Literature DB >> 23750698

Inspired gas humidity and temperature during mechanical ventilation with the Stephanie ventilator.

Bianca L Preo1, Bruce Shadbolt, David A Todd.   

Abstract

AIMS: To measure inspired gas humidity and temperature delivered by a Stephanie neonatal ventilator with variations in (i) circuit length; (ii) circuit insulation; (iii) proximal airway temperature probe (pATP) position; (iv) inspiratory temperature (offset); and (v) incubator temperatures.
METHODS: Using the Stephanie neonatal ventilator, inspired gas humidity and temperature were measured during mechanical ventilation at the distal inspiratory limb and 3 cm down the endotracheal tube. Measurements were made with a long or short circuit; with or without insulation of the inspiratory limb; proximal ATP (pATP) either within or external to the incubator; at two different inspiratory temperature (offset) of 37(-0.5) and 39(-2.0)°C; and at three different incubator temperatures of 32, 34.5, and 37°C.
RESULTS: Long circuits produced significantly higher inspired humidity than short circuits at all incubator settings, while only at 32°C was the inspired temperature higher. In the long circuits, insulation further improved the inspired humidity especially at 39(-2.0)°C, while only at incubator temperatures of 32 and 37°C did insulation significantly improve inspired temperature. Positioning the pATP outside the incubator did not result in higher inspired humidity but did significantly improve inspired temperature. An inspiratory temperature (offset) of 39(-2.0)°C delivered significantly higher inspired humidity and temperature than the 37(-0.5)°C especially when insulated.
CONCLUSIONS: Long insulated Stephanie circuits should be used for neonatal ventilation when the infant is nursed in an incubator. The recommended inspiratory temperature (offset) of 37(-0.5)°C produced inspired humidity and temperature below international standards, and we suggest an increase to 39(-2.0)°C.
© 2013 John Wiley & Sons Ltd.

Entities:  

Keywords:  Stephanie ventilator; children; infants; inspired humidity; inspired temperature; mechanical ventilation

Mesh:

Year:  2013        PMID: 23750698     DOI: 10.1111/pan.12206

Source DB:  PubMed          Journal:  Paediatr Anaesth        ISSN: 1155-5645            Impact factor:   2.556


  1 in total

1.  The Association Between Very Premature Infant Body Temperatures Over Time and Respiratory Care.

Authors:  Jane L Ralphe; Susan G Silva; Robin B Dail; Debra H Brandon
Journal:  Biol Res Nurs       Date:  2020-10-30       Impact factor: 2.318

  1 in total

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