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Commun Integr Biol

ISSN 1942-0889

3 papers in the library · 2 citations · publishing 2022-2025

Papers

A litmus test for plant consciousness: Pattern-Temporal Synergy in a relation-first ontology.

Commun Integr Biol October 13, 2025 Arie T. Greenleaf 1 citation

A new metric called Pattern-Temporal Synergy (PTS) offers a quantitative test for whether distributed plant activity meets criteria for conscious-level processing. The metric operationalizes five universal patterns—self-reference, division-creation, information integration, responsiveness, and flux—using established signal-processing measures, and requires a coherence gate specific to the system's binding window. Three preregistered hypotheses predict that PTS will be above zero in intact plants, collapse below a threshold when plants are anesthetized with 4% diethyl-ether, and rebound after the anesthetic is washed out. The protocol tests Mimosa pudica, Arabidopsis thaliana, and Picea abies using multiple probes. Confirmatory results would shift debates on plant sentience from speculation to data; null results would refine what consciousness requires.

Omni-local consciousness.

Commun Integr Biol August 5, 2022 Andrew Lohrey, Bruce Boreham 1 citation

The paper presents a model of consciousness called Omni-local consciousness, which posits an infinite background of awareness that interconnects local human minds with a nonlocal, universal consciousness. Drawing on David Bohm's idea that consciousness is shaped by meaning, the authors argue that the content of conscious experience is always defined by metaphysical conditions of meaning. The model is explored through the exchange relations between local minds and the Omni background, emphasizing a holistic structure with both local and nonlocal features.

Consciousness and spintronic coherence in microtubules.

Commun Integr Biol October 21, 2025 Majid Beshkar

Microtubules, nanoscale structures within neurons, can act as spintronic oscillators with memristive properties. Under specific conditions in the axon initial segment, these properties allow quantum coherence to emerge spontaneously in a population of microtubules. According to QBIT theory, this spontaneous coherence is both necessary and sufficient for the brain to generate a micro-consciousness, or quale. The simultaneous generation of multiple qualia through synchronized activity across different parts of the cerebral cortex creates the appearance of a unified macro-consciousness, or a seemingly unified subjective experience.