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Hermann Hinrichs

2 papers in the library · publishing 2020-2021

Papers

Multiscale criticality measures as general-purpose gauges of proper brain function.

Scientific Reports July 14, 2021 Tomer Fekete, Hermann Hinrichs, Jacobo Diego Sitt et al.

The brain is understood as an information processing system, and its activity is organized into hierarchical spatiotemporal loops. Successful processing depends on matching the multiscale delay structure of neural networks. Reduced information processing capacity appears as deviations from this multiscale character, captured by multiscale criticality measures (MsCr). Applying MsCr to MEG and EEG data, the authors found that MsCr measures systematically varied with information processing capacity across four compromised states: disorders of consciousness, mild cognitive impairment, schizophrenia, and pre-ictal activity. The authors propose that MsCr measures might serve as general gauges of information processing capacity and normative measures of brain health.

Self-regulated critical brain dynamics originate from high frequency-band activity in the MEG.

PLoS One January 1, 2020 Stefan Dürschmid, Christoph Reichert, Nike Walter et al.

Brain activity in the resting state shows scale-free, critical dynamics balanced between order and disorder, but a direct link to cognition has been missing. Using MEG recordings during mindfulness meditation, the authors found that scale-free near-critical dynamics originated only from broad-band high-frequency activity above 100 Hz, which is associated with action potential firing. During meditation, avalanche dynamics shifted toward a critical point by reducing neural noise, and the topography of avalanches differed from rest. Self-regulated attention during meditation can serve as a control parameter for criticality in scale-free brain dynamics.