act metabolically as well ,creatinga combined respiratory and metabolic acidosis
cessation of pulmonary gas exchange and the development of anaerobic cellular metabolism respectively(passive) caused bycombined respiratory and metabolic acidosis
Kidneys and lungs are knownto causemetabolic and respiratory acidosis respectively
Rapid transfusion of bloodinitially causescombined respiratory and metabolic acidosis
As the patient is warmed , Co2 production increases and lactate is flushed from previously constricted vascular bedscausinga combined metabolic and respiratory acidosis
if kidneys functional ) decrease HCO3- synthesis decrease H+ excretion if severe , HCl infusion Respiratory failure that resulted in decrease delivery of oxygen to the tissues of the body and decreased removal of carbon dioxide from the bodycan resultin a combined metabolic and respiratory acidosis
a HIGH respiratory rateto preventcombined metabolic and respiratory acidosis
APPS THAT DO THE JOB : ABG ( free ) = input values for pH , pCO2 , HCO3 and pO2 to getresultmetabolic and respiratory acidosis
establish an airwayto preventmetabolic and respiratory acidosis
epinephrine in this model of local anesthetic toxicity(passive) caused bycombined respiratory and metabolic derangements
a metabolic acidosis secondary to lactic acidosis from systemic ischaemiaCausesa metabolic acidosis secondary to lactic acidosis from systemic ischaemia
to coma and deathleadingto coma and death
pulmonary vasoconstriction ... resulting in impaired endothelial and epithelial integrity with leakage of proteinaceous exudate and formation of hyaline membranes ( hence the namecausepulmonary vasoconstriction ... resulting in impaired endothelial and epithelial integrity with leakage of proteinaceous exudate and formation of hyaline membranes ( hence the name
muscle performance in different waysmay influencemuscle performance in different ways
to hyperkalemia due to the displacement of K+ from cells by H+can ... leadto hyperkalemia due to the displacement of K+ from cells by H+
in increased pulmonary vascular resistance preventing the increase of blood flow through the lungsresultsin increased pulmonary vascular resistance preventing the increase of blood flow through the lungs
increased activity of pH - dependent enzymes in glycolytic pathway that promotes lactate productioncausesincreased activity of pH - dependent enzymes in glycolytic pathway that promotes lactate production
to increased endogenous lactic acid productioncould leadto increased endogenous lactic acid production
albumin to liberate H+causesalbumin to liberate H+
decrease in ionized calciumcausedecrease in ionized calcium