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Quantitative Assessment of Cortical Auditory-tactile Processing in Children with Disabilities
Published on: January 29, 2014
Maturation of the Central Auditory Nervous System in Children with Auditory Processing Disorder
1Department of Audiology and Speech Pathology, the University of Melbourne, Parkville, Australia.
Insights
Children with auditory processing disorder (APD) show immature central auditory nervous system (CANS) function. Cortical auditory evoked potentials (CAEPs) revealed delayed P1-N1 latency and reduced amplitude in APD cases, suggesting developmental delays.
Area of Science:
- Neuroscience
- Audiology
- Developmental Pediatrics
Background:
- Auditory Processing Disorder (APD) is often linked to neurodevelopmental delays.
- The Central Auditory Nervous System (CANS) maturation is crucial for auditory processing.
- Cortical Auditory Evoked Potentials (CAEPs) are used to assess CANS development.
Purpose of the Study:
- To investigate if maturational differences in the CANS underlie Auditory Processing Disorder (APD) in children.
- To compare CAEP responses between children with and without APD diagnosis.
- To determine if CANS immaturity is a cause of APD.
Main Methods:
- Utilized Cortical Auditory Evoked Potentials (CAEPs) to measure CANS maturation.
- Recorded CAEPs using 500-Hz tone burst stimuli in 27 children (7-12 years) with APD and age-matched controls.
- Analyzed latency and amplitude of the P1-N1 complex and P2 wave.
Main Results:
- Children with APD exhibited significantly increased P1-N1 latency (approx. 10 ms) compared to controls.
- APD group showed significantly reduced P1-N1 amplitude (approx. 10 μV).
- No significant differences were observed in the P2 wave between groups.
Conclusions:
- Findings support CANS immaturity as a potential cause of APD in children.
- The observed CAEP differences align with a delayed developmental trajectory.
- This study highlights the utility of CAEPs in understanding APD pathophysiology.
Abstract:
Neurodevelopmental delay has been proposed as the underlying cause of the majority of cases of auditory processing disorder (APD). The current study employs the cortical auditory evoked potential (CAEP) to assess if maturational differences of the central auditory nervous system (CANS) can be identified between children who do and do not meet the diagnostic criterion for APD. The P1-N1 complex of the CAEP has previously been used for tracking development of the CANS in children with hearing impairment. Twenty-seven children (7 to 12 years old) who failed an APD behavioral test battery were age-matched (within 3 months) to children who had passed the same battery. CAEP responses to 500-Hz tone burst stimuli were recorded and analyzed for latency and amplitude measures. The P1-N1 complex of the CAEP, which has previously been used for tracking development of the CANS in children with hearing impairment, showed significant group differences. The children diagnosed with APD showed significantly increased latency (∼10 milliseconds) and significantly reduced amplitude (∼10 μV) of the early components of the CAEP compared with children with normal auditory processing. No significant differences were seen in the later P2 wave. The normal developmental course is for a decrease in latency and increase in amplitude as a function of age. The results of this study are, therefore, consistent with an immaturity of the CANS as an underlying cause of APD in children.
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