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Updated: Jul 4, 2026

Non-Nutritive Suck Parameters Measurements Using a Custom Pressure Transducer System
Published on: April 19, 2024
Synthetic orocutaneous stimulation entrains preterm infants with feeding difficulties to suck
1Department of Speech-Language-Hearing: Sciences and Disorders, University of Kansas, Lawrence, KS 66045, USA. smbarlow@ku.edu
Insights
A novel pulsating pacifier effectively trained the suck central pattern generator (sCPG) in preterm infants, significantly improving their non-nutritive suck (NNS) and oral feeding success.
Area of Science:
- Neuroscience
- Developmental Pediatrics
- Bioengineering
Background:
- Prematurity can impair the development of the suck central pattern generator (sCPG), leading to feeding difficulties in infants.
- The potential for patterned orocutaneous input to enhance sCPG development in preterm infants with functional deficits is not well understood.
Purpose of the Study:
- To assess the efficacy of a motorized pulsating pacifier in entraining the sCPG in preterm infants with feeding disorders.
- To evaluate the impact of this intervention on the development of suck patterns and oral feeding abilities.
Main Methods:
- A prospective cohort study involved 31 preterm infants, divided into an intervention group and a control group.
- The intervention group received daily orocutaneous pulse trains via a specialized pacifier during gavage feeds.
- Infants were matched based on gestational age, birth weight, oxygen use, and oral feeding status.
Main Results:
- The pulsating pacifier significantly accelerated non-nutritive suck (NNS) development, increasing oral compressions, NNS bursts, and cycles.
- Treated infants showed a 3.1-fold greater success rate in achieving oral feeds compared to controls (72.8% vs. 23.3%).
Conclusions:
- Patterned orocutaneous pulse trains can induce functional sCPG expression in preterm infants lacking organized suck.
- This intervention leads to rapid NNS emergence and a significant increase in oral nutrient intake.
Background:
Prematurity can disrupt the development of a specialized neural circuit known as suck central pattern generator (sCPG), which often leads to poor feeding skills. The extent to which suck can be entrained using a synthetically patterned orocutaneous input to promote its development in preterm infants who lack a functional suck is unknown.
Objective:
To evaluate the effects of a new motorized 'pulsating' pacifier capable of entraining the sCPG in tube-fed premature infants who lack a functional suck and exhibit feeding disorders.
Methods:
Prospective cohort study of 31 preterm infants assigned to either the oral patterned entrainment intervention (study) or non-treated (controls) group, matched by gestational age, birth weight, oxygen supplementation history and oral feed status. Study infants received a daily regimen of orocutaneous pulse trains through a pneumatically controlled silicone pacifier concurrent with gavage feeds.
Results:
The patterned orocutaneous stimulus was highly effective in accelerating the development of non-nutritive suck (NNS) in preterm infants. A repeated-measure multivariate analysis of covariance revealed significant increases in minute rates for total oral compressions, NNS bursts, and NNS cycles, suck cycles per burst, and the ratiometric measure of NNS cycles as a percentage of total ororhythmic output. Moreover, study infants also manifest significantly greater success at achieving oral feeds, surpassing their control counterparts by a factor of 3.1 x (72.8% daily oral feed versus 23.3% daily oral feed, respectively).
Conclusion:
Functional expression of the sCPG among preterm infants who lack an organized suck can be induced through the delivery of synthetically patterned orocutaneous pulse trains. The rapid emergence of NNS in treated infants is accompanied by a significant increase in the proportion of nutrient taken orally.
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