Related Experiment Video
Updated: May 19, 2026

Quantitative Autonomic Testing
Published on: July 19, 2011
Quantification of head sweating during rest and exercise in the heat
Catherine O'Brien1, Bruce S Cadarette
1Thermal and Mountain Medicine Division, US Army Research Institute of Environmental Medicine, Kansas Street, Building 42, Natick, MA 01760-5007, USA. kate.obrien@us.army.mil
Abstract:
The head's capacity for evaporative heat loss is important for design of protective helmets for use in hot environments. This study quantified head sweating rate (m (sw)) in eight males during rest and exercise at three metabolic rates (338 ± 36, 481 ± 24, 622 ± 28 W) in hot-dry (HD: 45 °C, 21 % RH) and hot-wet (HW: 35 °C, 69 % RH) conditions (matched at 31.6 °C WBGT), which were counterbalanced. Heads were shaved, and surface area was (458 ± 61 cm(2)) measured by 3D scanner. For measurement of head m (sw), dry air was passed through a sealed helmet, whereas for forearm m (sw) a capsule (15.9 cm(2)) was ventilated with ambient air. Evaporation rate was determined from the increase in vapor pressure in the exiting air. Whole-body sweat loss was calculated from the change in nude weight plus fluid intake and corrected for respiratory fluid losses. Head m (sw) increased (p = 0.001) with metabolic rate, and was lower (p = 0.018) in HD (0.4 ± 0.2 mg cm(-2) min(-1) at rest to 1.1 ± 0.6 mg cm(-2) min(-1) at 622 W), compared to HW (0.5 ± 0.3-1.4 ± 0.8 mg cm(-2) min(-1)). Forearm m (sw) increased (p < 0.001) with metabolic rate, but was higher (p = 0.002) in HD (0.4 ± 0.3-1.4 ± 0.7 mg cm(-2) min(-1)) than HW (0.1 ± 0.1-1.1 ± 0.3 mg cm(-2) min(-1)). Whole-body sweat loss was not significantly different (p = 0.06) between HD (647 ± 139 g m(-2) h(-1)) and HW (528 ± 189 g m(-2) h(-1)). This study demonstrates the importance of the head for evaporative heat loss, particularly for populations who wear protective clothing which can impair vapor transfer from the skin.
Related Concept Videos
Quantifying Heat
Assessing Body Temperature - Axilla
Step 1: Perform hand hygiene and put on clean gloves to maintain infection control and prevent cross-contamination.
Step 2: Prepare the patient by explaining the procedure to ensure understanding and cooperation. Ensure privacy, expose the axilla, and inform the patient that minimal movement is crucial for an accurate reading.
Step 3: Adjust the patient’s clothing to expose only the axilla. It minimizes...
Assessing Body Temperature - Temporal Artery
Step 1: Perform hand hygiene and don a fresh pair of gloves to prevent cross-infection and ensure patient safety.
Step 2: Explain the procedure to the patient to establish trust. Clear communication establishes trust with the patient, ensures they understand what to expect, promotes cooperation, and enhances comfort during the procedure.
Step 3: Assess the patient's forehead...
Body Temperature
Body Temperature
The average body temperature is approximately 37°C (98.6°F) and typically ranges from 36.1–37.2°C (97–99°F), remaining relatively stable...
Assessing Body Temperature - Oral
Step 1:
Start by practicing proper hand hygiene to prevent the spread of microorganisms.
Step 2:
Take the thermometer out of the charging unit, switch it on, and wait for the ready sign.
Step 3:
Gently slide the probe cover until a click is heard. This simple action prevents cross-contamination and ensures the correct placement of the probe cover.
Step 4:
Instruct the patient to open their mouth and place...
