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Research PaperResearchia:202608.13019

Testing the limits of past-adapted explanations by post-endpoint randomisation: anticipatory EEG as a worked case

George Sopasakis

Abstract

A predictive model can fit its data even when its information set is insufficient; fit alone cannot establish sufficiency. This Perspective introduces Level II-A, a new design-based inference framework to test this distinction, illustrated in anticipatory EEG using contingent negative variation. A pre-event endpoint is committed before the delay to the imperative event is randomised. That later-assigned delay thereby becomes a negative-control probe of whether past-adapted information was suffic...

Submitted: August 13, 2026Subjects: Neuroscience; Neuroscience

Description / Details

A predictive model can fit its data even when its information set is insufficient; fit alone cannot establish sufficiency. This Perspective introduces Level II-A, a new design-based inference framework to test this distinction, illustrated in anticipatory EEG using contingent negative variation. A pre-event endpoint is committed before the delay to the imperative event is randomised. That later-assigned delay thereby becomes a negative-control probe of whether past-adapted information was sufficient for an already committed result. Under the past-adapted factorisation, accounts using only pre-commitment information cannot systematically order the endpoint by that delay. Leakage-safe preprocessing, a frozen label-blind comparator and retained-sample qualifications carry the exclusion to the confirmatory residual. A qualified material negative ordering supports conditional insufficiency without identifying a mechanism; an adequately sensitive null supports a bounded affirmative conclusion calibrated by the pipeline's false-adequacy rate. A non-compensatory rule separates these from diagnostic failure, selection-limited, opposite-direction and inconclusive outcomes. No human EEG data are analysed. In the synthetic benchmark, grid-based false-adequacy boundaries are 15μVs115\,μ\mathrm{V\,s^{-1}} for assignment isolation and 30μVs130\,μ\mathrm{V\,s^{-1}} for the sequential e-value route, in both directions. The design transfers wherever endpoint commitment precedes an exogenous label, probing sufficiency only where a declared alternative predicts ordering by it. It turns "the past explains it" from a working explanatory assumption into a magnitude-qualified, testable claim.


Source: arXiv:2608.12072v1 - http://arxiv.org/abs/2608.12072v1 PDF: https://arxiv.org/pdf/2608.12072v1 Original Link: http://arxiv.org/abs/2608.12072v1

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Date:
Aug 13, 2026
Topic:
Neuroscience
Area:
Neuroscience
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