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Emergency and Acute Medicine – Larynx Fracture
Basic description
Laryngeal fracture results from the direct transfer of severe force to the anterior neck, producing injuries that range from simple mucosal tears to fractured or comminuted laryngeal cartilages. Structures that may be involved include the epiglottis, thyroid, arytenoid, cricoid, corniculate, and cuneiform cartilages. Although rare, laryngeal fractures are life-threatening because of the risk of progressive airway compromise.
Etiology and epidemiology
Laryngeal fracture is uncommon, accounting for fewer than 1% of blunt trauma cases, with an incidence estimated at 1 in 5,000 to 1 in 42,000 emergency department visits. Mortality directly related to the injury ranges from 2% to 15%. Most cases result from blunt or penetrating trauma to the anterior neck during motor vehicle or motorcycle crashes, assaults, or recreational activities. A classic mechanism is the “clothesline” injury, in which the neck strikes a fixed object such as a wire or branch during forward motion. Hyperextension of the neck combined with a direct blow is typical. Iatrogenic injuries from intubation are increasingly recognized, particularly in older adults. In children, bicycle handlebar injuries are a common mechanism, with neck extension compressing the larynx against the cervical spine.
Diagnosis: signs and symptoms
Symptoms may be delayed for hours, making diagnosis challenging, especially in polytrauma patients or those immobilized in cervical collars. Clinical findings include anterior neck tenderness, bruising or abrasions, hoarseness or voice change, dysphonia, hemoptysis, stridor, dyspnea, and subcutaneous or mediastinal emphysema. Pneumothorax, loss of normal laryngeal landmarks, and difficulty with mechanical ventilation may also be present. Pediatric patients may initially appear minimally symptomatic but can deteriorate rapidly because of airway edema.
Essential workup
Airway evaluation is the priority. Endoscopic assessment should take precedence over plain radiography because mucosal edema may cause airway compromise even in the absence of obvious skeletal injury. Cervical spine CT is preferred over plain radiographs, which are often nondiagnostic. Chest radiography helps identify pneumothorax, pneumomediastinum, or subcutaneous emphysema. CT scan of the cervical spine with fine cuts through the larynx and IV contrast is recommended unless the patient proceeds directly to surgery, as it can identify cartilage fractures and associated vascular injury. Continuous pulse oximetry is essential. MRI is generally not useful due to time constraints and limited evaluation of cartilaginous injury.
Diagnostic tests and procedures
Arterial blood gas analysis may be helpful in patients with respiratory compromise. Flexible fiberoptic laryngoscopy is a key diagnostic tool for visualization of mucosal injuries, vocal cord mobility, and airway patency. CT angiography is preferred when vascular injury is suspected, particularly in penetrating trauma. Fiberoptic bronchoscopy and esophagoscopy may be required to evaluate associated aerodigestive injuries. Surgical exploration is indicated based on injury severity.
Differential diagnosis
Associated injuries must be considered, including intracranial injury, cervical spine injury, esophageal injury, carotid artery injury, phrenic nerve injury, aspiration pneumonitis, hypoxic cerebral injury, airway edema, air embolism, and pneumothorax. In children, massive edema and hematoma may occur without visible fractures on imaging.
Treatment: prehospital and initial stabilization
Airway protection is critical. Supplemental oxygen and gentle suctioning should be provided, with cervical spine immobilization maintained. Elective intubation is controversial and not routinely recommended, as repeated orotracheal attempts may worsen injury. In severe cases, early surgical airway management may be required.
Emergency department management
Airway control remains the highest priority. Early intubation may be necessary for impending airway compromise, but in patients with severe neck injury, formal tracheostomy under local anesthesia is often safer than endotracheal intubation. Cricothyrotomy may be used for injuries above the cricothyroid membrane but should be avoided if there is evidence of cricotracheal disruption or hematoma over the membrane. Supplemental humidified oxygen, head-of-bed elevation, strict NPO status, and voice rest are recommended. IV access should be established, and early otolaryngology consultation obtained. Mechanical ventilation strategies may be required for associated pulmonary injury.
Medications
Broad-spectrum antibiotics are indicated when subcutaneous emphysema suggests mucosal breach, commonly using ampicillin/sulbactam or clindamycin. Acid suppression with H2 blockers or proton pump inhibitors may reduce irritation of mucosal injuries. Corticosteroids are not routinely indicated but may be considered for severe laryngeal edema. In pediatric patients with stridor, nebulized racemic epinephrine may provide temporary relief.
Disposition and follow-up
All patients with confirmed or suspected laryngeal fracture require admission to a monitored setting for airway observation and serial examinations, often including repeat fiberoptic laryngoscopy. Pediatric patients should be admitted routinely because of the risk of rapid airway compromise. Discharge may be considered only after an adequate observation period, typically at least 6 hours, in patients with no evidence of airway injury, edema, or compromise. When in doubt, admission is recommended.
Pearls and pitfalls
Laryngeal fractures are rare but potentially fatal. Symptoms may be subtle or delayed, and airway deterioration can be rapid. Avoid repeated intubation attempts, and maintain a low threshold for surgical airway management. Early recognition, careful airway control, and otolaryngology involvement are key to improving outcomes.
Basic description
Laryngeal fracture results from the direct transfer of severe force to the anterior neck, producing injuries that range from simple mucosal tears to fractured or comminuted laryngeal cartilages. Structures that may be involved include the epiglottis, thyroid, arytenoid, cricoid, corniculate, and cuneiform cartilages. Although rare, laryngeal fractures are life-threatening because of the risk of progressive airway compromise.
Etiology and epidemiology
Laryngeal fracture is uncommon, accounting for fewer than 1% of blunt trauma cases, with an incidence estimated at 1 in 5,000 to 1 in 42,000 emergency department visits. Mortality directly related to the injury ranges from 2% to 15%. Most cases result from blunt or penetrating trauma to the anterior neck during motor vehicle or motorcycle crashes, assaults, or recreational activities. A classic mechanism is the “clothesline” injury, in which the neck strikes a fixed object such as a wire or branch during forward motion. Hyperextension of the neck combined with a direct blow is typical. Iatrogenic injuries from intubation are increasingly recognized, particularly in older adults. In children, bicycle handlebar injuries are a common mechanism, with neck extension compressing the larynx against the cervical spine.
Diagnosis: signs and symptoms
Symptoms may be delayed for hours, making diagnosis challenging, especially in polytrauma patients or those immobilized in cervical collars. Clinical findings include anterior neck tenderness, bruising or abrasions, hoarseness or voice change, dysphonia, hemoptysis, stridor, dyspnea, and subcutaneous or mediastinal emphysema. Pneumothorax, loss of normal laryngeal landmarks, and difficulty with mechanical ventilation may also be present. Pediatric patients may initially appear minimally symptomatic but can deteriorate rapidly because of airway edema.
Essential workup
Airway evaluation is the priority. Endoscopic assessment should take precedence over plain radiography because mucosal edema may cause airway compromise even in the absence of obvious skeletal injury. Cervical spine CT is preferred over plain radiographs, which are often nondiagnostic. Chest radiography helps identify pneumothorax, pneumomediastinum, or subcutaneous emphysema. CT scan of the cervical spine with fine cuts through the larynx and IV contrast is recommended unless the patient proceeds directly to surgery, as it can identify cartilage fractures and associated vascular injury. Continuous pulse oximetry is essential. MRI is generally not useful due to time constraints and limited evaluation of cartilaginous injury.
Diagnostic tests and procedures
Arterial blood gas analysis may be helpful in patients with respiratory compromise. Flexible fiberoptic laryngoscopy is a key diagnostic tool for visualization of mucosal injuries, vocal cord mobility, and airway patency. CT angiography is preferred when vascular injury is suspected, particularly in penetrating trauma. Fiberoptic bronchoscopy and esophagoscopy may be required to evaluate associated aerodigestive injuries. Surgical exploration is indicated based on injury severity.
Differential diagnosis
Associated injuries must be considered, including intracranial injury, cervical spine injury, esophageal injury, carotid artery injury, phrenic nerve injury, aspiration pneumonitis, hypoxic cerebral injury, airway edema, air embolism, and pneumothorax. In children, massive edema and hematoma may occur without visible fractures on imaging.
Treatment: prehospital and initial stabilization
Airway protection is critical. Supplemental oxygen and gentle suctioning should be provided, with cervical spine immobilization maintained. Elective intubation is controversial and not routinely recommended, as repeated orotracheal attempts may worsen injury. In severe cases, early surgical airway management may be required.
Emergency department management
Airway control remains the highest priority. Early intubation may be necessary for impending airway compromise, but in patients with severe neck injury, formal tracheostomy under local anesthesia is often safer than endotracheal intubation. Cricothyrotomy may be used for injuries above the cricothyroid membrane but should be avoided if there is evidence of cricotracheal disruption or hematoma over the membrane. Supplemental humidified oxygen, head-of-bed elevation, strict NPO status, and voice rest are recommended. IV access should be established, and early otolaryngology consultation obtained. Mechanical ventilation strategies may be required for associated pulmonary injury.
Medications
Broad-spectrum antibiotics are indicated when subcutaneous emphysema suggests mucosal breach, commonly using ampicillin/sulbactam or clindamycin. Acid suppression with H2 blockers or proton pump inhibitors may reduce irritation of mucosal injuries. Corticosteroids are not routinely indicated but may be considered for severe laryngeal edema. In pediatric patients with stridor, nebulized racemic epinephrine may provide temporary relief.
Disposition and follow-up
All patients with confirmed or suspected laryngeal fracture require admission to a monitored setting for airway observation and serial examinations, often including repeat fiberoptic laryngoscopy. Pediatric patients should be admitted routinely because of the risk of rapid airway compromise. Discharge may be considered only after an adequate observation period, typically at least 6 hours, in patients with no evidence of airway injury, edema, or compromise. When in doubt, admission is recommended.
Pearls and pitfalls
Laryngeal fractures are rare but potentially fatal. Symptoms may be subtle or delayed, and airway deterioration can be rapid. Avoid repeated intubation attempts, and maintain a low threshold for surgical airway management. Early recognition, careful airway control, and otolaryngology involvement are key to improving outcomes.
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