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This deck focuses on Endocrine And Metabolic Emergencies, giving you a quick way to review the definitions, rules, and examples that matter most for NREMT AEMT Level.
Study Endocrine And Metabolic Emergencies 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 most appropriate initial field treatment for suspected adrenal crisis with shock?
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Treat shock with isotonic fluids and rapid transport. Fluids restore perfusion in hypotensive states while awaiting steroid replacement in hospital.
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This deck focuses on Endocrine And Metabolic Emergencies, 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: Treat shock with isotonic fluids and rapid transport. Fluids restore perfusion in hypotensive states while awaiting steroid replacement in hospital.
Answer: Diabetic ketoacidosis (DKA). Signs indicate ketosis, respiratory compensation for acidosis, and severe hyperglycemia.
Answer: Airway/ventilation support and isotonic fluid resuscitation. Addresses dehydration and respiratory compromise while definitive care is hospital-based.
Answer: Adrenal insufficiency (Addisonian crisis). Cortisol deficiency impairs gluconeogenesis and glycogenolysis, contributing to low blood sugar in crises.
Answer: Position, suction as needed, and provide ventilatory support. Prevents aspiration and ensures oxygenation in patients with decreased level of consciousness.
Answer: Diaphoresis with altered mental status. Hypoglycemia triggers sympathetic response causing sweating, while hyperglycemia typically presents with dry skin.
Answer: Glucagon per local protocol. It stimulates hepatic glycogenolysis to increase blood glucose when IV access is unobtainable.
Answer: Fruity (acetone) breath odor. Ketone metabolism produces acetone, which imparts a characteristic fruity smell to exhaled breath.
Answer: Older adults with type 2 diabetes mellitus. Elderly type 2 patients are prone due to comorbidities and impaired thirst response.
Answer: Hyperthermia, tachycardia, and altered mental status. Excess thyroid hormone causes hypermetabolism, fever, increased heart rate, and neurological changes.
Answer: Administer oral glucose (oral carbohydrate). Safe for conscious patients to quickly elevate glucose without invasive measures.
Answer: Kussmaul respirations (deep, rapid breathing). It compensates for acidosis by increasing CO2 elimination through hyperventilation.
Answer: Gradual onset over hours to days. DKA develops slowly from progressive insulin deficiency, unlike rapid hypoglycemic crises.
Answer: Severe hyperglycemia with profound dehydration and minimal ketosis. Extreme hyperglycemia causes osmotic diuresis and dehydration without significant ketone formation in type 2 diabetics.
Answer: Unable to protect airway or cannot swallow. Oral administration risks aspiration in patients with impaired airway protection or swallowing.
Answer: Insulin (unless specifically authorized by protocol/medical control). AEMTs lack authority for insulin in hyperglycemic crises to avoid complications like cerebral edema.
Answer: Insulin deficiency from pancreatic beta-cell failure. Type 1 diabetes results from autoimmune destruction of beta cells in the pancreas, leading to absolute insulin deficiency.
Answer: Hypothermia, bradycardia, hypotension, and altered mental status. Profound thyroid hormone deficiency leads to slowed metabolism, cold intolerance, cardiovascular depression, and coma.
Answer: Do not give oral glucose; manage airway and give IV dextrose/IM glucagon per protocol. Avoids aspiration risk in unconscious patients, prioritizing airway and alternative glucose administration.
Answer: Insulin deficiency causing ketosis and metabolic acidosis. Lack of insulin leads to fat breakdown, ketone production, and acid accumulation in type 1 diabetics.
Answer: Insulin resistance with relative insulin deficiency. Type 2 diabetes involves impaired insulin action at target tissues combined with inadequate compensatory insulin secretion.
Answer: IV dextrose per local protocol. Intravenous administration provides quick, controlled glucose delivery to reverse severe symptoms.
Answer: Blood glucose >250 mg/dL. This level indicates significant hyperglycemia, prompting assessment for conditions like DKA or HHS in symptomatic patients.
Answer: Oral glucose (oral carbohydrate). It rapidly raises blood glucose in alert patients without risking aspiration.
Answer: Blood glucose <60 mg/dL. Prehospital protocols often use this threshold to initiate treatment for symptomatic hypoglycemia in adults.