso-circuitry data: a translational tool to understand brain networks across species.
    Tang W, Choi EY, Heilbronner SR, Haber SN.
    Brain Struct Funct; 2021 Jan 15; 226(1):1-11. PubMed ID: 33128126
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  • 16. Fine-grained mapping of mouse brain functional connectivity with resting-state fMRI.
    Mechling AE, Hübner NS, Lee HL, Hennig J, von Elverfeldt D, Harsan LA.
    Neuroimage; 2014 Aug 01; 96():203-15. PubMed ID: 24718287
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  • 17. Complementary contributions of concurrent EEG and fMRI connectivity for predicting structural connectivity.
    Wirsich J, Ridley B, Besson P, Jirsa V, Bénar C, Ranjeva JP, Guye M.
    Neuroimage; 2017 Nov 01; 161():251-260. PubMed ID: 28842386
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  • 18. Function-specific and Enhanced Brain Structural Connectivity Mapping via Joint Modeling of Diffusion and Functional MRI.
    Chu SH, Parhi KK, Lenglet C.
    Sci Rep; 2018 Mar 16; 8(1):4741. PubMed ID: 29549287
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  • 19. Toward a standardized structural-functional group connectome in MNI space.
    Horn A, Blankenburg F.
    Neuroimage; 2016 Jan 01; 124(Pt A):310-322. PubMed ID: 26327244
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  • 20. Network analysis of whole-brain fMRI dynamics: A new framework based on dynamic communicability.
    Gilson M, Kouvaris NE, Deco G, Mangin JF, Poupon C, Lefranc S, Rivière D, Zamora-López G.
    Neuroimage; 2019 Nov 01; 201():116007. PubMed ID: 31306771
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