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Motion sickness potentiates core cooling during immersion in humans
I. Mekjavic
,
Mike Tipton
, M. Gennser
, O. Eiken
Research output
:
Contribution to journal
›
Article
›
peer-review
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INIS
accidents
11%
body temperature
11%
centrifuges
11%
control
44%
cooling
100%
hands
11%
heat losses
11%
humans
100%
hypothermia
11%
hypothesis
11%
levels
11%
males
11%
motion
100%
oxygen
11%
rectum
22%
skin
22%
survival time
11%
thermal comfort
11%
uptake
11%
vasoconstrictors
22%
water
11%
Engineering
Centrifuge
33%
Control Procedure
100%
Core Cooling
100%
Heat Losses
33%
Regular Interval
33%
Survival Time
33%
Thermal Comfort
33%
Psychology
Body Temperature
100%
Hypothermia
100%
Skin Temperature
100%
Medicine and Dentistry
Fingertip
22%
Head Movement
11%
Hypothermia
11%
Motion Sickness
100%
Oxygen Consumption
11%
Rectal Temperature
22%
Skin Temperature
11%
Survival Time
11%
Temperature Sense
11%
Vasoconstrictor
22%
Volunteer
11%
Nursing and Health Professions
Body Temperature
11%
Centrifuge
11%
Hypothermia
11%
Motion Sickness
100%
Oxygen Consumption
11%
Rectal Temperature
22%
Skin Temperature
11%
Survival Time
11%
Volunteer
11%