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Pharyngeal biorhythms during oral milk challenge in high-risk infants: Do they predict chronic tube feeding?
Kathryn A Hasenstab1, Varsha Prabhakar1, Roseanna Helmick1
1Innovative Infant Feeding Disorders Research Program, The Research Institute at Nationwide Children's Hospital, Columbus, Ohio, USA.
Insights
Distinct pharyngeal rhythms in high-risk infants predict feeding outcomes. A robust rhythm indicates better swallowing function and independent oral feeding, while sparse or intermediate rhythms correlate with higher chronic tube feeding risk.
Area of Science:
- Neonatology
- Pediatric Gastroenterology
- Neuroscience
Background:
- Eating difficulties are prevalent in high-risk neonatal intensive care unit (NICU) infants, with unclear underlying mechanisms.
- Pharyngo-esophageal motility testing assesses swallowing physiology and its interplay with cardio-respiratory rhythms in these infants.
Purpose of the Study:
- To identify distinct pharyngeal rhythms during oral milk challenge (OMC) in high-risk NICU infants.
- To develop a predictive model for chronic tube feeding risk in this population.
Main Methods:
- Pharyngo-esophageal manometry with OMC was performed on 56 symptomatic NICU infants.
- Exploratory cluster analysis identified patient groups based on pharyngeal contractile rhythms.
- Linear mixed models and linear regression were used for group comparisons and risk model development.
Main Results:
- Three distinct pharyngeal rhythm groups were identified: sparse, intermediate, and robust.
- The robust group exhibited better swallowing function, greater deglutition apnea, and improved clinical outcomes, including higher milk transfer rates and independent oral feeding at discharge.
- A chronic tube feeding risk prediction model was developed incorporating postmenstrual age, bronchopulmonary dysplasia, and patient group.
Conclusions:
- A robust pharyngeal rhythm may serve as a neurosensorimotor biomarker for independent oral feeding.
- Differential maturation of cranial nerve-mediated pathways influences swallowing and cardio-respiratory adaptation in infants.
Background:
Eating difficulties are common in high-risk neonatal intensive care unit (NICU) infants; mechanisms remain unclear. Crib-side pharyngo-esophageal motility testing is utilized to assess contiguous swallowing physiology, and cross-system interplay with cardio-respiratory rhythms. Aims were to: (1) identify whether distinct pharyngeal rhythms exist during oral milk challenge (OMC), and (2) develop a chronic tube feeding risk prediction model in high-risk infants.
Methods:
Symptomatic NICU infants (N = 56, 29.7 ± 3.7 weeks birth gestation) underwent pharyngo-esophageal manometry with OMC at 40.9 ± 2.5 weeks postmenstrual age (PMA). Exploratory cluster data analysis (partitioning around k-medoids) was performed to identify patient groups using pharyngeal contractile rhythm data (solitary swallows and swallows within bursts). Subsequently, (a) pharyngeal-esophageal, cardio-respiratory, and eating method characteristics were compared among patient groups using linear mixed models, and (b) chronic tube feeding prediction model was created using linear regression.
Results:
Three distinct patient groups were identified with validity score of 0.6, and termed sparse (high frequency of solitary swallows), intermediate, or robust (high swallow rate within bursts). Robust group infants had: lesser pharyngeal and esophageal variability, greater deglutition apnea, pharyngeal activity, and esophageal activity (all p < 0.05), but less frequent heart rate decreases (p < 0.05) with improved clinical outcomes (milk transfer rate, p < 0.001, and independent oral feeding at discharge, p < 0.03). Chronic tube feeding risk = -11.37 + (0.22 × PMA) + (-0.73 × bronchopulmonary dysplasia) + (1.46 × intermediate group) + (2.57 × sparse group).
Conclusions:
Robust pharyngeal rhythm may be an ideal neurosensorimotor biomarker of independent oral feeding. Differential maturation of cranial nerve-mediated excitatory and inhibitory components involving foregut, airway, and cardiac rhythms distinguishes the physiologic and pathophysiologic basis of swallowing and cardio-respiratory adaptation.
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