Parcels and particles: Markov blankets in the brain

Author:

Friston Karl J.1,Fagerholm Erik D.2,Zarghami Tahereh S.3,Parr Thomas1,Hipólito Inês4,Magrou Loïc5,Razi Adeel16

Affiliation:

1. Wellcome Centre for Human Neuroimaging, University College London, London, United Kingdom

2. Department of Neuroimaging, King’s College London, London, United Kingdom

3. Bio-Electric Department, School of Electrical and Computer Engineering, University of Tehran, Amirabad, Tehran, Iran

4. Berlin School of Mind and Brain, and Institut für Philosophie, Humboldt-Universität zu Berlin, Berlin, Germany

5. Univ Lyon, Université Claude Bernard Lyon 1, Inserm, Stem Cell and Brain Research Institute U1208, Bron, France

6. Turner Institute for Brain and Mental Health, Monash University, Clayton, Australia

Abstract

At the inception of human brain mapping, two principles of functional anatomy underwrote most conceptions—and analyses—of distributed brain responses: namely, functional segregation and integration. There are currently two main approaches to characterizing functional integration. The first is a mechanistic modeling of connectomics in terms of directed effective connectivity that mediates neuronal message passing and dynamics on neuronal circuits. The second phenomenological approach usually characterizes undirected functional connectivity (i.e., measurable correlations), in terms of intrinsic brain networks, self-organized criticality, dynamical instability, and so on. This paper describes a treatment of effective connectivity that speaks to the emergence of intrinsic brain networks and critical dynamics. It is predicated on the notion of Markov blankets that play a fundamental role in the self-organization of far from equilibrium systems. Using the apparatus of the renormalization group, we show that much of the phenomenology found in network neuroscience is an emergent property of a particular partition of neuronal states, over progressively coarser scales. As such, it offers a way of linking dynamics on directed graphs to the phenomenology of intrinsic brain networks.

Funder

Wellcome Trust

King’s College London Prize Fellowship

Cognitive Sciences and Technologies Council of Iran international research visit

Australian Research Council

National Health and Medical Research Council

Publisher

MIT Press - Journals

Subject

Applied Mathematics,Artificial Intelligence,Computer Science Applications,General Neuroscience

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