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This deck focuses on Pediatric Medical And Trauma Emergencies, giving you a quick way to review the definitions, rules, and examples that matter most for NREMT Paramedic Level.
Study Pediatric Medical And Trauma Emergencies in NREMT Paramedic 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 most common cause of cardiac arrest in pediatric patients?
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Respiratory failure leading to hypoxia. In pediatrics, cardiac arrest typically arises from progressive respiratory compromise causing oxygen deprivation to vital organs.
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This deck focuses on Pediatric Medical And Trauma Emergencies, giving you a quick way to review the definitions, rules, and examples that matter most for NREMT Paramedic 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: Respiratory failure leading to hypoxia. In pediatrics, cardiac arrest typically arises from progressive respiratory compromise causing oxygen deprivation to vital organs.
Answer: Oropharyngeal airway (OPA). OPA maintains airway patency in unconscious patients by preventing posterior tongue displacement without triggering reflexes.
Answer: Decreasing mental status with a silent chest. These signs indicate severe airflow obstruction, exhaustion, and hypoxia, signaling imminent respiratory collapse in asthma exacerbations.
Answer: Head injury. Head injuries predominate in pediatric trauma mortality due to the vulnerability of the developing brain and skull.
Answer: Isotonic crystalloid (normal saline or lactated Ringer's). Isotonic crystalloids effectively expand plasma volume and are compatible with pediatric physiology for shock resuscitation.
Answer: Benzodiazepine (e.g., midazolam or diazepam). Benzodiazepines enhance GABA-mediated inhibition to rapidly terminate prolonged seizure activity in prehospital settings.
Answer: Nasopharyngeal airway (NPA), if not contraindicated. NPA is tolerated in patients with preserved gag reflex as it bypasses the oropharynx and does not stimulate gagging.
Answer: Treat injuries, document objectively, and report per protocol. EMS protocols mandate patient stabilization, accurate documentation, and mandatory reporting to protect suspected abuse victims.
Answer: Secondary injury from hypoxia and hypotension. Hypoxia and hypotension exacerbate neuronal damage through ischemia and inflammation following the primary brain trauma.
Answer: Seizure with fever, no CNS infection, typically age 6 mo to 5 y. Febrile seizures occur due to rapid temperature elevation in neurologically normal children within this age range without infection.
Answer: Asystole or pulseless electrical activity (PEA). Pediatric arrests often stem from asphyxia, progressing to non-shockable rhythms rather than ventricular arrhythmias seen in adults.
Answer: Hypovolemic (hemorrhagic) shock. Trauma frequently leads to blood loss, resulting in inadequate circulating volume and tissue perfusion in children.
Answer: Intramuscular epinephrine. Epinephrine rapidly counters anaphylactic effects through vasoconstriction, bronchodilation, and cardiac stimulation in compromised patients.
Answer: Jaw-thrust maneuver with manual in-line stabilization. This technique opens the airway without hyperextending the neck, thereby preserving spinal alignment in trauma cases.
Answer: Posterior rib fractures. Posterior rib fractures in infants are highly specific for inflicted trauma, often from compressive or shaking forces.
Answer: Point-of-care blood glucose. Rapid glucose testing identifies reversible hypoglycemia, a frequent cause of altered consciousness in pediatric emergencies.
Answer: Hypoglycemia. Low blood sugar impairs cerebral glucose metabolism, commonly causing neurological symptoms in young children.
Answer: Drooling, dysphagia, tripod posture, and stridor. These symptoms result from acute supraglottic inflammation causing pain, obstruction, and compensatory positioning in epiglottitis.
Answer: Anterolateral thigh (vastus lateralis). The vastus lateralis provides optimal absorption and accessibility for rapid epinephrine delivery in pediatric emergencies.
Answer: Do not agitate; provide oxygen and prepare for advanced airway. Minimizing agitation prevents exacerbation of swelling, while oxygen support and airway readiness ensure safe management.
Answer: Tachycardia with delayed capillary refill. Children compensate for early shock through increased heart rate and vasoconstriction before blood pressure drops.
Answer: 300 mL. The bolus is calculated using the standard 20 mL/kg guideline for initial resuscitation in pediatric hypovolemic shock.
Answer: Nebulized epinephrine plus corticosteroid (e.g., dexamethasone). Nebulized epinephrine reduces laryngeal edema, while corticosteroids address underlying inflammation for sustained relief in severe croup.
Answer: Inhaled beta-2 agonist (albuterol). Beta-2 agonists like albuterol relax bronchial smooth muscle, rapidly alleviating acute bronchoconstriction in pediatric patients.
Answer: 20 mL/kg isotonic crystalloid. This volume restores intravascular fluid deficits in hypovolemic shock without risking overload in pediatric patients.