Aberrant emotional prosody circuitry predicts social communication impairments in children with autism
Publication year
2023Number of pages
11 p.
Source
Biological Psychiatry : Cognitive Neuroscience and Neuroimaging, 8, 5, (2023), pp. 531-541ISSN
Publication type
Article / Letter to editor
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Organization
SW OZ DCC CO
PI Group Intention & Action
Journal title
Biological Psychiatry : Cognitive Neuroscience and Neuroimaging
Volume
vol. 8
Issue
iss. 5
Languages used
English (eng)
Page start
p. 531
Page end
p. 541
Subject
111 000 Intention & Action; Action, intention, and motor controlAbstract
Background: Emotional prosody provides acoustical cues that reflect a communication partner’s emotional state and is crucial for successful social interactions. Many children with autism have deficits in recognizing emotions from voices; however, the neural basis for these impairments is unknown. We examined brain circuit features underlying emotional prosody processing deficits and their relationship to clinical symptoms of autism. Methods: We used an event-related functional magnetic resonance imaging task to measure neural activity and connectivity during processing of sad and happy emotional prosody and neutral speech in 22 children with autism and 21 matched control children (7-12 years old). We employed functional connectivity analyses to test competing theoretical accounts that attribute emotional prosody impairments to either sensory processing deficits in auditory cortex or theory of mind deficits instantiated in the temporoparietal junction (TPJ). Results: Children with autism showed specific behavioral impairments for recognizing emotions from voices. They also showed aberrant functional connectivity between voice-sensitive auditory cortex and the bilateral TPJ during emotional prosody processing. Neural activity in the bilateral TPJ during processing of both sad and happy emotional prosody stimuli was associated with social communication impairments in children with autism. In contrast, activity and decoding of emotional prosody in auditory cortex was comparable between autism and control groups and did not predict social communication impairments. Conclusions: Our findings support a social-cognitive deficit model of autism by identifying a role for TPJ dysfunction during emotional prosody processing. Our study underscores the importance of tuning in to vocal-emotional cues for building social connections in children with autism.
This item appears in the following Collection(s)
- Academic publications [243984]
- Donders Centre for Cognitive Neuroimaging [3983]
- Electronic publications [130695]
- Faculty of Social Sciences [30023]
- Open Access publications [104973]
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