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Cuffed pediatric endotracheal tubes-Outer cuff diameters compared to age-related airway dimensions
Martina Fischer1, Beate Grass2, Michael Kemper1
1Department of Anaesthesia and Children's Research Center, University Children's Hospital, Zürich, Switzerland.
Insights
Pediatric tracheal tube cuff sizes vary significantly, often not matching airway anatomy. This study highlights the need for anatomically appropriate cuff dimensions for reliable pediatric airway sealing.
Area of Science:
- Pediatric Anesthesiology
- Medical Device Engineering
- Airway Management
Background:
- Effective pediatric airway sealing relies on properly sized tracheal tube cuffs.
- Current tracheal tube cuff sizes may not align with pediatric airway dimensions.
Purpose of the Study:
- To compare the actual cuff diameters of pediatric tracheal tubes with pediatric airway dimensions.
- To evaluate the anatomical rationale behind currently marketed pediatric tracheal tube cuff sizes.
Main Methods:
- Measured cuff diameters of five brands of pediatric cuffed tracheal tubes (3.0-7.0 mm internal diameter) at 20 cm H2O pressure.
- Compared measured cuff diameters to manufacturer-indicated values and pediatric tracheal dimensions using established formulas.
Main Results:
- Significant heterogeneity observed in cuff diameters across brands, with polyurethane cuffs showing less variation than polyvinylchloride.
- Smaller tubes often had cuffs not reaching tracheal diameter, while larger tubes were frequently oversized.
- Manufacturer-indicated cuff diameters showed a wide range (86%-188% of median tracheal diameter).
Conclusions:
- Many pediatric tracheal tube cuff sizes lack an age-related anatomical basis.
- A proposal for anatomically based cuff diameters is presented to improve tracheal tube selection in children.
Background:
Reliable sealing of the pediatric airway requires appropriately sized tracheal tube cuffs. The aim of this study was to compare residual cuff diameters of pediatric tracheal tubes with pediatric airway dimensions.
Methods:
Cuff diameters of five different brands of locally marketed pediatric cuffed tracheal tubes with internal diameters of 3.0-7.0 mm were measured at a cuff pressure of 20 cm H2 O and compared with cuff diameters indicated by their manufacturers. The latter values were compared to tracheal dimensions using the Motoyama and Khine formulas for cuffed tracheal tube size selection.
Results:
There is considerable heterogeneity in cuff diameters among pediatric tracheal tube brands, except for two brands from different manufacturers (Halyard and Parker Medical) which were identically designed. Cuffs made from polyurethane revealed fewer differences (91%-118%) between measured and manufacturer-indicated values for outer cuff diameters than did those made from polyvinylchloride (91%-146%). Particularly in smaller sized tracheal tubes, cuffs did not reach 100% of the tracheal lateral diameter, while others were oversized in larger tracheal tubes, independent of the two formulas used for cuffed tracheal tube size selection. Cuff diameters indicated by the manufacturer corresponded to 86%-188% of the median and 68%-157% of the maximum mid-tracheal lateral diameter of the corresponding upper age range.
Conclusion:
Our findings show that many of the cuff diameters of currently marketed tracheal tube brands lack an age-related anatomical rationale. A proposal for age-related anatomically based cuff diameters is provided for both recommendations for cuffed tracheal tube size selection in children.
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