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European Journal of Applied Physiology
|
March 15, 2005
The effect of inspiratory muscle training upon maximum lactate steady-state and blood lactate concentration
Alison K McConnell, Graham R Sharpe
Pediatric Dermatology
|
October 6, 2004
Hydroa vacciniforme with oral mucosal involvement
Paul D Yesudian, Graham R Sharpe
European Journal of Applied Physiology
|
February 2, 2006
Maximal voluntary hyperpnoea increases blood lactate concentration during exercise
Michael A Johnson, Graham R Sharpe, Alison K McConnell
European Journal of Applied Physiology
|
September 18, 2007
Inspiratory muscle training improves cycling time-trial performance and anaerobic work capacity but not critical power
Michael A Johnson, Graham R Sharpe, Peter I Brown
Respiratory Physiology & Neurobiology
|
March 7, 2014
Determinants of inspiratory muscle strength in healthy humans
Peter I Brown, Michael A Johnson, Graham R Sharpe
European Journal of Applied Physiology
|
October 4, 2011
Inspiratory muscle training abolishes the blood lactate increase associated with volitional hyperpnoea superimposed on exercise and accelerates lactate and oxygen uptake kinetics at the onset of exercise
Peter I Brown, Graham R Sharpe, Michael A Johnson
Medicine and Science in Sports and Exercise
|
December 10, 2009
Loading of trained inspiratory muscles speeds lactate recovery kinetics
Peter I Brown, Graham R Sharpe, Michael A Johnson
European Journal of Applied Physiology
|
June 19, 2008
Inspiratory muscle training reduces blood lactate concentration during volitional hyperpnoea
Peter I Brown, Graham R Sharpe, Michael A Johnson
Respiratory Physiology & Neurobiology
|
August 19, 2025
Effects of prior self-control exertion on breathing effort during inspiratory loading
Michael A Johnson, Graham R Sharpe, James C Brown, et al.
The Journal of Investigative Dermatology
|
February 27, 2003
Human keratinocytes express multiple P2Y-receptors: evidence for functional P2Y1, P2Y2, and P2Y4 receptors
Helen E Burrell, Wayne B Bowler, James A Gallagher, et al.
Page
of 4
Search research articles
Search
Showing results (1-10 of 32) with videos related to
Sort By:
Page
of 4
European Journal of Applied Physiology
|
March 15, 2005
The effect of inspiratory muscle training upon maximum lactate steady-state and blood lactate concentration
Alison K McConnell, Graham R Sharpe
Pediatric Dermatology
|
October 6, 2004
Hydroa vacciniforme with oral mucosal involvement
Paul D Yesudian, Graham R Sharpe
European Journal of Applied Physiology
|
February 2, 2006
Maximal voluntary hyperpnoea increases blood lactate concentration during exercise
Michael A Johnson, Graham R Sharpe, Alison K McConnell
European Journal of Applied Physiology
|
September 18, 2007
Inspiratory muscle training improves cycling time-trial performance and anaerobic work capacity but not critical power
Michael A Johnson, Graham R Sharpe, Peter I Brown
Respiratory Physiology & Neurobiology
|
March 7, 2014
Determinants of inspiratory muscle strength in healthy humans
Peter I Brown, Michael A Johnson, Graham R Sharpe
European Journal of Applied Physiology
|
October 4, 2011
Inspiratory muscle training abolishes the blood lactate increase associated with volitional hyperpnoea superimposed on exercise and accelerates lactate and oxygen uptake kinetics at the onset of exercise
Peter I Brown, Graham R Sharpe, Michael A Johnson
Medicine and Science in Sports and Exercise
|
December 10, 2009
Loading of trained inspiratory muscles speeds lactate recovery kinetics
Peter I Brown, Graham R Sharpe, Michael A Johnson
European Journal of Applied Physiology
|
June 19, 2008
Inspiratory muscle training reduces blood lactate concentration during volitional hyperpnoea
Peter I Brown, Graham R Sharpe, Michael A Johnson
Respiratory Physiology & Neurobiology
|
August 19, 2025
Effects of prior self-control exertion on breathing effort during inspiratory loading
Michael A Johnson, Graham R Sharpe, James C Brown, et al.
The Journal of Investigative Dermatology
|
February 27, 2003
Human keratinocytes express multiple P2Y-receptors: evidence for functional P2Y1, P2Y2, and P2Y4 receptors
Helen E Burrell, Wayne B Bowler, James A Gallagher, et al.
Page
of 4