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Updated: Dec 23, 2025

Adapting Human Videofluoroscopic Swallow Study Methods to Detect and Characterize Dysphagia in Murine Disease Models
Published on: March 1, 2015
Swallow Safety is Determined by Bolus Volume During Infant Feeding in an Animal Model
Christopher J Mayerl1, Alexis M Myrla2, Francois D H Gould3
1Department of Anatomy and Neurobiology, Northeast Ohio Medical University (NEOMED), Rootstown, OH, 44272, USA. cmayerl@neomed.edu.
Insights
Bolus volume, not preterm birth or recurrent laryngeal nerve (RLN) injury, primarily predicts infant swallowing safety. Larger boluses increase dysphagia risk, suggesting volume limitation may aid feeding in vulnerable infants.
Area of Science:
- Pediatric feeding and swallowing
- Infant neurodevelopment
- Swallowing biomechanics
Background:
- Feeding difficulties are common in preterm infants, with underlying mechanisms unclear.
- Recurrent laryngeal nerve (RLN) injury can worsen dysphagia in infants.
- The impact of bolus volume on infant swallow safety is largely unknown.
Purpose of the Study:
- To investigate the effects of preterm birth, postnatal maturation, and RLN lesion on infant swallow safety.
- To determine if bolus size is influenced by birth status or RLN lesion.
- To examine the relationship between bolus size and swallow safety in infants.
Main Methods:
- Utilized a validated animal model for free feeding studies.
- Assessed swallow safety, including penetration and aspiration events.
- Measured bolus size in relation to birth status (preterm vs. term) and RLN lesion status.
Main Results:
- Swallow safety showed minimal impact from RLN lesion; preterm and term infants had similar penetration/aspiration rates.
- Term infants consumed larger boluses than preterm infants, even when adjusted for body size.
- Bolus size was the strongest predictor of penetration or aspiration, regardless of age or lesion status.
Conclusions:
- Penetration and aspiration appear to be common in infant feeding.
- Limiting bolus size may effectively reduce dysphagia in infants with comorbidities like preterm birth or RLN injury.
Abstract:
Feeding difficulties are especially prevalent in preterm infants, although the mechanisms driving these difficulties are poorly understood due to a lack of data on healthy infants. One potential mechanism of dysphagia in adults is correlated with bolus volume. Yet, whether and how bolus volume impacts swallow safety in infant feeding is unknown. A further complication for safe infant swallowing is recurrent laryngeal nerve (RLN) injury due to patent ductus arteriosus surgery, which exacerbates the issues that preterm infants face and can increase the risk of dysphagia. Here, we used a validated animal model feeding freely to test the effect of preterm birth, postnatal maturation and RLN lesion and their interactions on swallow safety. We also tested whether bolus size differed with lesion or birth status, and the relationship between bolus size and swallow safety. We found very little effect of lesion on swallow safety, and preterm infants did not experience more penetration or aspiration than term infants. However, term infants swallowed larger boluses than preterm infants, even after correcting for body size. Bolus size was the primary predictor of penetration or aspiration, with larger boluses being more likely to result in greater degrees of dysphagia irrespective of age or lesion status. These results highlight that penetration and aspiration are likely normal occurrences in infant feeding. Further, when comorbidities, such as RLN lesion or preterm birth are present, limiting bolus size may be an effective means to reduce incidences of penetration and aspiration.
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