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Bruise Location in Supracondylar Humerus Fractures Predicts Specific Neurovascular Injuries
Jacob D Schultz1, Andrew B Rees1, Lucas C Wollenman1
1School of Medicine.
Insights
Bruise location in pediatric supracondylar humerus fractures (SCHFs) helps predict neurovascular injury. Anteromedial bruising indicates median nerve injury, while anterolateral bruising suggests radial nerve injury.
Area of Science:
- Pediatric Orthopedics
- Trauma Surgery
- Pediatric Surgery
Background:
- Soft tissue injury in pediatric supracondylar humerus fractures (SCHFs) is a predictor of neurovascular injury.
- The specific neurovascular structure injured may depend on fracture displacement and soft tissue injury direction.
Purpose of the Study:
- To determine if bruise location following SCHF indicates maximal soft tissue injury.
- To assess if bruise location is a prognosticator for specific neurovascular structure injury.
Main Methods:
- Retrospective review of 2845 SCHFs treated between 2007 and 2017.
- Classification of bruise location (anterior, anterolateral, anteromedial, posterior).
- Correlation of bruise location with neurovascular injury patterns.
Main Results:
- Of 128 patients with neurovascular injury, anteromedial bruising was associated with vascular injury (62.2%) and median nerve injury (88.9%).
- Anterolateral bruising correlated with radial nerve injuries (96.0%).
- Combining bruise location with radiographic evaluation improved diagnostic accuracy to 82.0%.
Conclusions:
- Bruise location is a valuable adjunct for diagnosing neurovascular injury in pediatric SCHFs.
- Anteromedial bruising suggests median nerve injury; anterolateral bruising suggests radial nerve injury.
- This finding aids diagnosis in noncooperative children or less experienced clinicians.
Purpose:
The presence of soft tissue injury in pediatric supracondylar humerus fractures (SCHFs) has been shown to be an independent predictor of any neurovascular injury. Potentially expanding this concept, the specific neurovascular structure injured around the elbow is thought to be dependent upon the direction and magnitude of fracture displacement and subsequent soft tissue injury. Therefore, it was hypothesized that the bruise location following SCHF is indicative of the anatomic location of maximal soft tissue injury and therefore is a specific prognosticator of which neurovascular structure may be injured.
Methods:
Retrospective chart review of all SCHFs treated at a tertiary pediatric hospital from 2007 to 2017 collected information on bruise location, neurovascular injury patterns, and outcomes. Bruise location was classified as anterior, anterolateral, anteromedial, or posterior. Injury radiographs were reviewed by a blinded pediatric orthopaedic surgeon to neurovascular structure injured.
Results:
Of 2845 SCHFs identified, 267 (9.4%) had concomitant neurovascular injury-of which 128 (47.9%) met inclusion criteria. Among the vascular injuries, all bruising was anteromedial (28/45, 62.2%, P<0.05) or anterior (17/45, 37.8%, P>0.05). Fractures with anteromedial bruising correlated with median nerve injury (24/27, 88.9%, P<0.05), whereas fractures with anterolateral bruising correlated with radial nerve injuries (24/25, 96.0%, P<0.05). Bruising or radiographic evaluation correctly identified 60.2% and 64.1% of neurovascular injuries, respectively, whereas the combination identified 82.0% of neurovascular injuries correctly. Bruise location identified 23 neurovascular injuries not predicted by radiographic evaluation alone.
Conclusion:
Bruise location is an important physical examination finding that can be used as an adjunct to improve the diagnostic accuracy of neurovascular injury in SCHFs in conjunction with neurovascular physical examination and radiographic evaluation. SCHFs with anterior or anteromedial bruising should raise concern for vascular injury. In addition, anteromedial bruising is predictive of a median nerve injury and anterolateral bruising is predictive of radial nerve injury. This adjunct diagnostic is particularly helpful in a noncooperative child or if performed by a clinician with limited experience in diagnosing neurovascular injuries or interpreting pediatric elbow radiographs.
Level Of Evidence:
Level IV, case series.
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