Showing posts with label Head Trauma. Show all posts
Showing posts with label Head Trauma. Show all posts

Thursday, October 23, 2025

Understanding MARCH - Preventing Hypothermia & Managing Head Injuries


From the MARCH Mnemonic Series – Tactical Trauma Care for EMS Providers

Preserve and Protect After Stabilization

The final step in the MARCH sequence - Hypothermia Head Injury - focuses on two conditions that can rapidly worsen outcomes if not addressed early. 

After bleeding is controlled, the airway secured, respiration managed, and circulation assessed, providers must work to preserve core body temperature and protect neurological function.

Uncontrolled heat loss accelerates shock, impairs clotting, and undermines every prior intervention. Likewise, traumatic brain injury can progress quickly without vigilant monitoring and early management. 

Protecting a patient from heat loss and preserving the brain is essential for preventing secondary injury and supporting long-term survival and neurological recovery.

Image retrieved from tccc.org.ua

H – Hypothermia

Trauma-induced hypothermia is a major contributor to mortality in both military and civilian trauma.

Even in warm climates, a patient can quickly lose body heat through evaporation, convection, and exposure.

Hypothermia worsens the “lethal triad” of trauma - acidosis, coagulopathy & hypothermia - impairing clotting and promoting continued bleeding.

Image retrieved from tccc.org.ua

Recognition of Hypothermia

Look for early indicators, especially when there is significant blood loss or environmental exposure:

  • Shivering or muscle tremors (may disappear as hypothermia worsens)
  • Pale, cool, or mottled skin
  • Slurred speech or confusion
  • Slowed respirations or heart rate
  • Core temperature below 95°F (35°C)

Environmental factors such as wind, wet clothing, cold ground, or prolonged evacuation time accelerate heat loss, even in mild weather.

Image retrieved from tccc.org.ua

Hypothermia Prevention and Management

  • Remove wet clothing when tactically feasible and replace with dry layers.
  • Insulate from the ground using a poncho, sleeping pad, or casualty blanket.
  • Cover the casualty completely, including the head, to reduce radiant heat loss.
  • Use hypothermia prevention kits (e.g., Blizzard Survival Blanket, Ready-Heat™ Active Warming Blanket) if available.
  • Warm IV fluids or blood products when resources allow.
  • Monitor core temperature if devices are available, especially in prolonged field care scenarios.

Image retrieved from tccc.org.ua

Key Point: Preventing heat loss is just as vital as stopping bleeding - once the casualty is cold, outcomes worsen rapidly.

Image retrieved from tccc.org.ua

H – Head Injury

The “H” in MARCH also stands for Head Injury, emphasizing early recognition and management of traumatic brain injury (TBI), a leading cause of preventable death and long-term disability in prehospital trauma.

Image retrieved from tccc.org.ua

Recognizing Head Trauma

Watch for the following signs and symptoms:

  • Decreasing level of consciousness or responsiveness
  • Unequal or dilated pupils
  • Repetitive questioning, confusion, or agitation
  • Persistent vomiting or seizures
  • Irregular breathing patterns (Cheyne-Stokes or slow respirations)
  • Obvious penetrating or blunt trauma to the skull or face

Image retrieved from tccc.org.ua

Management Principles

  • Maintain airway and oxygenation. Keep SpO₂ > 90% and avoid hypoxia, which worsens secondary brain injury.
  • Prevent hypotension. Maintain systolic BP ≥ 90 mmHg to ensure cerebral perfusion.
  • Positioning: If spinal injury is not suspected, elevate the head 30° to promote venous drainage.
  • Avoid hyperventilation unless there are signs of herniation (e.g., blown pupil, rapid deterioration).
  • Control external bleeding with gentle pressure; do not compress depressed skull fractures or insert dressings into open cranial wounds.
  • Monitor for changes in mental status using tools like AVPU or GCS if time and environment allow.

In the tactical environment: head injuries often coexist with blast or penetrating trauma. Managing hypoxia and hypotension early has been shown to double the odds of survival in severe TBI (Eastridge et al., 2012).

Image retrieved from tccc.org.ua

Key Takeaway for EMS and Tactical Providers

The 'H' in MARCH is about preservation and protection - maintaining the physiological stability of a casualty who has already survived the most immediate threats. 

Hypothermia prevention and head injury management require vigilance, insulation, and gentle handling. In tactical medicine, saving a life doesn’t end with hemorrhage control, it continues with keeping that life viable during evacuation.

In short: preserve the heat, protect the brain

Image retrieved from tccc.org.ua

Conclusion of the MARCH Series

The MARCH sequence - Massive Hemorrhage, Airway, Respiration, Circulation, and Hypothermia/Head Injury - originated in Tactical Combat Casualty Care and remains the foundation of modern field trauma management. 

This structured approach guides responders to address the most preventable causes of death in the order they matter most. In this series, each component of MARCH is explored in turn, offering practical guidance for EMS and tactical providers operating in dynamic, resource-limited environments. 

From controlling catastrophic bleeding to protecting core temperature and neurological function, the series outlines a clear, evidence-informed pathway for stabilizing trauma patients and improving survivability in the prehospital setting. 

Train Hard. Stay Prepared. Save Lives.

Further Reading:

American College of Surgeons Committee on Trauma. (2022) Advanced Trauma Life Support (10th Ed). Chicago, IL: American College of Surgeons.

Bledsoe, B. E., Cherry, R. A. & Porter, R. S (2023) Paramedic Care: Principles and Practice (6th Ed) Boston, MA: Pearson Education

Butler, F. K. (2017) Tactical Combat Casualty Care: Beginnings. Wilderness & Environmental Medicine 28 (2S): S12-S17. 
Retrieved from https://pubmed.ncbi.nlm.nih.gov/28284483/ on October 8, 2025

Butler, F. K., Bennett, B., & Wedmore, C. I. (2017) Tactical Combat Casualty Care and Wilderness Medicine: Advancing Trauma Care in Austere Environments. Emergency Medicine Clinics of North America 35 (2): 391-407. Retrieved from https://pubmed.ncbi.nlm.nih.gov/28411934/ on October 8, 2025

Committee on Tactical Combat Casualty Care (2023) Tactical Combat Casualty Care (TCCC) Guidelines for Medical Personnel. Defense Health Agency, Joint Trauma System. Retrieved from https://jts.health.mil on October 8. 2025

National Association of Emergency Medical Technicians NAEMT (2020) TECCTactical Emergency Casualty Care Course Book (2nd Ed). Burlington, MA: Jones & Bartlett Learning

National Association of Emergency Medical Technicians NAEMT (2023) Tactical Emergency Casualty Care (TECC) Guidelines. NAEMT Education Division

National Association of Emergency Medical Technicians NAEMT (2025) 
PHTLS: Prehospital Trauma Life Support, Military Edition eBook (10th Ed). Burlington, MA: Jones & Bartlett Learning

Wednesday, February 07, 2024

EMS Trauma Emergencies - Amnesia


EMS Providers should have a solid understanding of the causes and types of amnesia to effectively assess and manage patients presenting with memory disturbances. Here's what they need to know:

Causes of Amnesia

Head Trauma: Traumatic brain injury (TBI) is a common cause of amnesia, especially retrograde amnesia (RA), where memory loss occurs for events preceding the injury.

Stroke: Lack of blood flow to the brain can lead to transient global amnesia (TGA), characterized by sudden onset memory loss.

Seizures: Particularly prolonged or severe seizures can cause memory impairment.

Neurodegenerative Diseases: Alzheimer's disease, dementia, and other conditions can lead to progressive memory loss.

Psychological Trauma: Emotional shock or severe stress can result in dissociative amnesia, where memories are blocked due to psychological distress.

Drug or Alcohol Abuse: Substance abuse can lead to blackouts or memory gaps.

Infections: Encephalitis, meningitis, and other brain infections can impair memory function.

Brain Tumors: Tumors can affect memory centers in the brain, leading to amnesia.

Metabolic Disorders: Conditions like vitamin B12 deficiency or thyroid disorders can cause memory impairment.

Medications: Certain medications, such as benzodiazepines, can cause memory problems as side effects.

Types of Amnesia

Retrograde Amnesia (RA):

Definition: Memory loss for events that occurred before the onset of amnesia.

Causes: Typically associated with head trauma, brain injury, or neurological conditions.

Example: A patient may not remember events leading up to a car accident due to retrograde amnesia.

Anterograde Amnesia (AA):

Definition: Inability to form new memories after the onset of amnesia.

Causes: Often seen in cases of head trauma, stroke, or neurodegenerative diseases affecting the hippocampus.

Example: A patient may repeatedly ask the same question or fail to recall recent conversations due to anterograde amnesia.

Differential Diagnosis

Differentiating Retrograde vs. Anterograde Amnesia: Assessing the patient's ability to recall events before and after the onset of symptoms helps distinguish between the two types.

History and Physical Examination: Detailed history-taking, including information from family members or witnesses, and a thorough physical examination can help identify potential causes of amnesia.

Neuroimaging: CT scans or MRI scans may be necessary to detect structural abnormalities in the brain, such as tumors or lesions.

Laboratory Tests: Blood tests can help rule out metabolic causes of amnesia, such as vitamin deficiencies or infections.

Management

Stabilization: Ensure the patient's vital signs are stable and address any immediate life-threatening issues.

Supportive Care: Provide reassurance and support to the patient and their family members.

Referral: Depending on the underlying cause, patients may require further evaluation and management by neurologists, psychiatrists, or other specialists.

By understanding the causes and types of amnesia, EMS providers can effectively assess and manage patients experiencing memory disturbances, providing appropriate care and ensuring the best possible outcomes.

Further Reading

Alexander, M. & Belle, R (2012) Advanced EMT: A Clinical Reasoning Approach (2nd Ed). New Jersey: Pearson.

Bledsoe, B. E., Cherry, R. A. & Porter, R. S. (2023) Paramedic Care: Principles and Practice Volume 1 (6th Ed). New Jersey: Pearson.

Brown, C. A., III., & Walls, R. M. (2023) The Walls Manual of Emergency Airway Management (6th Ed). Pennsylvania: Lippincott Williams & Wilkins.

Mistovich, J. J. & Karren, K. J. (2014) Prehospital Emergency Care (11th Ed). New Jersey. Pearson Education.