Mindscape Collective is now The Consciousness Library. Same library, new name. You may need to sign in again. About the change
Skip to content

Florian Schübeler

2 papers in the library · publishing 2023-2025

Papers

A study of different cognitive states for meditators and non-meditators with the use of multiple classification indices derived from the PSD of EEG data and lessons learned about cognitive states and the nature of intelligence in minds and machines.

Frontiers in Systems Neuroscience January 1, 2025 J J Joshua Davis, Florian Schübeler, Ian J. Kirk et al.

EEG signals from meditators and non-meditators across six conditions reveal distinct neurophysiological signatures when analyzed using Shannon Entropy, Pearson's Skewness, Total Power, and Dominant Frequency together, rather than one index at a time. These patterns suggest cognition is more than merely computational and may express deeper experiential states, raising questions about whether the human experience of meaning can be approached through objective methodologies. The findings invite a re-examination of scientific inquiry as both a pursuit of mechanistic regularities and a means of honoring the interplay between structure and meaning.

Analysis of Meditation vs. Sensory Engaged Brain States Using Shannon Entropy and Pearson’s First Skewness Coefficient Extracted from EEG Data

Italian National Conference on Sensors January 23, 2023 J. Davis, R. Kozma, Florian Schübeler

Meditation produces different brain dynamics than watching a video, as measured by EEG with 128 electrodes. Shannon Entropy and Pearson's 1st Skewness Coefficient, derived from the power spectrum, significantly discriminated between meditation and video-watching states in 20 participants (11 meditators, 9 non-meditators). Shannon Entropy distinguished meditators from non-meditators during meditation over prefrontal and occipital areas, while the skewness coefficient discriminated groups based on prefrontal areas in both conditions. Anti-correlation between prefrontal and occipital areas occurred during meditation but not during video watching. The findings suggest these indices can characterize brain states.