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Asymmetry of temporal auditory T-complex: right ear-left hemisphere advantage in Tb timing in children
Nicole Bruneau1, Aurélie Bidet-Caulet2, Sylvie Roux1
1UMR U930, INSERM, Tours, France; Université François-Rabelais de Tours, France.
Insights
Children show a right ear-left hemisphere timing advantage for the Tb peak, suggesting its use as a marker for brain connectivity. This study compared temporal auditory evoked potentials (T-complex) in children and adults.
Area of Science:
- Neuroscience
- Auditory Neuroscience
- Developmental Neuroscience
Background:
- Brain asymmetry in auditory processing develops throughout childhood.
- Temporal auditory evoked potentials (T-complex) reflect auditory pathway function.
Purpose of the Study:
- To compare brain asymmetry of T-complex responses to monaural auditory stimulation in children versus adults.
- To identify potential electrophysiological markers for inter-hemisphere interactions in children.
Main Methods:
- Auditory stimuli (tones) were delivered monaurally to right-handed children (7-9 years) and adults.
- Latency and amplitude of T-complex components (Na, Ta, Tb) were measured at temporal sites.
- Stimulus onset asynchrony (SOA) varied to assess timing effects.
Main Results:
- T-complex peaks were larger and better defined in children than adults.
- Children showed hemisphere-specific culmination for Na, Ta, and Tb peaks.
- A novel finding was a shorter Tb peak latency at the left temporal site for right ear stimulation in children.
Conclusions:
- Children exhibit a right ear-left hemisphere timing advantage for the Tb peak.
- The Tb peak may serve as an electrophysiological marker for ear advantage and inter-hemisphere connectivity in children.
Objective:
To investigate brain asymmetry of the temporal auditory evoked potentials (T-complex) in response to monaural stimulation in children compared to adults.
Methods:
Ten children (7 to 9 years) and ten young adults participated in the study. All were right-handed. The auditory stimuli used were tones (1100 Hz, 70 dB SPL, 50 ms duration) delivered monaurally (right, left ear) at four different levels of stimulus onset asynchrony (700-1100-1500-3000 ms). Latency and amplitude of responses were measured at left and right temporal sites according to the ear stimulated.
Results:
Peaks of the three successive deflections (Na-Ta-Tb) of the T-complex were greater in amplitude and better defined in children than in adults. Amplitude measurements in children indicated that Na culminates on the left hemisphere whatever the ear stimulated whereas Ta and Tb culminate on the right hemisphere but for left ear stimuli only. Peak latency displayed different patterns of asymmetry. Na and Ta displayed shorter latencies for contralateral stimulation. The original finding was that Tb peak latency was the shortest at the left temporal site for right ear stimulation in children. Amplitude increased and/or peak latency decreased with increasing SOA, however no interaction effect was found with recording site or with ear stimulated.
Conclusion:
Our main original result indicates a right ear-left hemisphere timing advantage for Tb peak in children. The Tb peak would therefore be a good candidate as an electrophysiological marker of ear advantage effects during dichotic stimulation and of functional inter-hemisphere interactions and connectivity in children.
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