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Published on: January 12, 2018
Preterm birth disrupts the development of feeding and breathing coordination
Christopher J Mayerl1, Francois D H Gould1, Laura E Bond1
1Department of Anatomy and Neurobiology, Northeast Ohio Medical University (NEOMED), Rootstown Ohio.
Insights
Preterm birth impacts infant feeding coordination. While preterm pigs matured in sucking and swallowing, they failed to coordinate breathing with swallowing, highlighting potential interventions for human infants.
Area of Science:
- Neuroscience
- Developmental Biology
- Physiology
Background:
- Coordinated breathing and swallowing are critical for infant mammals, yet neurological mechanisms and maturation are poorly understood.
- Clinical differences exist in this coordination between term and preterm infants, posing feeding challenges.
Purpose of the Study:
- To investigate the impact of preterm birth on suck-swallow-breathe dynamics in a preterm animal model.
- To test the hypothesis that preterm birth disrupts coordination between swallowing and breathing due to incomplete brainstem connections.
Main Methods:
- Utilized a preterm infant pig model for high-resolution, longitudinal study of physiological processes.
- Integrated high-speed videofluoroscopy and respiratory inductance plethysmography data during the nursing period.
Main Results:
- Preterm pigs demonstrated rhythmic and mature sucking and swallowing behaviors, indicating postnatal maturation.
- Crucially, the ability to coordinate swallowing with breathing did not develop in preterm pigs.
- Preterm birth impacted coordinated behaviors more than isolated behaviors.
Conclusions:
- Preterm birth significantly impairs the coordination of breathing and swallowing, despite maturation of individual behaviors.
- Findings suggest potential neurological underpinnings for feeding difficulties in preterm infants and inform clinical interventions.
- The results may explain minimum gestation periods across mammals and offer insights into feeding development.
Abstract:
All mammals must breathe and breathe continuously from birth. Similarly, all mammals, including infants, have high functional demands for feeding. However, the pathway that food takes through the pharynx interrupts respiration. The coordination between swallowing and breathing is therefore critical for all infant mammals. Clinically, this coordination differs between term and preterm infants. However, the neurological mechanisms underlying this coordination and how it matures as infants grow are poorly understood. Here, we integrate high-resolution data from multiple physiologic processes across a longitudinal time frame to study suck-swallow-breathe dynamics in a preterm animal model, the infant pig. In doing so, we test the hypothesis that preterm birth will have an impact on some, but not all, behaviors associated with suck-swallow-breath performance. We hypothesize that coordination will be disrupted, reflecting incomplete connections in the brainstem. We found that preterm pigs became rhythmic and mature in sucking and swallowing behaviors, suggesting substantial postnatal maturation in the coordination of these behaviors. However, their ability to coordinate swallowing and breathing never developed. These results have implications for the nature of clinical care of human infants, as well as for how feeding processes develop in mammals. Clinically, they provide a foundation for developing interventions for preterm infants. Additionally, these results suggest that the lack of coordination between swallowing and breathing may be a significant factor in determining the minimum gestation time across mammals. NEW & NOTEWORTHY Preterm infants face a variety of challenges associated with safe feeding, but obtaining high-resolution longitudinal data to understand these challenges in humans is challenging. We used a pig model to acquire high-speed videofluoroscopic and respiratory inductance plethysmograph data throughout the nursing period to show that preterm birth does not have substantial impacts on the ability of infants to perform isolated behaviors. However, it does decrease the ability of preterm infants to coordinate among behaviors during feeding.
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