BACKGROUND: The arterial pulse pressure variation induced by mechanical ventilation (Delta PP) has been shown to be a predictor of fluid responsiveness. Until now, Delta PP has had to be calculated offline (from a computer recording or a paper printing of the arterial pressure curve), or to be derived from specific cardiac output monitors, limiting the widespread use of this parameter. Recently, a method has been developed for the automatic calculation and real-time monitoring of Delta PP using standard bedside monitors. Whether this method is to predict reliable predictor of fluid responsiveness remains to be determined. METHODS: We conducted a prospective clinical study in 59 mechanically ventilated patients in the postoperative period of...
OBJECTIVE: To determine the utility of pulse pressure variation (DRESPPP) in predicting fluid respon...
Abstract Background Functional hemodynamic parameters such as stroke volume and pulse pressure varia...
OBJECTIVE: To determine the utility of pulse pressure variation (DRESPPP) in predicting fluid respon...
BACKGROUND: The arterial pulse pressure variation induced by mechanical ventilation (Delta PP) has b...
Background: It has been shown that ventilation-induced pulse pressure variation (PPV) is a better va...
Background: It has been shown that ventilation-induced pulse pressure variation (PPV) is a better va...
OBJECTIVE: To compare variations of plethysmographic wave amplitude (ΔPpleth) and to determine ...
OBJECTIVE: To compare variations of plethysmographic wave amplitude (ΔPpleth) and to determine ...
Problem: Optimized fluid management reduces morbidity and mortality in major operations, including c...
Background: Functional hemodynamic parameters such as stroke volume and pulse pressure variation (SV...
PURPOSE: The aim of this study is to study the feasibility, safety, and physiological effects of pul...
OBJECTIVE: To compare variations of plethysmographic wave amplitude (ΔPpleth) and to determine ...
Background: Functional hemodynamic parameters such as stroke volume and pulse pressure variation (SV...
Background. In this study we quantify the ability of dynamic cardiovascular parameters measured by t...
Item does not contain fulltextBACKGROUND: Pulse pressure variation (PPV) and systolic pressure varia...
OBJECTIVE: To determine the utility of pulse pressure variation (DRESPPP) in predicting fluid respon...
Abstract Background Functional hemodynamic parameters such as stroke volume and pulse pressure varia...
OBJECTIVE: To determine the utility of pulse pressure variation (DRESPPP) in predicting fluid respon...
BACKGROUND: The arterial pulse pressure variation induced by mechanical ventilation (Delta PP) has b...
Background: It has been shown that ventilation-induced pulse pressure variation (PPV) is a better va...
Background: It has been shown that ventilation-induced pulse pressure variation (PPV) is a better va...
OBJECTIVE: To compare variations of plethysmographic wave amplitude (ΔPpleth) and to determine ...
OBJECTIVE: To compare variations of plethysmographic wave amplitude (ΔPpleth) and to determine ...
Problem: Optimized fluid management reduces morbidity and mortality in major operations, including c...
Background: Functional hemodynamic parameters such as stroke volume and pulse pressure variation (SV...
PURPOSE: The aim of this study is to study the feasibility, safety, and physiological effects of pul...
OBJECTIVE: To compare variations of plethysmographic wave amplitude (ΔPpleth) and to determine ...
Background: Functional hemodynamic parameters such as stroke volume and pulse pressure variation (SV...
Background. In this study we quantify the ability of dynamic cardiovascular parameters measured by t...
Item does not contain fulltextBACKGROUND: Pulse pressure variation (PPV) and systolic pressure varia...
OBJECTIVE: To determine the utility of pulse pressure variation (DRESPPP) in predicting fluid respon...
Abstract Background Functional hemodynamic parameters such as stroke volume and pulse pressure varia...
OBJECTIVE: To determine the utility of pulse pressure variation (DRESPPP) in predicting fluid respon...