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Early Functional Treatment of Proximal Phalanx Fractures in Children: A Case Series Study
Stefan Bohr, Toghrul Mammadli1
1From the Department of Plastic and Hand Surgery, Burn Center, University Clinics RWTH Aachen.
Insights
Nonsurgical treatment using dynamic splinting effectively heals pediatric proximal phalanx fractures, restoring hand function quickly. This approach offers good outcomes with minimal deformity and pain, making it a viable alternative to surgery.
Area of Science:
- Orthopedic Surgery
- Pediatric Orthopedics
- Hand Surgery
Background:
- Pediatric fractures of the proximal phalanx require careful management to ensure optimal hand function.
- Established criteria for surgical intervention exist, but non-surgical options warrant further investigation.
Purpose of the Study:
- To evaluate the efficacy and indications for non-surgical treatment of pediatric proximal phalanx fractures.
- To assess the outcomes of early functional treatment principles in this patient group.
Main Methods:
- A case series of 30 pediatric patients with proximal phalanx fractures treated non-surgically.
- Utilized dynamic splinting and fiberglass casting, with assessments at 4-8 weeks.
- Measured outcomes using Disabilities of the Arm, Shoulder, and Hand (DASH) score, fingertip-to-palm distance, and dynamic pain interval.
Main Results:
- All fractures healed without significant bony deformity.
- Good functional results, indicated by DASH scores, were achieved within 2 weeks of splint removal.
- Near-full range of motion and absence of pain during active motion were observed.
Conclusions:
- Non-surgical treatment with dynamic splinting is a safe and effective option for most pediatric proximal phalanx fractures.
- This method allows for shorter immobilization periods and faster restoration of hand function compared to surgical interventions.
Objectives:
The objective of this study was to assess proper indications a nonsurgical treatment regime for pediatric fractures of the proximal phalanx based on principles of early functional treatment.
Methods:
A case series (evidence level 4) of 30 pediatric patients with fractures of the proximal phalanx were treated nonsurgically using protective dynamic splinting techniques and fiberglass casting material. Assessments were performed clinically and by x-ray within 4 to 8 weeks of commencement of treatment. Outcome measures included Disabilities of the Arm, Shoulder, and Hand score questionnaire as well as fingertip palm distance (cm) and dynamic pain interval assessments.
Results:
All fractures healed without any clinically apparent bony deformities. Disabilities of the Arm, Shoulder, and Hand scores were of 25.17 ± 5.29 (mean ± SD), which indicated good functional results usually within 2 weeks of removal of dynamic splints. Fingertip palm distance measurements at endpoints were of 0.17 ± 0.27 cm (mean ± SD), which indicated an almost free range of finger motion. Absence of pain perception under active finger motion (dynamic pain interval) was noted at 14.10 ± 6.79 days (mean ± SD).
Conclusions:
Well-established criteria for surgical treatment of phalangeal fractures exist. However, in our experience, a majority of pediatric fractures of the proximal phalanx can be safely treated nonsurgically with dynamic splinting along with shorter intervals of immobilization of the affected fingers and faster restoration of overall hand function compared to surgical treatment.
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