Quantifying the Physiological and Biophysical Time-Course of Human Heat Adaptation
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Open Access
Type
ThesisThesis type
Doctor of PhilosophyAuthor/s
Lynch, Grant PatrickAbstract
The present thesis builds on existing work done in the field of human thermoregulation, with a specific focus on the impact of repeated heat exposures to a natural (acclimatisation) or artificial (acclimation) environment on physiological adaptation and heat stress risk. The aim ...
See moreThe present thesis builds on existing work done in the field of human thermoregulation, with a specific focus on the impact of repeated heat exposures to a natural (acclimatisation) or artificial (acclimation) environment on physiological adaptation and heat stress risk. The aim of the experimental study presented in chapter 3 was to model the independent influence of different environmental and personal parameters on predicted acclimatisation status throughout a representative year in Australia. Chapter 4 aimed to quantify the time course of changes in ωmax throughout 7 consecutive days of heat acclimation. Finally, chapter 5 aimed to develop a novel, non-invasive method to assess changes in physiological heat acclimation status in an at-home setting.
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See moreThe present thesis builds on existing work done in the field of human thermoregulation, with a specific focus on the impact of repeated heat exposures to a natural (acclimatisation) or artificial (acclimation) environment on physiological adaptation and heat stress risk. The aim of the experimental study presented in chapter 3 was to model the independent influence of different environmental and personal parameters on predicted acclimatisation status throughout a representative year in Australia. Chapter 4 aimed to quantify the time course of changes in ωmax throughout 7 consecutive days of heat acclimation. Finally, chapter 5 aimed to develop a novel, non-invasive method to assess changes in physiological heat acclimation status in an at-home setting.
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Date
2023Licence
Copyright All Rights ReservedRights statement
The author retains copyright of this thesis. It may only be used for the purposes of research and study. It must not be used for any other purposes and may not be transmitted or shared with others without prior permission.Faculty/School
Faculty of Medicine and Health, School of Health SciencesDepartment, Discipline or Centre
Movement SciencesAwarding institution
The University of SydneyShare