1998Journal of Basic and Clinical Physiology and PharmacologyRequires access

Selective Brain Cooling and Thermoregulatory Set-Point

Michel Cabanac

Open publisher page 15 citations

Abstract

During heat stress, the function of selective brain cooling puts trunk core temperature in an open-loop situation. As a result, trunk core temperature deviates more than expected, while brain temperature remains lower than trunk temperature. Such an influence of selective brain cooling might explain why the set-point for temperature regulation was considered to be reset at higher values in various circumstances. In the present article it is argued that during muscular exercise and dehydration the set-point is not raised when core temperature is recorded on the tympanic membrane. During fever the set-point is raised less than would be expected from readings of rectal temperature. Data from experiments on humans are used to support and illustrate the claims.

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What this paper is about

During heat stress, the function of selective brain cooling puts trunk core temperature in an open-loop situation. As a result, trunk core temperature deviates more than expected, while brain temperature remains lower than trunk temperature. Such an influence of selective brain cooling might explain why the set-point for temperature regulation was considered to be reset at higher values in various circumstances. In the present article it is argued that during muscular exercise and dehydration the set-point is not raised when core temperature is recorded on the tympanic membrane. During fever the set-point is raised less than would be expected from readings of rectal temperature. Data from experiments on humans are used to support and illustrate the claims.

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Available abstract

During heat stress, the function of selective brain cooling puts trunk core temperature in an open-loop situation. As a result, trunk core temperature deviates more than expected, while brain temperature remains lower than trunk temperature. Such an influence of selective brain cooling might explain why the set-point for temperature regulation was considered to be reset at higher values in various circumstances. In the present article it is argued that during muscular exercise and dehydration the set-point is not raised when core temperature is recorded on the tympanic membrane. During fever the set-point is raised less than would be expected from readings of rectal temperature. Data from experiments on humans are used to support and illustrate the claims.

Key concepts: Set point, Core temperature, Core (optical fiber), Trunk, Set (abstract data type), Rectal temperature, Hyperthermia, Brain function

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