The Automensural Canopy: Evolved Sensory Integration, Architectural Calibration, and Conscious Continuation (Observer Frame Series IV)
Description
This paper introduces the Mensural Canopy, the Automensural Canopy, automensurality, and automensuralism as systems-oriented extensions of the Pattern Field Theory (PFT) Observer Frame Series. The Automensural Canopy is defined as the integrated, continuously recalibrated organism-level architecture through which differentiated sensory, bodily, spatial, mnemonic, predictive, affective, and action-relative registrations remain locally operative while participating in one self-relative account of continuation. Four formation requirements are formalized: Functional Identity Preservation, Mensural Correspondence, Consequential Weighting, and Recalibrational Continuity.
The paper further distinguishes Automensural Drift from focal escalation, Accounting Deficit from ordinary error, Mensural Substitution from Automensural Compensation, and Thin Present Layer admission from canopy formation. The framework is extended through Automensural Continuation Pre-enactment, Reinstatement, Continuation Branching, Associative Reinstatement, Mensural Compression, Calibration Debt, and Assimilative Reconciliation.
Trauma-associated recall fragmentation, environmental reminiscence, and music-assisted reinstatement are interpreted as canopy-level processes. Candidate neurobiological correspondences are examined across interoceptive, thalamocortical, hippocampal, cerebellar, salience, parietal, default-mode, and coordinating systems, without reducing automensurality to any single anatomical structure.
The paper also develops implications for artificial observer frames, robotics, synthetic embodiment, computational continuation management, and identity-continuation architectures. Automensurality is proposed as a systems-level bridge between consciousness research, memory, trauma, neurobiology, evolutionary continuation, robotics, and synthetic-host engineering.
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- Publication: 10.5281/zenodo.19643548 (DOI)