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American Journal of Physiology. Heart and Circulatory Physiology|April 9, 2017
Shear-mediated dilation of the internal carotid artery occurs independent of hypercapniaRyan L Hoiland, Kurt J Smith, Howard H Carter, et al.American Journal of Physiology. Endocrinology and Metabolism|September 21, 2020
Visualizing and quantifying cutaneous microvascular reactivity in humans by use of optical coherence tomography: impaired dilator function in diabetesRaden Argarini, Robert A McLaughlin, Simon Z Joseph, et al.European Journal of Applied Physiology|February 9, 2018
Localised cutaneous microvascular adaptation to exercise training in humansCeri L Atkinson, Howard H Carter, Dick H J Thijssen, et al.Experimental Physiology|February 11, 2018
UBC-Nepal expedition: The use of oral antioxidants does not alter cerebrovascular function at sea level or high altitudeAlexander B Hansen, Ryan L Hoiland, Nia C S Lewis, et al.Journal of Science and Medicine in Sport|September 12, 2019
Land- versus water-walking interventions in older adults: Effects on body compositionLouise H Naylor, Barbara A Maslen, Kay L Cox, et al.Microvascular Research|March 27, 2017
Reproducibility of four frequently used local heating protocols to assess cutaneous microvascular functionKirsty A Roberts, Thijs van Gent, Nicola D Hopkins, et al.The Journal of Physiology|April 27, 2019
UBC-Nepal expedition: phenotypical evidence for evolutionary adaptation in the control of cerebral blood flow and oxygen delivery at high altitudeRyan L Hoiland, Connor A Howe, Howard H Carter, et al.Temperature (Austin, Tex.)|March 5, 2025
Physiological response to exercise in the heat: Implications for risk mitigation and adaptationJesse L Criddle, Kristanti W Wigati, Joao Carlos Locatelli, et al.Experimental Physiology|October 25, 2025
Sex differences in cerebral blood flow and cardiac function in response to exercise in the heatJoão Carlos Locatelli, Juliene G Costa, Kristanti W Wigati, et al.Experimental Physiology|August 15, 2019
UBC-Nepal Expedition: Haemoconcentration underlies the reductions in cerebral blood flow observed during acclimatization to high altitudeConnor A Howe, Philip N Ainslie, Joshua C Tremblay, et al.Pageof 6