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This deck focuses on Cardiac Arrest And Resuscitation, giving you a quick way to review the definitions, rules, and examples that matter most for NREMT AEMT Level.
Study Cardiac Arrest And Resuscitation in NREMT AEMT Level with focused flashcards that help you recognize the idea, recall the key rule, and apply it in practice-style prompts.
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What is the recommended interval for switching compressors to reduce fatigue during CPR?
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About every 2 minutes (every 5 cycles of 30:2). Regular switching prevents rescuer fatigue, ensuring consistent compression quality throughout resuscitation.
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This deck focuses on Cardiac Arrest And Resuscitation, giving you a quick way to review the definitions, rules, and examples that matter most for NREMT AEMT Level.
Work through these flashcards in short sessions. Try to answer each prompt before flipping the card, then revisit any cards you miss until the explanation feels automatic.
Answer: About every 2 minutes (every 5 cycles of 30:2). Regular switching prevents rescuer fatigue, ensuring consistent compression quality throughout resuscitation.
Answer: 200 J (then equal or higher for subsequent shocks). This energy level optimizes first-shock success for biphasic waveforms, with escalation for refractoriness.
Answer: Amiodarone 300 mg IV/IO bolus. Amiodarone stabilizes membranes and prolongs action potential to terminate refractory ventricular arrhythmias.
Answer: 360 J. Monophasic defibrillators require higher energy to achieve equivalent efficacy to biphasic devices.
Answer: 1 mg IV/IO. Epinephrine acts as a vasopressor to increase coronary and cerebral perfusion pressures during low-flow states.
Answer: Ventricular fibrillation and pulseless ventricular tachycardia. These rhythms respond to defibrillation as they involve chaotic or rapid ventricular activity that can be terminated by electrical shock.
Answer: Every 2 minutes. This interval allows assessment without prolonged CPR interruption, balancing rhythm identification with perfusion.
Answer: Asystole and pulseless electrical activity. These rhythms lack ventricular electrical activity suitable for defibrillation, requiring focus on identifying and treating underlying causes.
Answer: 100 to 120 compressions per minute. This rate ensures adequate cardiac output during CPR by mimicking normal heart rate while allowing full chest recoil.
Answer: Ventricular fibrillation (VF). VF is the most frequent initial rhythm in out-of-hospital cardiac arrests in adults, amenable to defibrillation to restore organized rhythm.
Answer: Every 3 to 5 minutes. This interval aligns with epinephrine's pharmacokinetics to maintain therapeutic levels without toxicity.
Answer: Organized ECG rhythm without a palpable pulse. PEA indicates electrical activity on ECG that should produce a pulse but does not due to underlying mechanical or metabolic issues.
Answer: Return of a palpable pulse with signs of perfusion. ROSC confirms restoration of effective cardiac output, distinguishing from transient or artifactual findings.
Answer: Lidocaine 1 to 1.5 mg/kg IV/IO. Lidocaine suppresses ventricular ectopy as an alternative when amiodarone is unavailable or contraindicated.
Answer: 2 to 2.4 inches (5 to 6 cm). Adequate depth compresses the heart sufficiently against the spine to generate blood flow without causing injury.
Answer: Less than 10 seconds. Minimizing pauses maintains coronary perfusion pressure, which is critical for successful resuscitation.
Answer: Resume CPR immediately and reassess rhythm in about 2 minutes. Continuing CPR maintains circulation in nonshockable rhythms while preparing for next rhythm assessment.
Answer: Prioritize CPR and ventilation; naloxone is not the initial priority. In cardiac arrest from opioids, restoring circulation and oxygenation takes precedence over reversal agents.
Answer: After the second shock (during the next CPR cycle). Timing allows initial defibrillation attempts before adding vasopressor support in the shockable algorithm.
Answer: Amiodarone 150 mg IV/IO bolus. The reduced second dose maintains efficacy while minimizing cumulative toxicity risks.
Answer: 30:2. This ratio balances circulation from compressions with oxygenation from ventilations in basic life support scenarios.
Answer: As soon as possible after IV/IO access is obtained. Early administration in nonshockable rhythms supports perfusion while addressing reversible causes.
Answer: 1 breath every 6 seconds (10 per minute). This rate provides sufficient oxygenation without causing hyperventilation or gastric distension in intubated patients.
Answer: Clear the patient and deliver the shock, then resume CPR immediately. Immediate shock delivery terminates shockable rhythms, followed by CPR to support circulation post-defibrillation.