Michelle Dawson posts

Post published on Twitter/X on 18 May 2022 05:53

Twitter/X DOI work crossref Extract quoted in the post Question asked by Dawson in the post External link integrated into the post Autism terms

Structured cited links

1 cited resource

DOI work Fetched Post crossref

Jean-Paul Noel, Sabyasachi Shivkumar, Kalpana Dokka, Ralf M Haefner, Dora E Angelaki (2022). Aberrant causal inference and presence of a compensatory mechanism in autism spectrum disorder. eLife, 11, e71866. eLife Sciences Publications, Ltd.

Publication date
17 May 2022
Identifier
10.7554/elife.71866
Authors
Jean-Paul Noel, Sabyasachi Shivkumar, Kalpana Dokka, Ralf M Haefner, Dora E Angelaki
Source
eLife
Details
11, e71866
Reference type
article
Publisher
eLife Sciences Publications, Ltd
Metadata source
crossref

Abstract

Autism spectrum disorder (ASD) is characterized by a panoply of social, communicative, and sensory anomalies. As such, a central goal of computational psychiatry is to ascribe the heterogenous phenotypes observed in ASD to a limited set of canonical computations that may have gone awry in the disorder. Here, we posit causal inference – the process of inferring a causal structure linking sensory signals to hidden world causes – as one such computation. We show that audio-visual integration is intact in ASD and in line with optimal models of cue combination, yet multisensory behavior is anomalous in ASD because this group operates under an internal model favoring integration (vs. segregation). Paradoxically, during explicit reports of common cause across spatial or temporal disparities, individuals with ASD were less and not more likely to report common cause, particularly at small cue disparities. Formal model fitting revealed differences in both the prior probability for common cause (p-common) and choice biases, which are dissociable in implicit but not explicit causal inference tasks. Together, this pattern of results suggests (i) different internal models in attributing world causes to sensory signals in ASD relative to neurotypical individuals given identical sensory cues, and (ii) the presence of an explicit compensatory mechanism in ASD, with these individuals putatively having learned to compensate for their bias to integrate in explicit reports.

Study authors in this cited reference