# A nurse is caring for a patient on mechanical ventilation who suddenly develops high peak inspiratory pressures and decreased tidal volumes. The ventilator alarm is sounding. What is the nurse's priority action?

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## 문제

A nurse is caring for a patient on mechanical ventilation who suddenly develops high peak inspiratory pressures and decreased tidal volumes. The ventilator alarm is sounding. What is the nurse's priority action?

A 45-year-old patient with acute respiratory distress syndrome (ARDS) is on mechanical ventilation in the ICU. The patient suddenly develops high peak inspiratory pressures (from 25 cmH2O to 45 cmH2O) and decreased tidal volumes (from 450 mL to 280 mL). The high-pressure alarm is continuously sounding, and the patient appears agitated with decreased oxygen saturation.

## 보기

1. Increase the ventilator rate to improve minute ventilation and oxygenation
2. Manually ventilate the patient with a bag-mask device while assessing for the cause **✔ 정답**
3. Administer a sedative to reduce patient agitation and ventilator asynchrony
4. Suction the endotracheal tube to clear secretions and relieve obstruction

**정답: 2**

## 해설

Sudden high peak pressures with decreased tidal volumes indicate a life-threatening emergency like pneumothorax or obstruction. The priority is to manually ventilate with a bag-mask device to ensure oxygenation while assessing the cause. Other options address specific causes but delay immediate ventilation.

## 심화 해설

Clinical Scenario Analysis

The patient on mechanical ventilation for ARDS presents with a sudden, critical change: peak inspiratory pressure (PIP) has nearly doubled from 25 cmH2O to 45 cmH2O, while the delivered tidal volume has dropped from 450 mL to 280 mL. This combination of high pressure and low volume is the hallmark of an acute increase in airway resistance or a mechanical obstruction, compounded by the patient’s agitation and desaturation. In the NCLEX-RN framework, this is a high-priority, life-threatening situation requiring immediate action to ensure oxygenation and ventilation while a systematic assessment is performed.

Why the Priority is Manual Ventilation with Assessment

The correct priority action is to manually ventilate the patient with a bag-mask device while assessing for the cause. This approach directly addresses the immediate threat of hypoventilation and hypoxemia. The high-pressure alarm indicates the ventilator can no longer effectively deliver the set tidal volume, meaning the patient is not receiving adequate minute ventilation. By disconnecting the ventilator and initiating manual ventilation, you take direct control of the patient’s airway and breathing. This allows you to immediately feel the lung compliance and airway resistance with each bag squeeze, providing real-time, tactile diagnostic information. You can assess for the most common causes of this presentation, such as a kinked endotracheal tube, a mucus plug, or a pneumothorax, while simultaneously delivering 100% oxygen and stabilizing the patient. The AARC Clinical Practice Guideline underscores that patient-ventilator assessments are fundamental to ensuring safety and efficacy, and this hands-on assessment is the most direct application of that principle in a crisis [1].

Analysis of Incorrect Options

- Option 1: Increase the ventilator rate. This action is contraindicated and dangerous. The core problem is not a low rate but an inability to deliver the set volume due to high pressure. Increasing the rate will only cycle the ventilator more frequently against the same obstruction, worsening air trapping and potentially causing barotrauma or hemodynamic compromise without improving ventilation. The guideline emphasizes the assessment of tidal volume to ensure lung-protective ventilation, and this option ignores the critical drop in delivered volume [1].

- Option 3: Administer a sedative. While patient-ventilator asynchrony and agitation can contribute to high pressures, administering a sedative is a secondary, not a priority, action in this acute change. The sudden, dramatic rise in PIP from a stable baseline strongly suggests a new mechanical problem, not a primary agitation issue. Sedating the patient without first ruling out a life-threatening mechanical cause like a tension pneumothorax or a displaced tube could mask the underlying problem and lead to rapid decompensation. The assessment must come before the intervention.

- Option 4: Suction the endotracheal tube. Suctioning is a plausible intervention for a mucus plug, which is a potential cause of the problem. However, it is not the first priority. The immediate need is to stabilize oxygenation and ventilation. Disconnecting the patient from the ventilator for suctioning without first providing manual breaths could worsen the already critical desaturation. The correct sequence is to first manually ventilate, which can sometimes dislodge a plug or confirm the need for suctioning based on resistance felt, and then proceed with suctioning if indicated. The priority is to secure the airway and breathing first, then investigate and treat specific causes.

Connecting to Lung-Protective Ventilation Principles

This scenario is deeply rooted in the principles of lung-protective ventilation for ARDS, as highlighted in the provided guideline. The recommendation to assess plateau pressure and maintain tidal volume at 4-8 mL/kg predicted body weight is to prevent ventilator-induced lung injury [1]. When a high-pressure alarm sounds, it is a critical safety signal that these protective limits are being violated. The nurse’s role is not to override the alarm by adjusting settings but to immediately investigate the cause of the pressure increase. Manually ventilating allows you to sense the difference between a high resistance problem (e.g., kinked tube, secretions), where the bag is hard to squeeze but some volume moves, and a compliance problem (e.g., tension pneumothorax, mainstem intubation), where the bag feels stiff with very little volume delivered. This clinical differentiation is vital for guiding the next steps and communicating findings to the provider, directly reflecting the guideline’s emphasis on thorough patient-ventilator assessment to ensure safe and effective mechanical ventilation [1].References (research sources)

- [1]AARC Clinical Practice Guideline: Patient-Ventilator Assessment.GuidelineGoodfellow LT, Miller AG, Varekojis SM, LaVita CJ, Glogowski JT, Hess DR. (2024) · DOI: 10.4187/respcare.12007

## 임상 시나리오

Situation

A 45-year-old patient with ARDS on mechanical ventilation suddenly develops a high-pressure alarm. The peak inspiratory pressure (PIP) spikes from 25 to 45 cm H2O, and the tidal volume drops from 450 mL to 280 mL. The patient is agitated and desaturating.

Background

The patient has a known history of acute respiratory distress syndrome (ARDS) and is intubated in the ICU. The current ventilator settings were previously stable. The sudden change in PIP and tidal volume indicates an acute mechanical problem.

Assessment

The ventilator alarm is sounding continuously. The combination of high peak pressures and low tidal volumes is a classic sign of an acute increase in airway resistance or a physical obstruction (e.g., mucus plug, kinked endotracheal tube, patient biting the tube). The patient's agitation and desaturation confirm a life-threatening compromise in ventilation and oxygenation.

Recommendation

**Priority Action:** Immediately disconnect the patient from the ventilator and begin manual ventilation with a bag-mask device connected to 100% oxygen. This is the only option that simultaneously corrects hypoventilation and allows for a rapid, tactile assessment of the airway and lung compliance.

**Rationale:** The ventilator is no longer delivering effective breaths. Manual ventilation takes control of the airway, providing immediate feedback on resistance. While ventilating, systematically assess the patient and equipment: check for tube kinks, pass a suction catheter to rule out a mucus plug, and auscultate breath sounds to rule out a tension pneumothorax. Do not delay ventilation to perform these assessments; perform them concurrently.

**Subsequent Actions:** Once the patient is stabilized, the specific cause (e.g., obstruction, pneumothorax) can be treated. Sedation should only be considered after the airway and ventilation are secured, as it can mask a deteriorating clinical picture.

## 핵심 개념

- **Peak Inspiratory Pressure** — Peak inspiratory pressure. This is the maximum pressure required for the ventilator to deliver a tidal volume to the patient's lungs. A sudden rise suggests increased airway resistance (bronchospasm, secretions) or decreased lung compliance (pneumothorax, pulmonary edema).
- **Tidal Volume** — Tidal volume. This is the amount of air inhaled and exhaled during normal breathing. A decrease below the set value during mechanical ventilation indicates that the ventilator is not delivering the set amount, and if it occurs with a high-pressure alarm, serious airway obstruction should be suspected.
- **High-Pressure Alarm** — High-pressure alarm. A ventilator alarm that sounds when the set maximum allowable pressure (typically PIP + 10 cmH2O) is exceeded. It is a sign of airway obstruction, patient discomfort, breathing circuit problems, pneumothorax, etc.
- **Bag-Mask Ventilation (Manual Ventilation)** — Bag-mask manual ventilation. After disconnecting the patient from the ventilator, this method involves connecting a rebreathing bag (Ambu bag) and mask or endotracheal tube, with the nurse applying direct pressure to perform ventilation. It is a core technique that allows simultaneous ventilation assurance and problem assessment during mechanical ventilation emergencies.
- **Patient-Ventilator Asynchrony** — Patient-ventilator dyssynchrony. This is a condition where the patient's spontaneous breathing efforts do not match the breaths provided by the ventilator. It can cause pain, anxiety, and high PIP, and may require sedation or muscle relaxation, or mode/setting adjustments.

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