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Published on: November 19, 2015
Maturation Modulates Pharyngeal-Stimulus Provoked Pharyngeal and Respiratory Rhythms in Human Infants
Kathryn A Hasenstab1, Swetha Sitaram1, Ivan M Lang2
1The Neonatal and Infant Feeding Disorders Program, Center for Perinatal Research, Nationwide Children's Hospital Research Institute, Columbus, OH, USA.
Insights
Infant swallowing responses mature with age, showing decreased apnea and more stable pharyngeal activity. Increased stimulus volume boosts response prevalence but not frequency, suggesting improved airway-swallow coordination in preterm infants.
Area of Science:
- Pediatric Gastroenterology
- Neonatology
- Neuroscience
Background:
- Pharyngeal-provocation induced aerodigestive symptoms in infants are not well understood.
- Potential triggers include feeding (anterograde) and gastroesophageal reflux (retrograde).
Purpose of the Study:
- To investigate the maturational and dose-response effects of pharyngeal stimuli on swallowing and respiratory patterns in preterm infants.
- To analyze sensory-motor integration between the pharynx, esophagus, and airway.
Main Methods:
- Longitudinal study of 18 preterm infants at two time points (39.8 and 44.1 weeks postmenstrual age).
- Concurrent use of pharyngo-esophageal manometry, respiratory inductance plethysmography, and nasal airflow thermistor.
- Analysis of 160 multiple pharyngeal swallowing responses to 250 stimuli using linear mixed models.
Main Results:
- With maturation, deglutition apnea duration decreased, and pharyngeal waveform complexity reduced for initial responses, with increased stability for subsequent responses.
- Increasing stimulus volume enhanced the prevalence and number of pharyngeal peaks but did not affect pharyngeal frequency or stability.
- Respiratory changes during swallowing remained unaffected by maturation or stimulus volume.
Conclusions:
- Pharyngeal responses and respiratory rhythm interactions become more defined with maturation in preterm infants.
- Oromotor experiences and volume-dependent adaptive responses may contribute to improved airway-swallow coordination.
- These mechanisms are crucial for modulating and normalizing respiratory rhythm during feeding.
Abstract:
Pharyngeal-provocation induced aerodigestive symptoms in infants remain an enigma. Sources of pharyngeal provocation can be anterograde as with feeding, and retrograde as in gastroesophageal reflux. We determined maturational and dose-response effects of targeted pharyngeal-stimulus on frequency, stability, and magnitude of pharyngeal and respiratory waveforms during multiple pharyngeal swallowing responses in preterm-born infants when they were of full-term postmenstrual age (PMA). Eighteen infants (11 male) were studied longitudinally at 39.8 ± 4.8 weeks PMA (time-1) and 44.1 ± 5.8 weeks PMA (time-2). Infants underwent concurrent pharyngo-esophageal manometry, respiratory inductance plethysmography, and nasal airflow thermistor methods to test sensory-motor interactions between the pharynx, esophagus, and airway. Linear mixed models were used and data presented as mean ± SEM or %. Overall, responses to 250 stimuli were analyzed. Of the multiple pharyngeal swallowing responses (n = 160), with maturation (a) deglutition apnea duration decreases (p < 0.01), (b) number of pharyngeal waveform peaks and duration decreases for initial responses (p < 0.01), and subsequent responses have lesser variation and greater stability (p < 0.01). With increment in stimulus volumes we noted (a) increased prevalence (%) of pharyngeal responses (p < 0.05), (b) increased number of pharyngeal peaks (p < 0.05), yet pharyngeal frequency (Hz), variability, and stability remain unaffected (p > 0.05), and (c) respiratory changes were unaffected (p > 0.05). Initial and subsequent pharyngeal responses and respiratory rhythm interactions become more distinct with maturation. Interval oromotor experiences and volume-dependent increase in adaptive responses may be contributory. These mechanisms may be important in modulating and restoring respiratory rhythm normalcy.
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