Ayala Core v1.2: Task-Relevant Quotients, Stability, Observability, and Partial Sufficiency

Ayala Core is an exploratory framework for identifying which distinctions in a system's state are relevant to a specified task contrast. The framework formalizes task-relevant equivalence through quotient representations, distinguishes transformation-order effects from more general task contrasts, and separates latent reproducible effects from noisy observed differences. It connects task relevance with experimental identifiability and task-preserving observation compression, and introduces an empirical stability requirement for recovering task-relevant structure from repeated measurements. Four empirical regimes are distinguished: negligible effects, broadly shared effects, stable heterogeneous effects, and apparent heterogeneity dominated by instability or noise. The framework is intended as a structural synthesis and research program rather than a replacement for established statistical, causal-inference, information-theoretic, or experimental-design methods.

Authors

Publication Details

Journal
Zenodo (CERN European Organization for Nuclear Research)
Published
2026-09-29
DOI
https://doi.org/10.5281/zenodo.23040336
Primary Topic
Functional Brain Connectivity Studies
Type
preprint
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preprint

Ayala Core v1.2: Task-Relevant Quotients, Stability, Observability, and Partial Sufficiency

Daniel Ayala Feliciano
Zenodo (CERN European Organization for Nuclear Research)
Functional Brain Connectivity Studies
preprint

Ayala Core v1.2: Task-Relevant Quotients, Stability, Observability, and Partial Sufficiency

Daniel Ayala Feliciano
preprint en

Abstract

Ayala Core is an exploratory framework for identifying which distinctions in a system's state are relevant to a specified task contrast. The framework formalizes task-relevant equivalence through quotient representations, distinguishes transformation-order effects from more general task contrasts, and separates latent reproducible effects from noisy observed differences. It connects task relevance with experimental identifiability and task-preserving observation compression, and introduces an empirical stability requirement for recovering task-relevant structure from repeated measurements. Four empirical regimes are distinguished: negligible effects, broadly shared effects, stable heterogeneous effects, and apparent heterogeneity dominated by instability or noise. The framework is intended as a structural synthesis and research program rather than a replacement for established statistical, causal-inference, information-theoretic, or experimental-design methods.

Zenodo (CERN European Organization for Nuclear Research)
Functional Brain Connectivity Studies
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Ayala Core v1.2: Task-Relevant Quotients, Stability, Observability, and Partial Sufficiency — Daniel Ayala Feliciano · Zenodo (CERN European Organization for Nuclear Research) (2026) | TGRS Research Map | TGRS