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Updated: Dec 6, 2025

Infant Auditory Processing and Event-related Brain Oscillations
Published on: July 1, 2015
Effect of delivery mode on neonate auditory brainstem responses to air- and bone-conducted stimuli
1Department of Communication Sciences and Disorders, 3310 Health Science Bldg-CSDI-MS 668, East Carolina University, Greenville, NC, 27858-4353, USA.
Objectives:
The object of this study was to examine if caesarean section delivered neonates have different middle ear function relative to neonates with vaginal delivery.
Methods:
Auditory brainstem responses (ABRs) were examined in caesarean section delivered (n = 23) and vaginally delivered (n = 29) neonates. ABRs were also evoked with air- and bone-conducted stimuli (i.e., clicks and CE-Chirps) and presented at a screening intensity level (i.e., 30 dB nHL). Wave V latencies and amplitudes were examined as a function of mode of delivery and stimuli.
Results:
Statistically significant longer wave V latencies evoked with air-conducted stimuli were seen in caesarean section delivered neonates (p = .042). There was no statistically significant difference in wave V latencies with bone-conducted stimuli among the two groups of neonates (p = .42). There were no significant differences in wave V amplitude between neonates with caesarean section and vaginal delivery for air-conducted (p = .42) stimuli. Wave V amplitudes were not significantly different as a function of mode of delivery with CE-Chirp stimulus (p = .41). Wave V amplitudes were significantly larger for the caesarean section delivered neonates with the bone-conducted click stimulus (p = .036).
Conclusions:
The ABR wave V latency disparity with air- and bone-conducted stimuli support the notion that differences in middle ear function exist between the two groups of newborns. It was speculated that delayed fluid resorption in the middle ear exists in neonates with caesarean section delivery compared to those with vaginal delivery.
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