## Abstract ## Background The beneficial function of heat and moisture exchangers (HMEs) is undisputed, but knowledge of their effects on intraβairway temperature and humidity is scarce. The aim of this study was to evaluate the clinical applicability of a new airway climate explorer (ACE) and to
The influence of a heat and moisture exchanger on tracheal climate in a cold environment
β Scribed by J. Karel Zuur; Sara H. Muller; Andrew Vincent; Michiel Sinaasappel; Frans H.C. de Jongh; Frans J.M. Hilgers
- Publisher
- Elsevier Science
- Year
- 2009
- Tongue
- English
- Weight
- 640 KB
- Volume
- 31
- Category
- Article
- ISSN
- 1350-4533
No coin nor oath required. For personal study only.
β¦ Synopsis
Objective:
The incidence of pulmonary complaints, severe tracheitis and lung function deterioration is increased during wintertime in laryngectomized individuals. we analyzed how a heat and moisture exchanger (hme) performs in cold and dry ambient circumstances, and how its efficiency in this environmental climate might be improved.
Study design:
Randomized crossover.
Methods:
Intra-tracheal temperature and humidity were measured in 10 laryngectomized patients with and without hme, in a cold (mean, 4.7 degrees c) and dry (mean, 4.5 mgh2o/l) room.
Results:
Presence of an hme causes the intra-tracheal mean humidity minima and maxima to increase with 4.2 mgh2o/l (95%ci: 3.3-5.0 mgh2o/l; p<0.001) and 2.4 mgh2o/l (95%ci: 1.7-3.1 mgh2o/l; p<0.001), respectively. the intra-tracheal mean temperature minima and maxima increased with 3.9 degrees c (95%ci: 2.7-5.1 degrees c; p<0.001) and 1.2 degrees c (95%ci: 0.8-1.2 degrees c; p<0.001), respectively. in the majority of patients, the calculated relative humidity values appear to reach well above 100% during inspiration.
Conclusion:
In a cold environment, presence of an hme significantly increases both inspiratory and expiratory temperature and humidity values. relative humidity calculations suggest the formation of condense droplets during inspiration. to further increase its effectiveness, improvement of the hme's thermal capacity should be aimed for.
π SIMILAR VOLUMES
Background. The aim of this study was to determine the influence of breathing resistance of heat and moisture exchangers (HMEs) on endotracheal climate and breathing pattern. Methods. Endotracheal temperature and humidity and tidal volumes were measured in 11 laryngectomized patients with a regular
## Abstract ## Background This study was designed to assess endotracheal climate in laryngectomized patients in a warm and dry environment and the effects of a heat and moisture exchanger (HME). ## Methods Endotracheal temperature and humidity were measured in 11 laryngectomized patients with a
## Abstract ## Background Highβresistance heat and moisture exchangers (HMEs) have been reported to increase transcutaneous oxygenation (tcpO~2~) values in laryngectomized individuals and to negatively influence patient compliance. The goal of the present study was to validate earlier published re
## Abstract Energy consumption in the urban environment impacts the urban surface energy budget and leads to the emission of anthropogenic sensible heat and moisture into the atmosphere. Anthropogenic heat and moisture emissions vary significantly both in time and space, and are not readily measure