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Published on: December 22, 2023
Pharyngeal pressure due to high-flow nasal cannula devices in preterm infants
Takayuki Kodera1,2, Akihiro Takatera1, Takeshi Morisawa1
1Department of Pediatrics, Kakogawa Central City Hospital, Kakogawa, Hyogo, Japan.
Insights
High-flow nasal cannula (HFNC) use in preterm infants shows varied pharyngeal pressure. Flow rate generally correlates with pressure, but bodyweight effects differ between Optiflow Junior and Precision Flow devices.
Area of Science:
- Neonatal Medicine
- Respiratory Physiology
- Medical Device Engineering
Background:
- High-flow nasal cannula (HFNC) therapy is used in infants to provide positive pressure.
- Understanding pharyngeal pressure dynamics is crucial for optimizing HFNC in preterm infants.
Purpose of the Study:
- To evaluate the association between pharyngeal pressure and flow rate in preterm infants using two HFNC devices.
- To assess the relationship between pharyngeal pressure and infant bodyweight for each device.
Main Methods:
- Pharyngeal pressure was measured in 12 preterm infants receiving HFNC.
- Flow rates ranged from 1 to 4 L/kg/min.
- Two devices were studied: Optiflow Junior (FP) and Precision Flow (VT).
Main Results:
- Flow rate and pharyngeal pressure were positively correlated for most cannulas.
- In the FP group, bodyweight positively correlated with pharyngeal pressure (≥2 L/kg/min).
- In the VT group, bodyweight negatively correlated with pharyngeal pressure (≥2 L/kg/min).
Conclusions:
- Pharyngeal pressure and flow rate are often positively correlated in preterm infants using HFNC.
- Bodyweight's correlation with pharyngeal pressure differs significantly between FP and VT devices.
- Further research with larger cohorts is needed to confirm these findings.
Background:
In infants, a high-flow nasal cannula (HFNC) generates continuous positive pressure on the upper airway. This study aimed to evaluate the association between pharyngeal pressure and flow rate, and the association between pharyngeal pressure and bodyweight for two types of HFNC devices commonly used in preterm infants: the Optiflow Junior, hereafter "FP" (Fisher & Paykel, Auckland, New Zealand), and the Precision Flow, hereafter "VT" (Vapotherm, Exeter, NH, USA).
Methods:
Pharyngeal pressure measurements were performed in 12 preterm infants who received HFNC support. Flow rates of 1 to 4 L/kg/min were studied.
Results:
The median weight at the time of measurement was 1,290 g (range, 953-1,932 g). The FP was used in eight infants and the VT in four. In both of the groups, the flow rate and pharyngeal pressure appeared to be positively correlated except for the premature cannula in the FP group. At a flow rate of ≥2 L/kg/min, there was a positive correlation between the bodyweight and pharyngeal pressure in infants with premature and neonatal cannulas in the FP group. Conversely, at the same flow rate, there was a negative correlation between the bodyweight and pharyngeal pressure in infants with a SOLO cannula in the VT group.
Conclusions:
In preterm infants, the flow rate and pharyngeal pressure were positively correlated in many HFNC cannulas. However, the pharyngeal pressure and bodyweight appeared to be positively and negatively correlated in the FP and VT groups, respectively. Future studies with larger sample sizes should further investigate this issue.
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