Overview
Learning Objectives
- Understand skeletal anatomy and classify fracture and dislocation types
- Perform proper neurovascular assessment (the 6 Ps and CSM)
- Apply splinting principles and identify specific splinting techniques
- Manage dislocations by splinting in the position of comfort, monitoring CSM, and evacuating
- Manage open fractures, dislocations, and special scenarios (amputations, compartment syndrome)
- Understand Ottawa Rules for ankle and knee injuries
Musculoskeletal injuries are among the most common injuries encountered in wilderness settings. A twisted ankle on a hiking trail, a fall onto an outstretched hand, or a climbing accident can all result in fractures or dislocations. In remote settings, proper field management is critical because evacuation may take hours or days.
This lesson covers the assessment and management of fractures and dislocations using wilderness-appropriate techniques. Your priorities are: assess neurovascular status, prevent further injury, immobilize/splint, reassess, and evacuate appropriately.
Anatomy & Injury Types
Skeletal Anatomy Basics
The skeletal system consists of:
- Long Bones: Femur, tibia, humerus, radius, ulna. Composed of a shaft (diaphysis) and ends (epiphysis) with a growth plate in children.
- Joints: Where two or more bones meet. Held together by ligaments. Cartilage covers bone ends to reduce friction.
- Tendons: Connect muscles to bone.
- Ligaments: Connect bone to bone, stabilizing joints.
Fracture Classification: Open vs. Closed
Closed Fracture: Bone is broken but skin is intact. No direct communication between fracture and environment.
Open (Compound) Fracture: Bone is broken AND skin is broken, allowing direct contamination. Risk of infection and greater blood loss. More serious than closed fractures.
Fracture Types by Pattern
| Type | Description | Typical Mechanism |
|---|---|---|
| Transverse | Fracture line perpendicular to bone shaft | Direct blow or bending force |
| Oblique | Fracture line at an angle (45°) to bone shaft | Twisting or combined bending/axial load |
| Spiral | Fracture line wraps around bone shaft | Twisting force (common in skiing injuries) |
| Comminuted | Bone broken into 3+ pieces | High-energy trauma (e.g., car crash, fall from height) |
| Greenstick | Incomplete break; bone bends but doesn't completely fracture (common in children) | Bending force in flexible pediatric bone |
Dislocation
A dislocation (luxation) is displacement of a bone from its normal position at a joint. Often accompanied by tearing of ligaments and supporting structures. Common sites: shoulder, patella (kneecap), elbow, fingers. Note: a true knee (tibiofemoral) dislocation is a rare, limb-threatening emergency — do not confuse it with a kneecap (patella) dislocation.
Sprain vs. Strain
- Sprain: Tear of ligament (bone-to-bone) from excessive joint motion. Usually swelling, bruising, pain with movement.
- Strain: Tear of muscle or tendon. May be acute or chronic. Pain and weakness.
Mechanism of Injury Patterns
Understanding the mechanism helps predict which structures are injured:
- Fall on outstretched hand (FOOSH): Often causes wrist fractures (Colles' fracture) or shoulder dislocation
- Axial load (impact from above): Vertebral compression fractures or femur fractures
- Twisting: Ankle sprains, spiral fractures of tibia
- Hyperextension: Knee ligament injuries, elbow dislocations
Assessment of Musculoskeletal Injuries
Secondary Survey Tool: DCAP-BTLS
During the secondary survey (after life threats are addressed), assess the injury site for:
- Deformity: Is the limb angulated or shortened compared to the opposite side?
- Contusions: Bruising indicating trauma
- Abrasions: Scraping suggesting mechanism
- Punctures/Penetrations: Holes in the skin; if over a fracture site = open fracture
- Burns: Check for thermal injury
- Tenderness: Palpate gently; point tenderness over bone suggests fracture
- Lacerations: Cuts in the skin; if over a fracture site = open fracture
- Swelling: Edema from bleeding into tissues
Neurovascular Assessment: The 6 Ps
The 6 Ps of Neurovascular Assessment:
| P | Assessment | Concerning Finding |
|---|---|---|
| Pain | Ask about pain severity and character. Severe pain disproportionate to injury suggests compartment syndrome. | Severe pain with passive stretch; pain out of proportion |
| Pallor | Check skin color distal to injury. Compare to opposite limb. | Pale, white, or cyanotic (blue) skin distal to injury |
| Pulse | Palpate distal pulse (e.g., dorsalis pedis for ankle, radial for wrist). | Absent or very weak pulse distally |
| Paresthesia | Ask about tingling or "pins and needles" sensation. | Numbness, tingling, or burning distal to injury |
| Paralysis | Test motor function distal to injury (move fingers/toes on command). | Weakness or inability to move distal structures |
| Pressure | Palpate the limb. Look for tense, swollen compartments. | Tight, swollen compartments; tenseness with passive stretch pain |
CSM Assessment
CSM = Circulation, Sensation, Motion — a simpler version of the 6 Ps:
- C - Circulation: Distal pulse, skin color/temperature, capillary refill
- S - Sensation: Can patient feel touch/pain distal to injury?
- M - Motion: Can patient move fingers/toes on command?
Ottawa Ankle and Knee Rules
- Posterior edge or tip of the lateral malleolus (outer ankle bone) — the distal 6 cm
- Posterior edge or tip of the medial malleolus (inner ankle bone) — the distal 6 cm
- Navicular bone (midfoot)
- Base of the 5th metatarsal (bony bump on the outer edge of the midfoot)
- Age 55 or older
- Isolated tenderness of the patella (no other bony tenderness)
- Tenderness at the head of the fibula
- Inability to flex the knee to 90°
- Inability to bear weight (take 4 steps) both immediately after injury and at the time of assessment
Splinting Principles & Techniques
General Splinting Principles
- Immobilize joints ABOVE and BELOW the fracture site
- Pad bony prominences to prevent pressure ulcers
- Reassess neurovascular status (6 Ps or CSM) after splinting
- Splint in position of comfort; if circulation below the injury is absent, the evacuation becomes EMERGENT
- Apply ice/cold if available to reduce swelling
- Elevate if possible to reduce swelling
Common Splinting Techniques
SAM Splint (Soft Aluminum Malleable): Versatile, compact, reusable. Molds to any shape. Excellent for forearm, wrist, ankle, knee. Pad with extra material and secure with elastic bandages.
Improvised Splints: In wilderness, use materials at hand:
- Sticks/branches padded with clothing
- Rolled-up sleeping bag or pad alongside the limb
- Buddy taping (taping injured finger to adjacent healthy finger)
- Sling and swathe for upper extremity
Suspected Femur (Thighbone) Fracture: Apply a well-padded rigid splint or an anatomic splint (padding between the legs, then securing the injured leg to the uninjured leg). A femur fracture can bleed 1-1.5 liters internally — treat for shock (supine flat, prevent heat loss) and evacuate urgently. For reference: EMS providers may apply a commercial traction splint (e.g., Kendrick, Thomas) for mid-shaft femur fractures — this is an EMS device, not a WFA skill.
Angulated Limbs & Reduction
- Splint fractures in the position found; splint or sling dislocations in the position of comfort
- Check CSM before and after splinting, and recheck regularly
- If there is no pulse or sensation below the injury, the evacuation becomes EMERGENT
Dislocations
Anterior Shoulder Dislocation (Most Common)
The humeral head dislocates anteriorly out of the glenoid cavity. Classic presentation:
- Arm held in slight abduction and external rotation ("arm held away from body")
- Arm cannot be internally rotated
- Severe pain
- Palpable bulge anteriorly
- Loss of normal rounded shoulder contour
Field Management: Immobilize in position of comfort with sling and swathe. Check pulse, sensation, and motor function (CSM) before and after applying the sling, and recheck regularly during evacuation. Do not attempt reduction — that is performed by medical professionals. Evacuate.
Patella (Kneecap) Dislocation
Usually dislocates laterally (outward). Presents with:
- Severe pain and quadriceps muscle spasm
- Visible lateral displacement of patella
- Inability to straighten knee
Field Management: Splint the knee in the position of comfort with generous padding (a rolled sleeping bag or pad works well). Check CSM before and after splinting. Do not attempt to straighten the leg or push the kneecap back into place. Some patella dislocations reduce spontaneously as the patient moves — if this happens, still splint and evacuate for medical evaluation.
Finger/Toe Dislocations
Usually obvious deformity. Splint in the position found — buddy tape the injured digit to its healthy neighbor, or use a padded splint, in the position of comfort. Check CSM before and after. Do not attempt reduction; evacuate for evaluation and reduction by medical professionals.
Hip Dislocation
Rare but serious. Most commonly posterior dislocations. Presents with:
- Severe pain in hip/groin
- Leg internally rotated and adducted ("fetal position")
- Unable to move leg
- Potential sciatic nerve injury (foot drop, sensory loss)
Field Management: Immobilize in the position found, padding generously with clothing or sleeping bags. This is a neurovascular emergency — the femoral head is at risk of avascular necrosis if hospital reduction is delayed. EMERGENT evacuation required.
Dislocation Management at the WFA Level
- Splint or sling in the position of comfort
- Check CSM before and after splinting, and recheck regularly during evacuation
- Evacuate — reduction is performed by medical professionals
- Absent pulse or sensation below the joint = EMERGENT evacuation
For reference: in remote settings, rescuers with higher-level medical training sometimes reduce certain dislocations when evacuation is prolonged. That skill is beyond the scope of this course.
Open Fractures & Special Considerations
Open Fractures: Immediate Management
Open fractures are surgical emergencies due to high infection and complication risk.
- Splint in the position found. Realigning a fracture is higher-level care, not a WFA skill. If the limb has no pulse or sensation below the injury, the evacuation becomes EMERGENT.
- Gently irrigate the wound with clean water or saline to remove dirt. Gentle irrigation is protective against infection.
- Cover with clean (preferably sterile) dressing. May need to dress around exposed bone.
- Splint and elevate to reduce swelling
- If bone was exposed at any point — even if it has slipped back beneath the skin — document it and report it at hospital handoff.
- EMERGENT evacuation to hospital for surgical management (cleaning, internal fixation)
Amputated Parts
If a limb or digit is amputated:
- Control bleeding on the amputated stump with direct pressure
- Retrieve the amputated part if possible
- Wrap it in clean cloth or gauze moistened with saline or clean water ONLY — never use antiseptics or bleach, which damage tissue and can make the part non-replantable
- Seal the wrapped part in a plastic bag, then place the bag on ice or in cold water — NEVER place the part directly on ice
- Label with time of amputation
- Transport with patient to hospital — digits may remain viable up to about 12 hours warm or 24 hours cooled; larger parts tolerate much less. Cool the part and evacuate emergently.
- EMERGENT evacuation
Compartment Syndrome
Definition: Increased pressure within a closed muscle compartment (group of muscles enclosed by fascia), compromising blood flow and causing tissue death if not relieved.
Classic Presentation:
- Pain DISPROPORTIONATE to injury (hallmark finding)
- Pain with passive stretch of muscles in the compartment (e.g., passive extension of fingers if forearm compartment involved)
- Tight, swollen compartment on palpation
- Paresthesia and weakness (late)
Common Sites: Anterior compartment of leg (tibia/fibula fracture), forearm, thigh.
Field Management:
- Recognize the clinical suspicion based on disproportionate pain
- Remove any tight dressings or splints (may worsen compartment pressure)
- Elevate limb only to heart level (elevation beyond this reduces compartment perfusion)
- EMERGENT evacuation to hospital for fasciotomy (surgical incision to relieve pressure)
Clinical Scenarios
Field Management:
- Treat as a fracture (assume positive until proven otherwise)
- SAM splint the ankle, immobilizing the ankle joint. Pad bony prominences.
- Recheck distal pulses, sensation, and motor function after splinting
- Elevate and apply cold (snow/cold water) to reduce swelling
- Pain control: acetaminophen or ibuprofen if available
- Evacuation: URGENT (same day if possible) for imaging and evaluation
- If neurovascular compromise develops (pulse disappears, foot becomes pale or cold), adjust splint immediately and prepare for emergency descent
Immediate Actions:
- Splint the leg in the position found with a well-padded rigid or anatomic splint (pad between the legs and secure the injured leg to the uninjured leg). Do not attempt realignment or traction — that is higher-level care.
- Treat for shock: position supine and flat, insulate from the ground, and prevent heat loss.
- Document CSM (circulation, sensation, motion) serially — recheck and record every 15 minutes, noting times.
- EMERGENT evacuation by helicopter if available. This patient requires hospital surgery urgently.
- Monitor vitals and neurovascular status continuously.
Knowledge Check
10 questions. Pick an answer to get immediate feedback. Answer order is shuffled each attempt, and your best score is saved on this device.
Summary & Key Takeaways
- Always assess neurovascular status BEFORE and AFTER splinting
- Splint immobilizing joints above and below the fracture
- Open fractures: irrigate gently, cover, splint in position, EMERGENT evacuation
- Compartment syndrome: suspect if pain is out of proportion — requires emergency fasciotomy
- Neurovascular compromise (absent pulse, sensation, or motor function below the injury) = EMERGENT evacuation; splint in position — realignment and reduction are performed by medical professionals
- Ottawa Rules guide imaging decisions (ankle, knee) — any ONE positive criterion counts
- Suspected femur fracture: well-padded rigid or anatomic splint, shock care, urgent evacuation (traction splints are an EMS device)