# A nurse is caring for a 30-year-old client who sustained a femur fracture 36 hours ago and is now experiencing severe chest pain, dyspnea, and confusion. Vital signs show: temperature 100.8°F (38.2°C), heart rate 115 bpm, respiratory rate 30/min, blood pressure 95/65 mmHg, and oxygen saturation 85% on room air. What is the nurse's priority action?

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## 문제

A nurse is caring for a 30-year-old client who sustained a femur fracture 36 hours ago and is now experiencing severe chest pain, dyspnea, and confusion. Vital signs show: temperature 100.8°F (38.2°C), heart rate 115 bpm, respiratory rate 30/min, blood pressure 95/65 mmHg, and oxygen saturation 85% on room air. What is the nurse's priority action?

A 25-year-old client was admitted with a closed femur fracture following a motorcycle accident. The fracture was stabilized with internal fixation 48 hours ago. The client now reports sudden onset of severe chest pain and difficulty breathing.

## 보기

1. Administer high-flow oxygen immediately **✔ 정답**
2. Obtain a 12-lead electrocardiogram
3. Prepare the client for chest X-ray
4. Administer prescribed pain medication

**정답: 1**

## 해설

The patient exhibits signs of fat embolism syndrome (FES) with severe hypoxemia (SpO2 85%). The priority is immediate high-flow oxygen administration to address life-threatening hypoxemia per ABC principles. Other options are diagnostic or less urgent in this emergency.

## 심화 해설

Understanding the Clinical Scenario

The client is a young adult with a long bone (femur) fracture who, after a latent period of 36 to 48 hours, develops the classic triad of fat embolism syndrome (FES): acute respiratory distress, neurological changes, and a petechial rash (though the rash is not mentioned here, its absence does not rule out FES). The vital signs — tachycardia (HR 115 bpm), tachypnea (RR 30/min), hypotension (BP 95/65 mmHg), fever (T 100.8°F), and critically, oxygen saturation of 85% on room air — point to a severe ventilation-perfusion mismatch and impending respiratory failure. This presentation is a medical emergency. FES is a clinical diagnosis of exclusion, supported by criteria such as Gurd's criteria, and its early recognition is paramount to reducing preventable mortality [1]. The priority is to stabilize the client's immediate life-threatening physiological derangement.

Analysis of Options

The nurse must apply the ABC (Airway, Breathing, Circulation) priority-setting framework. The client's airway is currently patent, but breathing and circulation are severely compromised.

- Option 1 (Correct): Administer high-flow oxygen immediately. The critical hypoxemia (SpO2 85%) indicates severe respiratory distress, the most immediate threat to life in FES. The primary pathophysiological mechanism is the mechanical obstruction of pulmonary microvasculature by fat globules, coupled with a biochemical inflammatory cascade that damages the alveolar-capillary membrane, leading to non-cardiogenic pulmonary edema and acute respiratory distress syndrome (ARDS) [1,4]. High-flow oxygen delivery is the first and most critical intervention to support oxygenation and tissue perfusion while preparing for further management, which may include mechanical ventilation.

- Option 2: Obtain a 12-lead electrocardiogram. While an ECG is a valuable diagnostic tool to rule out other causes of chest pain and dyspnea, such as a myocardial infarction, it is not the priority action. The client’s severe hypoxemia must be addressed first. The ECG findings in FES are often nonspecific, showing sinus tachycardia or right heart strain patterns, but obtaining it should not delay oxygen administration.

- Option 3: Prepare the client for chest X-ray. A chest X-ray is a key diagnostic step in the workup for FES and may show diffuse bilateral infiltrates consistent with ARDS. However, radiographic changes often lag behind the clinical presentation and can be normal in the early stages [1]. This is an important secondary intervention for diagnosis, not the immediate priority for a client with an SpO2 of 85%.

- Option 4: Administer prescribed pain medication. Pain management is a crucial component of care for a fracture patient. However, in this scenario, the sudden onset of severe chest pain and dyspnea is not primarily due to the fracture site pain but to the evolving fat embolism syndrome. While opioid analgesics might be considered, administering them before stabilizing the client’s respiratory status could lead to respiratory depression and a catastrophic deterioration. The priority is to correct the life-threatening hypoxemia.

Deep Dive into Fat Embolism Syndrome (FES)

FES is a rare but potentially fatal complication, most commonly occurring in young adults following traumatic long bone fractures, particularly of the femur [1,4]. The incidence is low, but the mortality can be significant, with a recent cohort study reporting a mortality rate of 14.3% among those who develop the syndrome [4]. The pathophysiology is biphasic: an initial mechanical phase where fat droplets from the bone marrow enter the venous system and lodge in the pulmonary capillaries, followed by a biochemical phase where the fat is broken down into toxic free fatty acids, causing a severe systemic inflammatory response and endothelial damage [1]. This explains the multi-system presentation affecting the lungs, brain, and skin. The latent period of 24 to 72 hours post-injury is a hallmark feature, as fat emboli are released and the inflammatory cascade develops [1]. Neurological manifestations, such as the confusion seen in this client, can range from mild agitation to coma and are a result of cerebral fat emboli, which can sometimes present as paroxysmal sympathetic hyperactivity . The cornerstone of management remains supportive care, centered on early recognition, aggressive respiratory support with supplemental oxygen and mechanical ventilation as needed, and meticulous fluid management to maintain hemodynamic stability. There is no specific antidote for FES, making the nurse's role in early detection and immediate initiation of supportive measures — beginning with high-flow oxygen — the most critical factor in a positive outcome.References (research sources)

- [1]Fat Embolism Syndrome: A Case Series from a Single Tertiary Care Hospital.Case reportBorgohain B, Naveen AS, Khonglah TG. (2026) · DOI: 10.13107/jocr.2026.v16.i06.7418

- [4]Incidence, mortality, and factors associated with fat embolism syndrome in patients with long bone fractures at a trauma referral center in Bogotá, Colombia: 2016-2019 and 2022-2023.Research articleBernal OYG, Lozano NRC, Cordero JFB, Tenjo EAA, Lazaro JS, Acosta DCB, Aguilera CSQ, Valero JDG, Bautista LAG, Rico DLG, Niño AP. (2026) · DOI: 10.1007/s00068-026-03104-9

## 임상 시나리오

Fat Embolism Syndrome: Immediate Nursing ActionPrioritizing ABCs in Acute Respiratory Distress
For a client with a long bone fracture and sudden onset of severe dyspnea and confusion, suspect Fat Embolism Syndrome (FES). The hallmark is the triad of respiratory distress, neurological changes, and petechial rash.

The immediate priority is to correct life-threatening hypoxemia. Apply the ABC framework: administer high-flow oxygen to target an SpO2 above 90% before any diagnostic tests.

CautionDo not delay oxygen administration for an ECG or chest X-ray. Respiratory failure from FES can progress rapidly, and severe hypoxemia is the primary cause of early mortality.

## 핵심 개념

- **Fat Embolism Syndrome (FES)** — A serious complication following long bone fractures where fat globules enter the bloodstream, causing mechanical and chemical damage to pulmonary and cerebral vasculature, leading to respiratory failure and neurological symptoms.
- **ABC Priority Framework** — A triage and assessment framework prioritizing Airway, Breathing, and Circulation to identify and manage the most immediate life-threatening conditions first.
- **Hypoxemia** — An abnormally low concentration of oxygen in the arterial blood, indicated here by an SpO2 of 85%, signifying severe respiratory compromise.
- **Gurd's Criteria** — A set of major and minor clinical criteria used to support the diagnosis of Fat Embolism Syndrome, including respiratory insufficiency, cerebral involvement, and petechial rash.

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