Brainstem transcription of speech is disrupted in children with autism spectrum disorders
Трансcripción речи в стволе мозга нарушена у детей с расстройствами аутистического спектра
2009-02-10
SCID: 54.1/8y4z7k6f
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background noise degradationbrainstem processing of speechneural synchronyphase lockingspeech-evoked brainstem response
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Abstract (AI)
Language impairment is a hallmark of autism spectrum disorders (ASD). The origin of the deficit is poorly understood although deficiencies in auditory processing have been detected in both perception and cortical encoding of speech sounds. Little is known about the processing and transcription of speech sounds at earlier (brainstem) levels or about how background noise may impact this transcription process. Unlike cortical encoding of sounds, brainstem representation preserves stimulus features with a degree of fidelity that enables a direct link between acoustic components of the speech syllable (e.g. onsets) to specific aspects of neural encoding (e.g. waves V and A). We measured brainstem responses to the syllable /da/, in quiet and background noise, in children with and without ASD. Children with ASD exhibited deficits in both the neural synchrony (timing) and phase locking (frequency encoding) of speech sounds, despite normal click-evoked brainstem responses. They also exhibited reduced magnitude and fidelity of speech-evoked responses and inordinate degradation of responses by background noise in comparison to typically developing controls. Neural synchrony in noise was significantly related to measures of core and receptive language ability. These data support the idea that abnormalities in the brainstem processing of speech contribute to the language impairment in ASD. Because it is both passively elicited and malleable, the speech-evoked brainstem response may serve as a clinical tool to assess auditory processing as well as the effects of auditory training in the ASD population.
Key Findings
1
Background noise causes disproportionately greater degradation of speech-evoked brainstem responses in children with ASD than in controls.
2
Children with ASD show deficits in brainstem neural synchrony (timing) and phase locking (frequency encoding) of speech sounds despite normal click-evoked brainstem responses.
3
Neural synchrony in noise correlates significantly with core and receptive language ability in the studied children.
4
Speech-evoked brainstem responses are passively elicited, malleable, and proposed as a clinical tool to assess auditory processing and auditory training effects in ASD.
5
Speech-evoked brainstem responses in children with ASD have reduced magnitude and fidelity compared to typically developing controls.
Research Object
Speech-evoked auditory brainstem responses to the syllable /da/ in children with and without autism spectrum disorders
Research Subject
Disruption of brainstem transcription of speech: deficits in neural synchrony (timing), phase locking (frequency encoding), reduced magnitude and fidelity of speech-evoked responses, and increased degradation by background noise, and their relation to language abilities
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2009-02-10
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