Why the study?
Does the hot water immersion test (HIT) compared to the cold pressor test (CPT) elicit different physiological and subjective pain responses in healthy volunteers?
Does the hot water immersion test (HIT) compared to the cold pressor test (CPT) elicit different physiological and subjective pain responses in healthy volunteers?
The hot water immersion test is a more appropriate model for tonic pain than the cold pressor test because it is less confounded by thermoregulatory baroreflex activity.
HIT may suit tonic pain studies better than CPT; extends evidence for its lower baroreflex confounding in volunteers.
The cold pressor test (CPT) is an empirically validated test commonly used in research on stress, pain and cardiovascular reactivity. Surprisingly, the equivalent test with water heated to noxious temperatures (hot water immersion test, HIT) has not been thoroughly investigated. The aim of the present study was to characterize the physiological effects and psychophysics of both tests and to analyze whether the autonomic responses are mainly induced by baroreflexes or a consequence of the pain experience itself. The study consisted of a single session including one CPT (4+/-0.2 degrees C) and one HIT (47+/-0.5 degrees C; cut-off point 5 min) trial performed on 30 healthy drug free volunteers aged 19-57 (median 24) yrs. The sequence of both trials was alternated and participants were randomly assigned to sequence order and parallelized with respect to gender. Physiological parameters (cardiovascular, respiratory and electrodermal activity) and subjective pain intensity were continuously monitored. In addition, pain detection and tolerance thresholds as well as pain unpleasantness were assessed. Both tests were comparable with regard to the time course and intensity of subjective pain. However, a significantly higher increase of blood pressure could be observed during the CPT when compared to the HIT. The HIT appears less confounded with thermoregulatory baroreflex activity and therefore seems to be a more appropriate model for tonic pain.
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Streff et al. (2009) studied this question.
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