Billets de Michelle Dawson

Billet publié sur Bluesky le 16/05/2026 11:33

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"emotion dysregulation" & "prediction gone awry" in autism & ADHD? journals.sagepub.com/doi/10.1177/... "autism may involve heightened confidence assigned to surprising inputs together with sluggish updating of expectations, a combination that can produce both reactivity and emotional inertia"?

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Publication avec DOI Récupéré Publication crossref

Hari Srinivasan, Carissa J. Cascio, Mark T. Wallace (2026). Prediction Gone Awry: A Computational Framework for Emotion Dysregulation Across Autism and Attention-Deficit/Hyperactivity Disorder. Journal of Child and Adolescent Psychopharmacology, 10445463261448490. SAGE Publications.

Date de publication
11/05/2026
Identifiant
10.1177/10445463261448490
Auteurs
Hari Srinivasan, Carissa J. Cascio, Mark T. Wallace
Source
Journal of Child and Adolescent Psychopharmacology
Détails
10445463261448490
Type de référence
article
Éditeur
SAGE Publications
Source de métadonnées
crossref

Résumé

Emotion dysregulation is a common issue across childhood and adolescence, including in autism and attention-deficit/hyperactivity disorder (ADHD). Yet most accounts remain descriptive—focusing on irritability, rapid escalation, slow return to baseline—without specifying the computational processes that stabilize emotions in context. We propose a predictive-coding account in which emotion regulation depends on how the brain predicts bodily and environmental signals, detects mismatches, between expectation and sensation, and determines how much confidence to assign those mismatches. Within this framework, dysregulation can arise when prediction errors are assigned excessive precision (i.e., incoming signals are overweighted relative to prior expectations, making them feel “too loud”), amplifying emotional reactivity or when prior expectations update too slowly (feelings get “stuck”), prolonging emotional states beyond contextual demands. We hypothesize that autism may involve heightened confidence assigned to surprising inputs together with sluggish updating of expectations, a combination that can produce both reactivity and emotional inertia. ADHD, by contrast, may be characterized by weaker expectations and unstable gain control, meaning the system’s amplification of incoming signals fluctuates from moment to moment, contributing to rapid, reactive swings in affect. We outline candidate physiological correlates—including heart-rate variability dynamics, pupillary variability, mismatch negativity, and neural indices of interoceptive precision—that could evaluate these hypotheses. Framing intervention around restoring flexible inference rather than suppressing emotion offers a mechanistic direction for developmental research. These predictions await empirical validation in developmental samples.

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