Key result
Postexercise forearm occlusion during passive heating significantly reduced the esophageal temperature threshold for sweating (0.16 vs 0.33°C) and cutaneous vasodilation (P<0.05).
Why the study?
Does muscle metaboreceptor activation via postexercise occlusion alter core temperature thresholds for sweating and cutaneous vascular responses during passive heating in humans?
Does muscle metaboreceptor activation via postexercise occlusion alter core temperature thresholds for sweating and cutaneous vascular responses during passive heating in humans?
Absolute Event Rate: 0.16% vs 0.33%
p-value: p=< 0.05
Muscle metaboreceptor activation in the forearm accelerates sweating and cutaneous vasodilation during passive heating by reducing core temperature thresholds.
Suggests metaboreceptor modulation of thermoregulation; leaves open clinical relevance in exercise-heat stress.
The present study investigated the role of muscle metaboreceptor activation on human thermoregulation by measuring core temperature thresholds and slopes for sweating and cutaneous vascular responses during passive heating associated with central and peripheral mechanisms. Six male and eight female subjects inserted their lower legs into hot water (43°C) while wearing a water perfusion suit on the upper body (34°C). One minute after immersion, an isometric handgrip exercise--40% of maximum voluntary contraction-was conducted for 1.5 min in both control and experimental conditions, while postexercise occlusion was performed in the experimental condition only for 9 min. The postexercise forearm occlusion during passive heating consistently stimulated muscle metaboreceptors, as implicated by significantly elevated mean arterial blood pressure throughout the experimental period (P <0.05). Stimulation of the forearm muscle metaboreceptors increased sweating and cutaneous vascular responses during passive heating, and was associated with significant reductions in esophageal temperature threshold of sweating and cutaneous vasodilation (Δ threshold, sweating: 0.33 ± 0.05 and 0.16 ± 0.04°C, cutaneous vascular conductance: 0.38 ± 0.08 and 0.16 ± 0.05°C for control and experimental groups, respectively, P < 0.05). The slopes of these responses were not different between the conditions. These results suggest that muscle metaboreceptor activation in the forearm accelerates sweating and cutaneous vasodilation during passive heating associated with a reduction in core temperature thresholds and may be related to central mechanisms controlling heat loss responses.
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Amano et al. (2015) studied this question. Postexercise forearm occlusion vs. Control condition (no occlusion) was evaluated on Esophageal temperature threshold of sweating (p=< 0.05). Postexercise forearm occlusion during passive heating significantly reduced the esophageal temperature threshold for sweating (0.16 vs 0.33°C) and cutaneous vasodilation (P<0.05).
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