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  5. A guide to group effective connectivity analysis, part 1: First level analysis with DCM for fMRI

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Article
English
2019

A guide to group effective connectivity analysis, part 1: First level analysis with DCM for fMRI

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English
2019
NeuroImage
Vol 200
DOI: 10.1016/j.neuroimage.2019.06.031

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Karl Friston
Karl Friston

University College London

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Peter Zeidman
Amirhossein Jafarian
Nadège Corbin
+4 more

Abstract

Dynamic Causal Modelling (DCM) is the predominant method for inferring effective connectivity from neuroimaging data. In the 15 years since its introduction, the neural models and statistical routines in DCM have developed in parallel, driven by the needs of researchers in cognitive and clinical neuroscience. In this tutorial, we step through an exemplar fMRI analysis in detail, reviewing the current implementation of DCM and demonstrating recent developments in group-level connectivity analysis. In the first part of the tutorial (current paper), we focus on issues specific to DCM for fMRI, unpacking the relevant theory and highlighting practical considerations. In particular, we clarify the assumptions (i.e., priors) used in DCM for fMRI and how to interpret the model parameters. This tutorial is accompanied by all the necessary data and instructions to reproduce the analyses using the SPM software. In the second part (in a companion paper), we move from subject-level to group-level modelling using the Parametric Empirical Bayes framework, and illustrate how to test for commonalities and differences in effective connectivity across subjects, based on imaging data from any modality.

How to cite this publication

Peter Zeidman, Amirhossein Jafarian, Nadège Corbin, Mohamed L. Seghier, Adeel Razi, Cathy J. Price, Karl Friston (2019). A guide to group effective connectivity analysis, part 1: First level analysis with DCM for fMRI. NeuroImage, 200, pp. 174-190, DOI: 10.1016/j.neuroimage.2019.06.031.

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Publication Details

Type

Article

Year

2019

Authors

7

Datasets

0

Total Files

0

Language

English

Journal

NeuroImage

DOI

10.1016/j.neuroimage.2019.06.031

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