← All CCP Flashcard Decks

Blood Gas & Acid-Base Interpretation Flashcards

7 cards from real CCP practice questions. Tap to flip, then mark Knew It or Still Learning — missed cards come back until you master them.

Read the first 7 Blood Gas & Acid-Base Interpretation flashcards as text
  1. A patient on CPB has a PaCO2 of 35 mmHg at 37°C (alpha-stat). If body temperature is actually 28°C, what is the temperature-corrected PaCO2?

    Answer: Approximately 24 mmHg

    CO2 solubility increases with cooling, so temperature-corrected PaCO2 is lower (~24 mmHg) than the 37°C measurement in alpha-stat management.

  2. Which buffer system provides the most immediate response to an acute acid load in the blood?

    Answer: Bicarbonate-carbonic acid system

    The bicarbonate-carbonic acid system is the most important extracellular buffer and responds immediately to acute acid loads due to its open system with pulmonary CO2 elimination.

  3. A blood gas shows pH 7.52, PaCO2 28 mmHg, HCO3- 22 mEq/L. What is the primary disorder?

    Answer: Respiratory alkalosis uncompensated

    Low PaCO2 with high pH and near-normal HCO3- indicates uncompensated respiratory alkalosis; compensation would have lowered bicarbonate further.

  4. During hypothermic CPB at 20°C using pH-stat management, the perfusionist adds CO2 to the oxygenator. What is the primary intended effect?

    Answer: Maintain temperature-corrected pH at 7.40 and PaCO2 at 40 mmHg

    pH-stat management adds CO2 to correct for hypothermia-induced alkalosis, maintaining temperature-corrected pH 7.40 and PaCO2 40 mmHg.

  5. In a patient with chronic COPD, a blood gas shows pH 7.36, PaCO2 60 mmHg, HCO3- 33 mEq/L. This represents:

    Answer: Chronic respiratory acidosis with full metabolic compensation

    Elevated PaCO2 with proportionally elevated HCO3- and near-normal pH indicates chronic respiratory acidosis with full renal compensation.

  6. The Bohr effect describes which phenomenon important during CPB?

    Answer: Increased CO2 and acidosis shift the oxyhemoglobin dissociation curve right

    The Bohr effect states that increased CO2 and acidosis decrease hemoglobin's oxygen affinity, shifting the oxyhemoglobin dissociation curve rightward and facilitating oxygen unloading.

  7. A post-CPB patient has pH 7.30, PaCO2 40 mmHg, HCO3- 19 mEq/L, lactate 6 mmol/L. The expected respiratory compensation (Winter's formula) for this metabolic acidosis would be:

    Answer: PaCO2 of 30-34 mmHg

    Winter's formula: expected PaCO2 = 1.5 × HCO3- + 8 ± 2 = (1.5 × 19) + 8 ± 2 = 36.5 ± 2; the measured PaCO2 of 40 mmHg is higher, suggesting a concurrent respiratory acidosis.

Blood Gas & Acid-Base Interpretation Flashcards — CCP Study Cards with Answers