On consciousness, resting state fMRI, and neurodynamics.
Nonlinear biomedical physics June 3, 2010 DOI: 10.1186/1753-4631-4-s1-s9 (opens in new tab) via PubMed
Summary
AI-generated from the abstractA pluralistic approach to consciousness connects philosophy of mind (emergentism and global workspace theory), functional neuroimaging, and neurodynamics (Wilson-Cowan model and stochastic resonance). The authors argue that studying large-scale neuronal processes—activity fluctuations and state transitions—in the living human brain during resting-state fMRI can deepen understanding of graded consciousness in clinical settings and clarify the concept of consciousness in neurocognitive and neurophilosophy research.
Study at a glance
| Characteristics | Theoretical or philosophical paper Peer reviewed |
|---|---|
| Key finding | Proposes that studying large-scale neuronal processes during resting-state fMRI can deepen understanding of graded consciousness and clarify the concept of consciousness in neurocognitive and neurophilosophical research. |
Abstract
During the last years, functional magnetic resonance imaging (fMRI) of the brain has been introduced as a new tool to measure consciousness, both in a clinical setting and in a basic neurocognitive research. Moreover, advanced mathematical methods and theories have arrived the field of fMRI (e.g. computational neuroimaging), and functional and structural brain connectivity can now be assessed non-invasively. The present work deals with a pluralistic approach to "consciousness'', where we connect theory and tools from three quite different disciplines: (1) philosophy of mind (emergentism and global workspace theory), (2) functional neuroimaging acquisitions, and (3) theory of deterministic and statistical neurodynamics - in particular the Wilson-Cowan model and stochastic resonance. Based on recent experimental and theoretical work, we believe that the study of large-scale neuronal processes (activity fluctuations, state transitions) that goes on in the living human brain while examined with functional MRI during "resting state", can deepen our understanding of graded consciousness in a clinical setting, and clarify the concept of "consiousness" in neurocognitive and neurophilosophy research.