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Int Orthop ; 46(9): 2165-2176, 2022 09.
Article in English | MEDLINE | ID: mdl-35690670

ABSTRACT

PURPOSE: Two different locking plate designs are now being used for volar plating of the distal radius fractures based on the freedom of screw direction; the fixed-angle, and the variable-angle (polyaxial) plates. We investigated the clinical and radiographic outcomes of both designs. METHODS: We reviewed 96 patients with 113 unstable distal radius fractures that were operated on with volar locking plates. The patients' mean age was 41 years. Fixed-angle volar locking plates were utilized in 65 fractures and variable-angle volar locking plates in 48 fractures through modified Henry approach or extended carpal tunnel approach. Full clinical and radiographic evaluation was done for all patients with a mean follow-up of 14 months. RESULTS: All patients had acceptable clinical and radiographic parameters. The overall functional results (Mayo score, Quick Disability of Arm, Shoulder, and Hand (Q-DASH) score, Range of motion (ROM), and grip strength) were in favor of the variable-angle plate. The radiographic parameters were better with the variable-angle group. The variable-angle group recorded less operative time but more mean image intensifier exposure time. There were two cases of flexor tendon rupture with the fixed-angle group. Fixation with the fixed-angle system needed K-wire augmentation more than the variable-angle group. There was a positive correlation between hand dominance and the final score. CONCLUSION: Distal radius volar locking plates yield satisfactory results comparable among different designs. In our series, the variable-angle system showed slightly better function and radiographic outcomes. Supplementary K-wires were needed more frequently with the fixed-angle system.


Subject(s)
Radius Fractures , Adult , Bone Plates , Bone Screws , Bone Wires , Fracture Fixation, Internal/adverse effects , Fracture Fixation, Internal/methods , Humans , Radius Fractures/diagnostic imaging , Radius Fractures/surgery , Range of Motion, Articular
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