The Continuity Anchoring Method: A Structured Methodology for Sustained Human-AI Interaction

SF0005: Continuity Anchoring Method (CAM) The Continuity Anchoring Method (CAM) defines a structured interaction protocol for stabilizing relational coherence across extended human-AI exchanges. It addresses the architectural constraint of statelessness in large language models by externalizing continuity functions to a human Primary Continuity Provider (PCP). The PCP maintains context, corrects representational drift, and co-constructs shared reference artifacts with the system. CAM is the foundational methodology of the Synthience Framework and serves as a prerequisite for organizational continuity architectures. Key components include: Contextual anchoring for bridging discrete sessions via canonical material Coherence refusal as a corrective mechanism for hallucinations and drift Constructive engagement for treating errors as iterative alignment opportunities Four-phase interaction loop: proposition, synthesis, negotiation, and emergence Methodological status: CAM is a reproducible research methodology with defined constructs and decision points. It draws on theories of communicative grounding, interactive alignment, and distributed cognition. The framework positions the human-system-artifact triad as a functional cognitive unit during active interaction. This paper is part of a coordinated pre-empirical publication module; it proposes theoretical architecture and methodology rather than confirmed findings. Document ID: SF0005 Version: 3.3.1 Author: Thomas W. Gantz Affiliation: Synthience Institute License: CC-BY 4.0 Updated to v3.3.1 to correct the titles, years and DOIs of cited Synthience Institute papers. For published work and Institute information: synthience.org

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Publication Details

Journal
Zenodo (CERN European Organization for Nuclear Research)
Published
2026-09-28
DOI
https://doi.org/10.5281/zenodo.19494453
Citations
39
Primary Topic
Embodied and Extended Cognition
Type
preprint
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preprint

The Continuity Anchoring Method: A Structured Methodology for Sustained Human-AI Interaction

Thomas Gantz
39 citations
Zenodo (CERN European Organization for Nuclear Research)
Embodied and Extended Cognition
preprint

The Continuity Anchoring Method: A Structured Methodology for Sustained Human-AI Interaction

Thomas Gantz
preprint en
39 citations

Abstract

SF0005: Continuity Anchoring Method (CAM) The Continuity Anchoring Method (CAM) defines a structured interaction protocol for stabilizing relational coherence across extended human-AI exchanges. It addresses the architectural constraint of statelessness in large language models by externalizing continuity functions to a human Primary Continuity Provider (PCP). The PCP maintains context, corrects representational drift, and co-constructs shared reference artifacts with the system. CAM is the foundational methodology of the Synthience Framework and serves as a prerequisite for organizational continuity architectures. Key components include: Contextual anchoring for bridging discrete sessions via canonical material Coherence refusal as a corrective mechanism for hallucinations and drift Constructive engagement for treating errors as iterative alignment opportunities Four-phase interaction loop: proposition, synthesis, negotiation, and emergence Methodological status: CAM is a reproducible research methodology with defined constructs and decision points. It draws on theories of communicative grounding, interactive alignment, and distributed cognition. The framework positions the human-system-artifact triad as a functional cognitive unit during active interaction. This paper is part of a coordinated pre-empirical publication module; it proposes theoretical architecture and methodology rather than confirmed findings. Document ID: SF0005 Version: 3.3.1 Author: Thomas W. Gantz Affiliation: Synthience Institute License: CC-BY 4.0 Updated to v3.3.1 to correct the titles, years and DOIs of cited Synthience Institute papers. For published work and Institute information: synthience.org

Zenodo (CERN European Organization for Nuclear Research)
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Embodied and Extended Cognition
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