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Orthopaedic Surgery - Shin Splints
Basics
Shin splints, more accurately termed:
Medial tibial stress syndrome
are a common overuse condition characterized by:
Exercise-related pain along the posteromedial border of the tibia.
They usually develop after repetitive:
Running
Jumping
or other high-impact activity, particularly when training volume or intensity increases too quickly.
Synonyms
Common terms include:
Medial tibial stress syndrome
Tibial periostitis
Runner’s leg
and the traditional term:
Shin splints.
Nature of the Disorder
Medial tibial stress syndrome is best considered part of a:
Bone and periosteal stress response
caused by repetitive mechanical loading of the:
Tibia
and surrounding musculofascial attachments.
The condition differs from a discrete:
Tibial stress fracture, although both lie along the same spectrum of repetitive loading injury.
Epidemiology
Shin splints are especially common among:
Adolescents
Young adults
Runners
and athletes undergoing:
Conditioning programs.
Incidence
Reported incidence among runners is approximately:
13.6–20%.
Rates vary according to:
Training population
Running volume
and the diagnostic criteria used.
Risk Factors
Important risk factors include:
Running or jogging
Recent increase in mileage
Recent increase in speed or intensity
Training errors
Foot pronation
Pes planus
Higher body mass index
Female sex
Poor conditioning
Training Errors
A sudden increase in:
Running distance
Frequency
Hill work
or
Intensity
is a common precipitating factor.
The tissues of the leg may not have sufficient time to adapt to the new:
Mechanical load.
Foot Mechanics
Excessive:
Pronation
or a relatively flat foot may increase rotational and bending forces through the:
Tibia.
These biomechanical factors may contribute to repetitive stress along the:
Medial tibial border.
Etiology
Historically, shin splints were attributed mainly to:
Periostitis
at the muscular attachments of the:
Soleus
and
Posterior tibial structures.
Current concepts also recognize repetitive:
Tibial bone stress
as an important component of the disorder.
Muscular Traction
Repeated traction from muscles attaching along the medial tibia, particularly the:
Soleus
may contribute to irritation of the:
Periosteum
and underlying bone.
Repetitive Impact
Repeated ground-reaction forces generated during:
Running
and
Jumping
produce cyclical bending of the tibia.
When these loads exceed the bone’s capacity to remodel, pain may develop.
Associated Conditions
Medial tibial stress syndrome is commonly seen in:
Athletes undergoing conditioning
especially runners and military recruits.
Lower-Limb Deformity
Any biomechanical abnormality that increases stress through the leg may contribute, including:
Pes planus
Excessive pronation
and selected abnormalities of:
Lower-extremity alignment.
Diagnosis
The diagnosis is primarily:
Clinical.
A careful history and examination are important because shin splints can resemble more serious disorders such as:
Tibial stress fracture
and
Chronic exertional compartment syndrome.
Signs and Symptoms
Pain is usually induced by:
Exercise
and is located along the:
Posteromedial border of the distal tibia.
Character of Pain
The pain is typically:
Dull
Aching
or
Diffuse.
In some patients it may become:
Quite intense.
Timing of Pain
Symptoms often appear:
At the beginning of exercise.
Pain may continue during or after the workout but generally:
Improves with rest.
Progression
With continued training despite symptoms, pain may become:
More persistent
and may eventually limit:
Running performance.
Pain at rest or focal severe pain should raise concern for:
Stress fracture.
Physical Examination
The key finding is:
Diffuse tenderness along the posteromedial tibial border.
Distribution of Tenderness
Tenderness generally extends over a:
Relatively long segment
of the tibia rather than being confined to one very small:
Focal point.
This helps differentiate medial tibial stress syndrome from a:
Stress fracture.
Pain With Muscle Testing
Symptoms may be reproduced with resisted:
Plantarflexion
and
Inversion
because these movements recruit muscles attached near the symptomatic tibial region.
Inspection
There is usually little visible abnormality.
Occasionally there may be mild:
Soft-tissue swelling
or tenderness without marked erythema.
Gait and Foot Examination
Examine:
Foot posture
Arch height
Pronation
Ankle motion
and overall:
Running or walking mechanics.
Stress Fracture Concern
A tibial stress fracture should be suspected when tenderness is:
Highly localized
rather than diffuse.
Other concerning features include:
Pain at rest
Night pain
Pain with walking
and progressively worsening symptoms despite:
Activity reduction.
Chronic Exertional Compartment Syndrome
Chronic exertional compartment syndrome may present with exercise-induced pain but typically has a different pattern.
Symptoms often involve the:
Anterolateral leg
and may include:
Tightness
Neurologic symptoms
or temporary:
Weakness.
Fascial Herniation
Patients with exertional compartment syndrome may occasionally have visible or palpable:
Fascial hernias.
Imaging
Plain Radiographs
Plain radiographs are often:
Normal
in medial tibial stress syndrome.
Their main role is to exclude:
Stress fracture
or another bony abnormality.
Serial Radiographs
Early stress fractures may also be radiographically occult.
Therefore, normal initial radiographs do not completely exclude a:
Bone stress injury.
Bone Scintigraphy
Historically, bone scanning may show:
Diffuse longitudinal uptake
along the posteromedial tibia in medial tibial stress syndrome.
Stress Fracture Bone Scan
A stress fracture more commonly produces:
Focal
or
Transverse increased uptake
rather than a long diffuse pattern.
MRI
MRI is highly useful for distinguishing:
Medial tibial stress syndrome
from
Stress fracture.
It can identify:
Periosteal edema
Bone marrow edema
and, in more advanced stress injury,
A fracture line.
Compartment Pressure Testing
When:
Chronic exertional compartment syndrome
is strongly suspected, compartment pressure measurements before and after:
Exercise
may be considered.
This is most relevant when symptoms are:
Anterolateral
and consistently appear at a reproducible level of exertion.
Pathological Findings
The disorder has historically been associated with inflammation or stress reaction involving the:
Periosteum
and attachment sites of the:
Soleus
and nearby posterior tibial musculature.
Modern evidence also supports an underlying:
Tibial bone stress response.
Differential Diagnosis
The two most important conditions to distinguish are:
Tibial stress fracture
and
Chronic exertional compartment syndrome.
Tibial Stress Fracture
Stress fractures typically cause:
More focal tenderness
and may progress to pain with:
Walking
or
Rest.
MRI is helpful when the diagnosis is uncertain.
Chronic Exertional Compartment Syndrome
This condition typically causes:
Tightness or pain during exercise
that resolves after stopping.
Possible associated symptoms include:
Paresthesia
Weakness
and a feeling of:
Leg fullness or pressure.
Treatment
General Principles
Treatment is primarily:
Nonoperative.
The cornerstone of management is reducing mechanical loading until symptoms improve.
Activity Modification
Training should be reduced to:
Below the level that provokes symptoms.
This may require decreasing:
Mileage
Speed
Running frequency
or temporarily stopping:
Impact exercise.
Relative Rest
Complete inactivity is usually unnecessary.
Athletes may maintain fitness with low-impact activities such as:
Cycling
Swimming
or other exercises that do not reproduce pain.
Ice
Ice may be applied after activity for:
Symptomatic relief.
Physical Therapy
Physical therapy may assist with:
Calf flexibility
Lower-extremity strengthening
Core strengthening
Foot and ankle mechanics
and gradual return to:
Running.
Stretching
Once acute symptoms improve, stretching may focus on the:
Gastrocnemius
Soleus
and other lower-extremity structures.
Strengthening
Rehabilitation may include strengthening of:
Calf muscles
Foot intrinsic muscles
Hip abductors
Core musculature.
Gait Analysis
Running-form assessment can help identify:
Biomechanical abnormalities
or training patterns that increase repetitive tibial loading.
Orthotics and Footwear
Selected patients with excessive pronation may benefit from:
Orthotic inserts
or
Shoe modification.
The goal is to reduce excessive:
Foot pronation
and improve load distribution.
Training Modification
Long-term prevention requires identifying and correcting:
Training errors.
Mileage and intensity should increase:
Gradually.
Extracorporeal Shock-Wave Therapy
Extracorporeal shock-wave therapy has been studied for persistent medial tibial stress syndrome.
Some studies have suggested:
Earlier symptom improvement
but it is not required for most patients.
Medication
NSAIDs
NSAIDs may provide short-term relief of:
Pain
and
Inflammation.
Analgesics
Other simple analgesics, including:
Acetaminophen
may also be used when appropriate.
Medication should not be used to allow continued training through:
Significant pain.
Surgery
Surgery is:
Rarely required.
Surgical Indications
Only patients with persistent symptoms despite a documented course of:
Maximal nonoperative treatment
should be considered for operative management.
Fascial Release
A:
Posteromedial fascial release
has occasionally been used for refractory cases.
Results are variable, and surgery is reserved for:
Highly selected patients.
Follow-Up
Patients should be reassessed if symptoms:
Persist
Become focal
or worsen despite appropriate:
Activity modification.
Return to Running
Return to impact activity should be:
Gradual.
The athlete should first be able to:
Walk pain free
Hop without pain
and perform basic strengthening exercises without significant:
Tibial discomfort.
Training Progression
Mileage and intensity should be increased:
Incrementally
rather than returning immediately to the previous training level.
Prognosis
The prognosis is generally:
Good.
Most patients improve with:
Nonoperative treatment.
Recurrence
Recurrence is common when the athlete returns too rapidly to:
High training volume
or fails to correct the underlying:
Training error or biomechanical problem.
Prevention of Recurrence
Helpful measures include:
Gradual training progression
Appropriate footwear
Correction of excessive pronation when clinically relevant
Strength and flexibility training
and adequate:
Recovery time.
Complications
The most important potential complication is failure to recognize a:
Tibial stress fracture.
Complete Fracture
An untreated stress fracture may progress to a:
Complete fracture
with possible:
Displacement
and substantially prolonged recovery.
Missed Compartment Syndrome
Failure to identify chronic exertional compartment syndrome may result in:
Persistent exercise limitation
and ongoing:
Neurologic or muscular symptoms.
Patient Monitoring
Monitor:
Pain location
Extent of tenderness
Walking tolerance
Running progression
and response to:
Training modification and rehabilitation.
Development of focal pain, rest pain, or worsening symptoms should prompt evaluation for:
Stress fracture or another diagnosis.
Key Principle
Shin splints, or medial tibial stress syndrome, are an overuse injury characterized by diffuse exercise-related pain and tenderness along the posteromedial tibial border.
The most important precipitating factors are:
Rapid increases in running volume or intensity and repetitive impact loading.
Treatment is usually successful with:
Activity modification, ice, stretching, strengthening, gait and footwear assessment, and gradual return to running.
Persistent focal pain or worsening symptoms should prompt investigation for:
Tibial stress fracture, while anterolateral exertional pain with tightness or neurologic symptoms should raise concern for:
Chronic exertional compartment syndrome.