Acute hypoxia alters glucose tolerance in type 2 diabetes
Mackenzie, R.W.A., Hammond, E. and Watt, P.W. 2007. Acute hypoxia alters glucose tolerance in type 2 diabetes. The Endocrine Society 89th Annual Meeting. Toronto, Canada 02 - 05 Jun 2007
Mackenzie, R.W.A., Hammond, E. and Watt, P.W. 2007. Acute hypoxia alters glucose tolerance in type 2 diabetes. The Endocrine Society 89th Annual Meeting. Toronto, Canada 02 - 05 Jun 2007
Title | Acute hypoxia alters glucose tolerance in type 2 diabetes |
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Authors | Mackenzie, R.W.A., Hammond, E. and Watt, P.W. |
Type | Conference paper |
Year | 2007 |
Conference | The Endocrine Society 89th Annual Meeting |
Publication dates | |
Completed | 2007 |
High intensity exercise decreases IP6K1 muscle content & improves insulin sensitivity in glucose intolerant individuals
Naufahu, J., Elliott, B., Markiv, A., Dunning-Foreman, P., McGrady, M., Howard, D., Watt, P.W. and Mackenzie, R.W.A. 2018. High intensity exercise decreases IP6K1 muscle content & improves insulin sensitivity in glucose intolerant individuals. Journal of Clinical Endocrinology and Metabolism. 103 (4), pp. 1479-1490. https://doi.org/10.1210/jc.2017-02019
Acute hypoxia alters myotube size in vitro and myostatin signalling in vivo
Elliott, B., Renshaw, D., Getting, S.J., Watt, P.W. and MacKenzie, R. 2014. Acute hypoxia alters myotube size in vitro and myostatin signalling in vivo. FASEB. San Diego Jul 2015 Federation of American Societies for Experimental Biology.
Partial heat acclimation of athletes with spinal cord lesion
Castle, P.C., Pasan Kularatne, B., Brewer, J., Mauger, A.R., Austen, R.A., Tuttle, J.A., Sculthorpe, N., Mackenzie, R.W.A., Maxwell, N.S. and Webborn, A.D.J. 2013. Partial heat acclimation of athletes with spinal cord lesion. European Journal of Applied Physiology. 113 (1), pp. 109-115. https://doi.org/10.1007/s00421-012-2417-6
Concurrent resistance and aerobic exercise stimulates both myofibrillar and mitochondrial protein synthesis in sedentary middle-aged men
Donges, C.E., Burd, N.A., Duffield, R., Smith, G.C., West, D.D.W., Short, M.J., Mackenzie, R.W.A., Plank, L.D., Shepherd, P.R., Phillips, S.M. and Edge, J.A. 2012. Concurrent resistance and aerobic exercise stimulates both myofibrillar and mitochondrial protein synthesis in sedentary middle-aged men. Journal of Applied Physiology. 112 (12), pp. 1992-2001. https://doi.org/10.1152/japplphysiol.00166.2012
Intermittent exercise with and without hypoxia improves insulin sensitivity in individuals with type 2 diabetes
MacKenzie, R., Maxwell, N.S., Castle, P.C., Elliott, B., Brickley, G. and Watt, P.W. 2012. Intermittent exercise with and without hypoxia improves insulin sensitivity in individuals with type 2 diabetes. Journal of Clinical Endocrinology and Metabolism. 97 (4), pp. 46-55. https://doi.org/10.1210/jc.2011-2829
The effect of hypoxia and work intensity on insulin resistance in type 2 diabetes
Mackenzie, R.W.A., Elliott, B.T., Maxwell, N.S., Brickley, G. and Watt, P.W. 2012. The effect of hypoxia and work intensity on insulin resistance in type 2 diabetes. Journal of Clinical Endocrinology and Metabolism. 97 (1), pp. 155-162. https://doi.org/10.1210/jc.2011-1843
Heat acclimation improves intermittent sprinting in the heat but additional pre-cooling offers no further ergogenic effect
Castle, P.C., Mackenzie, R.W.A., Maxwell, N.S., Webborn, A.D.J. and Watt, P.W. 2011. Heat acclimation improves intermittent sprinting in the heat but additional pre-cooling offers no further ergogenic effect. Journal of Sports Sciences. 29 (11), pp. 1125-1134. https://doi.org/10.1080/02640414.2011.583673
Acute hypoxia and exercise improve insulin sensitivity (S(I) (2) *) in individuals with type 2 diabetes
Mackenzie, R.W.A., Maxwell, N.S., Castle, P.C., Brickley, G. and Watt, P.W. 2011. Acute hypoxia and exercise improve insulin sensitivity (S(I) (2) *) in individuals with type 2 diabetes. Diabetes - Metabolism: Research and Reviews. 27 (1), pp. 94-101. https://doi.org/10.1002/dmrr.1156
Acute hypoxia improves insulin sensitivity (SI2*) and β cell function in individuals with Type 2 Diabetes
Mackenzie, R.W.A., Elliott, B.T., Brickley, G. and Watt, P.W. 2010. Acute hypoxia improves insulin sensitivity (SI2*) and β cell function in individuals with Type 2 Diabetes. The Physiological Society. University of Manchester
Influence of hypohydration on intermittent sprint performance in the heat
Maxwell, N.S., Mackenzie, R.W.A. and Bishop, D. 2009. Influence of hypohydration on intermittent sprint performance in the heat. International Journal of Sports Physiology and Performance. 4 (1), pp. 54-67.
"I felt really inspired by it, it was really interesting to interact with the pupils": Active citizenship in the British undergraduate social science curriculum
Watt, P.W., Gifford, C., Koster, S. and Clark, W. 2009. "I felt really inspired by it, it was really interesting to interact with the pupils": Active citizenship in the British undergraduate social science curriculum. Greek Social Science Tribune - Special English Edition: From a National Identity to a European One. 14 (55), pp. 153-174.
Intermittent exercise decreases insulin resistance in the 48 hrs following exercise in individuals with type 2 diabetes
Mackenzie, R.W.A. and Watt, P.W. 2009. Intermittent exercise decreases insulin resistance in the 48 hrs following exercise in individuals with type 2 diabetes. Endocrine Society 91st Annual Meeting. Washington, DC 10 - 13 Jun 2009
Exercise and acute hypoxia improve insulin sensitivity (SI2*) in individuals with type 2 diabetes
Mackenzie, R.W.A. and Watt, P.W. 2009. Exercise and acute hypoxia improve insulin sensitivity (SI2*) in individuals with type 2 diabetes. Society for Endocrinology BES 2009. Harrogate 16 - 19 Mar 2009
Heat acclimation improves intermittent sprint performance in the heat, but additional pre-cooling is not further ergogenic
Castle, P.C., Mackenzie, R.W.A., Maxwell, N.S., Webborn, A.D.J. and Watt, P.W. 2009. Heat acclimation improves intermittent sprint performance in the heat, but additional pre-cooling is not further ergogenic. BASES Annual Conference. Leeds Metropolitan University 01 - 03 Sep 2009
Acute normobaric hypoxia stimulates erythropoietin release
Mackenzie, R.W.A., Watt, P.W. and Maxwell, N.S. 2008. Acute normobaric hypoxia stimulates erythropoietin release. High Altitude Medicine and Biology. 9 (1), pp. 28-37. https://doi.org/10.1089/ham.2007.1043
Increased carbon dioxide expiration in recovery from maximal exercise in children with cystic fibrosis
Brickley, G., Adams, A., Mackenzie, R.W.A., Lenton, J. and Seddon, P. 2006. Increased carbon dioxide expiration in recovery from maximal exercise in children with cystic fibrosis. American Thoracic Society International Conference. San Diego 19 - 24 May 2006
Physical activity and fitness in children with Cystic Fibrosis
Adams, A., Mackenzie, R.W.A., Lenton, J., Brickley, G. and Seddon, P. 2006. Physical activity and fitness in children with Cystic Fibrosis. Journal of Cystic Fibrosis. 5 (sup. 1), p. S80.
Physical activity and fitness in children with cystic fibrosis
Adams, A., Lenton, J., Brickley, G., Mackenzie, R.W.A. and Seddon, P. 2006. Physical activity and fitness in children with cystic fibrosis. 29th European Cystic Fibrosis Conference. Copenhagen, Denmark 15 - 18 Jun 2006
Invited Response – Levine, B D & Stray-Gundersen, J (2005). Comments on Point: Counterpoint "Positive effects of intermittent hypoxia (live high:train low) on exercise performance are/are not mediated primarily by augmented red cell volume"
Mackenzie, R.W.A. 2005. Invited Response – Levine, B D & Stray-Gundersen, J (2005). Comments on Point: Counterpoint "Positive effects of intermittent hypoxia (live high:train low) on exercise performance are/are not mediated primarily by augmented red cell volume". Journal of Applied Physiology. 99 (6), pp. 2453-2462. https://doi.org/10.1152/japplphysiol.01157.2005
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