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Published on: March 1, 2015
Development of Suck and Swallow Mechanisms in Infants
1Department of Pediatrics/Neonatology, Baylor College of Medicine, Houston, Tex., USA.
Insights
Preterm infants often struggle with safe oral feeding due to immature physiological functions. Understanding the coordinated development of suck, swallow, and respiration is key to improving feeding interventions for these vulnerable infants.
Area of Science:
- Neonatal physiology
- Developmental pediatrics
- Clinical nutrition
Background:
- Preterm infants' hospital discharge is frequently delayed by difficulties with safe and competent oral feeding.
- Current clinical practice lacks evidence-based guidelines for managing oral feeding challenges in preterm infants.
- Existing interventions are often not fully recognized due to insufficient rigorous documentation of their efficacy.
Purpose of the Study:
- To review the maturation of physiological functions critical for oral feeding in preterm infants.
- To highlight the gap between research understanding of nutritive sucking skills and clinical practice.
- To emphasize the need for improved diagnostic tools and interventions for oral feeding difficulties.
Main Methods:
- Literature review focusing on the maturation of physiological functions involved in bolus transport.
- Analysis of the components of suck, swallow, and respiration coordination.
- Examination of the developmental timelines and rates of these physiological elements.
Main Results:
- Oral feeding readiness depends on coordinated suck, swallow, and respiration, but 'coordination' lacks a clear definition.
- Each function (suck, swallow, respiration) comprises multiple elements maturing at different rates.
- Successful oral feeding requires synchronized maturation within each function and integration across all functions.
Conclusions:
- Effective oral feeding in preterm infants necessitates the synchronized maturation of individual suck, swallow, and respiration elements.
- Integration and coordination of these functions at a higher level are crucial for safe and efficient bolus transport.
- Translating developmental knowledge into clinical practice is essential for better assessment and intervention strategies.
Abstract:
Preterm infants' hospital discharge is often delayed due to their inability to feed by mouth safely and competently. No evidence-based supported guidelines are currently available for health-care professionals caring for these infants. Available interventions advocating benefits are not readily acknowledged for lack of rigorous documentation inasmuch as any improvements may ensue from infants' normal maturation. Through research, a growing understanding of the development of nutritive sucking skills has emerged, shedding light on how and why infants may encounter oral feeding difficulties due to the immaturity of specific physiologic functions. Unfortunately, this knowledge has yet to be translated to the clinical practice to improve the diagnoses of oral feeding problems through the development of relevant assessment tools and to enhance infants' oral feeding skills through the development of efficacious preventive and therapeutic interventions. This review focuses on the maturation of the various physiologic functions implicated in the transport of a bolus from the oral cavity to the stomach. Although infants' readiness for oral feeding is deemed attained when suck, swallow, and respiration are coordinated, we do not have a clear definition of what coordination implies. We have learned that each of these functions encompasses a number of elements that mature at different times and rates. Consequently, it would appear that the proper functioning of sucking, the swallow processing, and respiration need to occur at two levels: first, the elements within each function must reach an appropriate functional maturation that can work in synchrony with each other to generate an appropriate suck, swallow process, and respiration; and second, the elements of all these distinct functions, in turn, must be able to do the same at an integrative level to ensure the safe and efficient transport of a bolus from the mouth to the stomach.
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