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Thermoregulatory vasoconstriction does not impede core warming during cutaneous heating
D Clough1, A Kurz, D I Sessler
1Department of Anesthesia, University of California, San Francisco 94143-0648, USA.
Anesthesiology
|August 1, 1996
Summary
Thermoregulatory vasoconstriction does not affect forced-air warming efficacy in anesthetized patients. Anesthetic-induced vasodilation, not vasoconstriction, may explain differences in intraoperative and postoperative warming effectiveness.
Area of Science:
- Anesthesiology
- Physiology
- Thermoregulation
Background:
- Forced-air warming effectively increases core temperature intraoperatively.
- Postoperative warming efficacy is reportedly lower due to uniform vasoconstriction in hypothermic patients.
- Vasoconstriction reduces heat transfer by limiting cutaneous heat loss and peripheral-to-core heat flow.
Purpose of the Study:
- To test the hypothesis that thermoregulatory vasoconstriction decreases cutaneous heat transfer and restricts peripheral-to-core heat flow.
- To evaluate the impact of vasoconstriction on the efficacy of forced-air warming in anesthetized subjects.
Main Methods:
- Eight healthy male volunteers undergoing anesthesia were studied.
- Passive cooling to 33°C was followed by forced-air warming for 2 hours.
- Vasoconstriction was induced by reducing isoflurane, while vasodilation was maintained with sufficient isoflurane.
- Peripheral and core heat content changes were measured using thermocouples and core temperature.
Main Results:
- Cutaneous heat transfer was similar during vasoconstriction and vasodilation.
- Forced-air warming increased peripheral and core heat content comparably in both conditions.
- Core temperature increased at similar rates during vasoconstriction (1.2°C/h) and vasodilation (1.3°C/h).
Conclusions:
- The hypothesis that thermoregulatory vasoconstriction impairs forced-air warming was not confirmed.
- Anesthetic-induced vasodilation, rather than thermoregulatory vasoconstriction, may explain differences in warming efficacy.
- Further research into nonthermoregulatory anesthetic effects on warming is warranted.