Intra-articular distal humerus fractures with an associated coronal shear capitellar fragment present a challenge for stable internal fixation. Adequate visualization and fixation of the capitellar shear fragment are difficult to achieve with conventional exposures, including the olecranon osteotomy. The capitellar fragment often translates anterior and proximally and is challenging to visualize with intact soft tissue attachments from a posterior approach. We describe a surgical exposure that releases the lateral ulnar collateral ligament in addition to an olecranon osteotomy to allow complete visualization of the entire articular surface. In contrast to an isolated capitellar fracture, the column stability and the posterior cortex are frequently disrupted with distal humerus fractures. Depending on the comminution of the posterior cortex, a supplemental posterolateral plate or headless compression screws can provide fixation to the coronal fracture plane. The lateral ulnar collateral ligament is repaired at the conclusion of fracture stabilization through a bone tunnel or to the plate to restore lateral stability. Despite the release of the ligament and additional soft tissue stripping, there were no cases of elbow instability or avascular necrosis in our case series of 9 patients.
Background: Despite surgical fixation, the scaphoid nonunion rate remains at 3% to 5%. Recent biomechanical studies have demonstrated increased stability with 2-screw constructs. The objective of our study is to determine the preliminary union rate and anatomic feasibility of 2-screw surgical fixation for scaphoid fractures. Methods: This study is a retrospective case series of 25 patients (average age 32 years) with scaphoid fractures treated with 2 parallel headless compression screws (HCS). Postoperative evaluation included Mayo Wrist Score (MWS), range of motion, time to union, and return to activity. Bivariate analysis for gender and Pearson correlation coefficient for body size (height, weight, and body mass index) was conducted against radiographically measured scaphoid width, screw lengths, and the distance between the 2 screws. Results: All fractures healed with an average time to union of 9.9 weeks (median 7.6 weeks; range: 4.1-28.3). The mean MWS was 93.3 (range: 55-100), with 3 complications (12%), one of which affected the outcome of the surgery. The bivariate analysis demonstrated that the female gender was associated with significantly smaller scaphoid width ( P = .004) but a similar distance between the 2 screws ( P = .281). The distance between the 2 screws and the body size demonstrated a weak-to-no correlation. Conclusions: The 2-screw construct for scaphoid fracture achieved a favorable union rate and clinical outcome. Gender was the only variable significantly associated with scaphoid width and screw length. The distance between the screws was constant regardless of gender and body size, indicating that the technique for parallel screw placement can remain consistent. Type of Study: Therapeutic. Level of Evidence: Level IV.
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