Raw EEG Data (26 Sessions) for Reproduction of Neural–Quantum Structural Analysis in IDPC
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This dataset contains raw EEG recordings collected across 26 independent sessions for the purpose of reproducing the analysis presented in the IDPC study (Intersection-Defined Phase Coordinates and neural–quantum structural agreement). Each session consists of continuous EEG time-series data acquired using an Emotiv EPOC-X device (14 channels, approximately 256 Hz sampling rate). The recordings are aligned with task-based quantum measurement sequences used in the associated analysis pipeline. The dataset is provided in raw form to ensure full transparency and reproducibility. No preprocessing beyond device-level acquisition is applied in this release. All feature extraction, transformation, and analysis steps are implemented separately in the accompanying code repository. The primary purpose of this dataset is to enable independent reproduction and verification of the following claims: - That structured agreement between neural (EEG) and quantum-derived dynamics can be observed without direct causal coupling- That this agreement exhibits non-random statistical properties across sessions- That the structure depends on temporal alignment and breaks under controlled perturbations (e.g., mismatched pairing, temporal shifts) This dataset should be used together with the publicly available analysis code, which includes: - Feature construction (EEG and quantum sides independently)- Reconstruction pipelines- Phase-space analysis- Permutation and control experiments By separating raw data from the analysis pipeline, this release ensures that all reported results can be independently reproduced from first principles. Associated resources:- Analysis code repository: https://github.com/SATORU-SIEL/IDPC_Reproduction/- Preprint : Intersection-Defined Phase Coordinates Reveal Localized Selection and a Non-Closed Observational Structure https://doi.org/10.5281/zenodo.19628769 Notes:- Sessions are anonymized and indexed by label- Data is provided for research and reproducibility purposes only



