Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Preservation of humidity and heat of respiratory gases in spontaneously breathing, tracheostomized patients

View through CrossRef
Background: Ventilation with endotracheal intubation bypasses the upper airway and the normal heat and moisture exchanging process of inspired gases. A continuous loss of moisture and heat occurs and predisposes patients to serious airway damage. We therefore prospectively studied one heated humidifier system, one cold humidifier system and one heat and moisture exchanger in spontaneously breathing, tracheostomized intensive care unit patients to determine the ability to preserve patients' heat and water.Methods: Following a randomized order, 10 patients were spontaneously ventilated for 24‐h periods with the Nam 35r̀ humidifier (Europe Medical, France, a cold water humidifier), the heat and moisture exchanger Trach‐Ventr̀ (Gibeck, Sweden), and the Aerodyner̀ humidifer (Kendall, USA). In each patient, during the inspiration phase, the following measurements were performed: mean values of temperature and relative humidity of inspired gases. The absolute humidity was calculated. Values were obtained in each patients after 40 min and 24 h.Results: The Trach‐Ventr̀ filter and the Aerodyner̀ humidifier had better humidification and thermic capacities than the Nam 35r̀ humidifier (P<0.001). With the Nam 35r̀ humidifier, no patient had temperature of inspired gas >29°C. Concerning absolute humidity of inspired gases, the Nam 35r̀ humidifier achieved a lower performance than the other two tested systems (P<0.001).Conclusion: In spontaneously breathing, tracheostomized intensive care unit patients, the Trach‐Ventr̀ heat and moisture exchanger and the Aerodyner̀ heated system achieved satisfactorily preservation of heat and humidity of inspired gases.
Title: Preservation of humidity and heat of respiratory gases in spontaneously breathing, tracheostomized patients
Description:
Background: Ventilation with endotracheal intubation bypasses the upper airway and the normal heat and moisture exchanging process of inspired gases.
A continuous loss of moisture and heat occurs and predisposes patients to serious airway damage.
We therefore prospectively studied one heated humidifier system, one cold humidifier system and one heat and moisture exchanger in spontaneously breathing, tracheostomized intensive care unit patients to determine the ability to preserve patients' heat and water.
Methods: Following a randomized order, 10 patients were spontaneously ventilated for 24‐h periods with the Nam 35r̀ humidifier (Europe Medical, France, a cold water humidifier), the heat and moisture exchanger Trach‐Ventr̀ (Gibeck, Sweden), and the Aerodyner̀ humidifer (Kendall, USA).
In each patient, during the inspiration phase, the following measurements were performed: mean values of temperature and relative humidity of inspired gases.
The absolute humidity was calculated.
Values were obtained in each patients after 40 min and 24 h.
Results: The Trach‐Ventr̀ filter and the Aerodyner̀ humidifier had better humidification and thermic capacities than the Nam 35r̀ humidifier (P<0.
001).
With the Nam 35r̀ humidifier, no patient had temperature of inspired gas >29°C.
Concerning absolute humidity of inspired gases, the Nam 35r̀ humidifier achieved a lower performance than the other two tested systems (P<0.
001).
Conclusion: In spontaneously breathing, tracheostomized intensive care unit patients, the Trach‐Ventr̀ heat and moisture exchanger and the Aerodyner̀ heated system achieved satisfactorily preservation of heat and humidity of inspired gases.

Related Results

Geochemical Characteristics and Origin of Natural Gases in the Qaidam Basin, China
Geochemical Characteristics and Origin of Natural Gases in the Qaidam Basin, China
Abstract  Sixty‐five natural gas samples were collected from 19 oil‐gasfields in the Qaidam basin, China. The chemical composition and carbon isotope values of the samples were mea...
Breathing pattern characterization in patients with respiratory and cardiac failure
Breathing pattern characterization in patients with respiratory and cardiac failure
El objetivo principal de la tesis es estudiar los patrones respiratorios de pacientes en proceso de extubación y pacientes con insuficiencia cardiaca crónica (CHF), a partirde la s...
Power Recovery From In-Situ Combustion Exhaust Gases
Power Recovery From In-Situ Combustion Exhaust Gases
A field evaluation of the use of a small gas-combustion turbine generator set to recover power from in-situ combustion exhaust gases was conducted. With suitable modifications to t...
The slow breathing reduces anxiety: An EEG study
The slow breathing reduces anxiety: An EEG study
Anxiety is an interactive disorder of the mind and body, characterized by excessive worry about uncertain future events and a dysfunction of the autonomic nervous system. Previous ...
Short‐duration accelerated breathing challenges affect phonation
Short‐duration accelerated breathing challenges affect phonation
AbstractObjectives/Hypothesis:Inhaled air must be adequately humidified to prevent vocal fold drying, which is detrimental to phonation. The water content of inspired air is reduce...
AIM AND MEANING OF BREATHING EXERCISES: INTERDISCIPLINARY LITERATURE REVIEW
AIM AND MEANING OF BREATHING EXERCISES: INTERDISCIPLINARY LITERATURE REVIEW
Respiration is an indispensable aspect of life that significantly influences both the physical and mental well-being of individuals, depending on such factors as depth and rhythm. ...

Back to Top