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Victor A Convertino

Showing results (51-60 of 186) with videos related to

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Frontiers in Physiology|November 30, 2011
Heart Rate Variability during Simulated Hemorrhage with Lower Body Negative Pressure in High and Low Tolerant SubjectsCarmen Hinojosa-Laborde, Caroline A Rickards, Kathy L Ryan, et al.
Frontiers in Physiology|July 30, 2014
Resting sympathetic baroreflex sensitivity in subjects with low and high tolerance to central hypovolemia induced by lower body negative pressureCarmen Hinojosa-Laborde, Kathy L Ryan, Caroline A Rickards, et al.
Shock (Augusta, Ga.)|December 10, 2009
Tracking central hypovolemia with ecg in humans: cautions for the use of heart period variability in patient monitoringKathy L Ryan, Caroline A Rickards, David A Ludwig, et al.
Experimental Biology and Medicine (Maywood, N.J.)|May 2, 2019
Physiological comparison of hemorrhagic shock and <math></math> O<sub>2</sub>max: A conceptual framework for defining the limitation of oxygen deliveryVictor A Convertino, Kristen R Lye, Natalie J Koons, et al.
American Journal of Physiology. Heart and Circulatory Physiology|December 29, 2018
Differentiating compensatory mechanisms associated with low tolerance to central hypovolemia in womenTaylor Elyse Schlotman, Kevin S Akers, Shawn C Nessen, et al.
Shock (Augusta, Ga.)|March 8, 2016
The Compensatory Reserve For Early and Accurate Prediction Of Hemodynamic Compromise: A Review of the Underlying PhysiologyVictor A Convertino, Michael D Wirt, John F Glenn, et al.
Critical Care Medicine|May 23, 2008
Autonomic compensation to simulated hemorrhage monitored with heart period variabilityWilliam H Cooke, Caroline A Rickards, Kathy L Ryan, et al.
Experimental Physiology|June 23, 2015
Fluid restriction during exercise in the heat reduces tolerance to progressive central hypovolaemiaZachary J Schlader, Daniel Gagnon, Eric Rivas, et al.
Transfusion|June 22, 2022
Identifying critical DO<sub>2</sub> with compensatory reserve during simulated hemorrhage in humansNatalie J Koons, Catherine D Moses, Patrick Thompson, et al.
The Journal of Trauma and Acute Care Surgery|August 28, 2014
Use of an impedance threshold device in spontaneously breathing patients with hypotension secondary to trauma: an observational cohort feasibility studyDavid Wampler, Victor A Convertino, Shannon Weeks, et al.
Pageof 19

Showing results (51-60 of 186) with videos related to

Sort By:
Pageof 19
Frontiers in Physiology|November 30, 2011
Heart Rate Variability during Simulated Hemorrhage with Lower Body Negative Pressure in High and Low Tolerant SubjectsCarmen Hinojosa-Laborde, Caroline A Rickards, Kathy L Ryan, et al.
Frontiers in Physiology|July 30, 2014
Resting sympathetic baroreflex sensitivity in subjects with low and high tolerance to central hypovolemia induced by lower body negative pressureCarmen Hinojosa-Laborde, Kathy L Ryan, Caroline A Rickards, et al.
Shock (Augusta, Ga.)|December 10, 2009
Tracking central hypovolemia with ecg in humans: cautions for the use of heart period variability in patient monitoringKathy L Ryan, Caroline A Rickards, David A Ludwig, et al.
Experimental Biology and Medicine (Maywood, N.J.)|May 2, 2019
Physiological comparison of hemorrhagic shock and <math></math> O<sub>2</sub>max: A conceptual framework for defining the limitation of oxygen deliveryVictor A Convertino, Kristen R Lye, Natalie J Koons, et al.
American Journal of Physiology. Heart and Circulatory Physiology|December 29, 2018
Differentiating compensatory mechanisms associated with low tolerance to central hypovolemia in womenTaylor Elyse Schlotman, Kevin S Akers, Shawn C Nessen, et al.
Shock (Augusta, Ga.)|March 8, 2016
The Compensatory Reserve For Early and Accurate Prediction Of Hemodynamic Compromise: A Review of the Underlying PhysiologyVictor A Convertino, Michael D Wirt, John F Glenn, et al.
Critical Care Medicine|May 23, 2008
Autonomic compensation to simulated hemorrhage monitored with heart period variabilityWilliam H Cooke, Caroline A Rickards, Kathy L Ryan, et al.
Experimental Physiology|June 23, 2015
Fluid restriction during exercise in the heat reduces tolerance to progressive central hypovolaemiaZachary J Schlader, Daniel Gagnon, Eric Rivas, et al.
Transfusion|June 22, 2022
Identifying critical DO<sub>2</sub> with compensatory reserve during simulated hemorrhage in humansNatalie J Koons, Catherine D Moses, Patrick Thompson, et al.
The Journal of Trauma and Acute Care Surgery|August 28, 2014
Use of an impedance threshold device in spontaneously breathing patients with hypotension secondary to trauma: an observational cohort feasibility studyDavid Wampler, Victor A Convertino, Shannon Weeks, et al.
Pageof 19