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Electrical Therapy Principles Flashcards

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

Read the first 7 Electrical Therapy Principles flashcards as text
  1. Which waveform type is used by most modern defibrillators and requires less energy than older monophasic devices?

    Answer: Biphasic waveform

    Biphasic waveforms deliver current in two directions and are more effective at lower energy levels than monophasic waveforms.

  2. When performing transcutaneous pacing, the rate for a symptomatic bradycardia patient is typically set to:

    Answer: 60-80 bpm

    Transcutaneous pacing for symptomatic bradycardia is typically initiated at 60-80 bpm to restore adequate perfusion.

  3. A patient in ventricular fibrillation receives a shock but immediately returns to VF. What is the recommended next step?

    Answer: Resume CPR for 2 minutes then reassess rhythm

    After a failed shock, 2 minutes of high-quality CPR should resume to re-perfuse the myocardium before the next rhythm check.

  4. What term describes the minimum current needed to reliably capture the myocardium during transcutaneous pacing?

    Answer: Capture threshold

    Capture threshold is the minimum milliamp output needed to consistently depolarize the myocardium and produce a mechanical response.

  5. In synchronized cardioversion, the shock is timed to which part of the cardiac cycle?

    Answer: QRS complex

    Synchronized cardioversion delivers energy with the QRS complex to avoid the vulnerable T-wave period and prevent VF induction.

  6. A patient with stable supraventricular tachycardia at 180 bpm does not respond to vagal maneuvers or adenosine. What electrical therapy is appropriate?

    Answer: Synchronized cardioversion at 50-100J

    Stable SVT refractory to medications is treated with synchronized cardioversion starting at 50-100J.

  7. What is the PRIMARY danger of delivering a defibrillation shock in asynchronized mode to a patient in atrial flutter?

    Answer: Inducing ventricular fibrillation by shocking on the T wave

    Unsynchronized shocks during atrial flutter can coincide with the T wave's vulnerable period, triggering ventricular fibrillation.