Search research articles
Contact Us
Filters
Showing results (21-30 of 45) with videos related to
Page
of 5
Sort By:
Aviation, Space, and Environmental Medicine
|
December 29, 2004
Residence at moderate altitude improves ventilatory response to high altitude
Stephen R Muza, Paul B Rock, Michael F Zupan, et al.
High Altitude Medicine & Biology
|
March 30, 2013
Efficacy of residence at moderate versus low altitude on reducing acute mountain sickness in men following rapid ascent to 4300 m
Janet E Staab, Beth A Beidleman, Stephen R Muza, et al.
Physiological Reports
|
October 30, 2019
New metric of hypoxic dose predicts altitude acclimatization status following various ascent profiles
Beth A Beidleman, Charles S Fulco, Allen Cymerman, et al.
Medicine and Science in Sports and Exercise
|
November 16, 2018
Two-Day Residence at 2500 m to 4300 m Does Not Affect Subsequent Exercise Performance at 4300 m
Robert W Kenefick, Beth A Beidleman, Sean P Andrew, et al.
Physiological Reports
|
February 8, 2022
Acute mountain sickness and sleep disturbances differentially influence cognition and mood during rapid ascent to 3000 and 4050 m
Peter S Figueiredo, Ingrid V Sils, Janet E Staab, et al.
Medicine and Science in Sports and Exercise
|
September 5, 2015
Quantitative Model of Sustained Physical Task Duration at Varying Altitudes
Beth A Beidleman, Charles S Fulco, Mark J Buller, et al.
American Journal of Physiology. Regulatory, Integrative and Comparative Physiology
|
December 3, 2010
Effect of repeated normobaric hypoxia exposures during sleep on acute mountain sickness, exercise performance, and sleep during exposure to terrestrial altitude
Charles S Fulco, Stephen R Muza, Beth A Beidleman, et al.
Medicine and Science in Sports and Exercise
|
May 23, 2009
Intermittent hypoxic exposure does not improve endurance performance at altitude
Beth A Beidleman, Stephen R Muza, Charles S Fulco, et al.
Brain and Behavior
|
April 22, 2016
Evidence for cerebral edema, cerebral perfusion, and intracranial pressure elevations in acute mountain sickness
Dana M DiPasquale, Stephen R Muza, Andrea M Gunn, et al.
Medicine and Science in Sports and Exercise
|
March 7, 2002
Substrate oxidation is altered in women during exercise upon acute altitude exposure
Beth A Beidleman, Paul B Rock, Stephen R Muza, et al.
Page
of 5
Search research articles
Search
Showing results (21-30 of 45) with videos related to
Sort By:
Page
of 5
Aviation, Space, and Environmental Medicine
|
December 29, 2004
Residence at moderate altitude improves ventilatory response to high altitude
Stephen R Muza, Paul B Rock, Michael F Zupan, et al.
High Altitude Medicine & Biology
|
March 30, 2013
Efficacy of residence at moderate versus low altitude on reducing acute mountain sickness in men following rapid ascent to 4300 m
Janet E Staab, Beth A Beidleman, Stephen R Muza, et al.
Physiological Reports
|
October 30, 2019
New metric of hypoxic dose predicts altitude acclimatization status following various ascent profiles
Beth A Beidleman, Charles S Fulco, Allen Cymerman, et al.
Medicine and Science in Sports and Exercise
|
November 16, 2018
Two-Day Residence at 2500 m to 4300 m Does Not Affect Subsequent Exercise Performance at 4300 m
Robert W Kenefick, Beth A Beidleman, Sean P Andrew, et al.
Physiological Reports
|
February 8, 2022
Acute mountain sickness and sleep disturbances differentially influence cognition and mood during rapid ascent to 3000 and 4050 m
Peter S Figueiredo, Ingrid V Sils, Janet E Staab, et al.
Medicine and Science in Sports and Exercise
|
September 5, 2015
Quantitative Model of Sustained Physical Task Duration at Varying Altitudes
Beth A Beidleman, Charles S Fulco, Mark J Buller, et al.
American Journal of Physiology. Regulatory, Integrative and Comparative Physiology
|
December 3, 2010
Effect of repeated normobaric hypoxia exposures during sleep on acute mountain sickness, exercise performance, and sleep during exposure to terrestrial altitude
Charles S Fulco, Stephen R Muza, Beth A Beidleman, et al.
Medicine and Science in Sports and Exercise
|
May 23, 2009
Intermittent hypoxic exposure does not improve endurance performance at altitude
Beth A Beidleman, Stephen R Muza, Charles S Fulco, et al.
Brain and Behavior
|
April 22, 2016
Evidence for cerebral edema, cerebral perfusion, and intracranial pressure elevations in acute mountain sickness
Dana M DiPasquale, Stephen R Muza, Andrea M Gunn, et al.
Medicine and Science in Sports and Exercise
|
March 7, 2002
Substrate oxidation is altered in women during exercise upon acute altitude exposure
Beth A Beidleman, Paul B Rock, Stephen R Muza, et al.
Page
of 5