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Convective warming after hypothermic cardiopulmonary bypass
A H Moors1, J A Pickett, P S Woolman
1Department of Anaesthesia, Papworth Hospital, Cambridge.
British Journal of Anaesthesia
|December 1, 1994
Summary
Convective warming after hypothermic cardiopulmonary bypass did not speed core body rewarming or tracheal extubation. Inadequate bypass rewarming time prolonged these, and core warming rate correlated inversely with body mass index.
Area of Science:
- Cardiovascular Surgery
- Anesthesiology
- Critical Care Medicine
Background:
- Hypothermic cardiopulmonary bypass (CPB) is used in cardiac surgery to reduce metabolic demand.
- Patient rewarming after CPB is critical for preventing complications.
- Convective warming devices are commonly used, but their efficacy in accelerating core rewarming requires evaluation.
Purpose of the Study:
- To evaluate the effectiveness of convective warming in accelerating body core rewarming after hypothermic CPB.
- To assess the impact of convective warming on time to tracheal extubation.
- To explore factors influencing rewarming rates, such as body mass index and rewarming duration on CPB.
Main Methods:
- A randomized, controlled study was conducted involving patients undergoing CPB.
- Convective warming was applied using BairHugger and Warm Touch blankets.
- Core and shell temperatures were monitored, along with time to tracheal extubation.
Main Results:
- Convective warming did not significantly accelerate body core rewarming rate or reduce time to tracheal extubation.
- Inadequate rewarming time on CPB was associated with prolonged core warming and extubation times.
- Body core warming rate showed an inverse relationship with body mass index.
- No significant difference in performance was observed between the two convective warming blanket types.
Conclusions:
- Convective warming alone may not be sufficient to accelerate core rewarming after hypothermic CPB.
- Optimizing rewarming duration on CPB and considering patient BMI are crucial for efficient recovery.
- Further research may be needed to identify optimal strategies for post-CPB rewarming.