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The effects of graded changes in oxygen and carbon dioxide tension on coronary blood velocity independent of myocardial energy demand.
In humans, coronary blood flow is tightly regulated by microvessels within the myocardium to match myocardial energy demand. However, …
Lindsey M Boulet
,
Mike Stembridge
,
Michael M Tymko
,
Joshua C Tremblay
,
Glen E Foster
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DOI
Role of CO2 in the cerebral hyperemic response to incremental normoxic and hyperoxic exercise.
Cerebral blood flow (CBF) is temporally related to exercise-induced changes in partial pressure of end-tidal carbon dioxide (PetCO2 ); …
Kurt J Smith
,
K W Wildfong
,
R L Hoiland
,
M Harper
,
N C Lewis
,
A Pool
,
S L Smith
,
T Kuca
,
G E Foster
,
P N Ainslie
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DOI
Measuring the human ventilatory and cerebral blood flow response to CO$_textrm2$: a technical consideration for the end-tidal-to-arterial gas gradient
Michael M Tymko
,
Ryan L Hoiland
,
Tomas Kuca
,
Lindsey M Boulet
,
Joshua C Tremblay
,
Bryenna K Pinske
,
Alexandra M Williams
,
Glen E Foster
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DOI
End tidal-to-arterial CO$_textrm2$ and O$_textrm2$ gas gradients at low- and high-altitude during dynamic end-tidal forcing.
We sought to characterize and quantify the performance of a portable dynamic end-tidal forcing (DEF) system in controlling the partial …
Michael M Tymko
,
Philip N Ainslie
,
David B MacLeod
,
Chris K Willie
,
Glen E Foster
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DOI
High on altitude: new attitudes toward human cerebral blood flow regulation and altitude acclimatization
Glen E. Foster
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DOI
Effects of enhanced human chemosensitivity on ventilatory responses to exercise.
It is not clear what the effects of different types of intermittent hypoxia have on human exercise ventilation. The purpose of this …
Glen E Foster
,
Donald C McKenzie
,
A William Sheel
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