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      Distal humeral corrective osteotomy for treatment of supracondylar fracture malunions in children

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          Abstract

          Purpose:

          This study aimed to determine the functional and radiographic outcomes following corrective distal humeral osteotomies for the treatment of supracondylar fracture malunions in children. We hypothesized that such secondary reconstructive procedures could restore a reasonable and near-normal amount of functionality in a large patient cohort at a tertiary referral center.

          Methods:

          We retrospectively reviewed the clinical and radiological records of 38 children who underwent corrective osteotomy for posttraumatic supracondylar humeral malunion using K-wire fixation. All clinical data were extracted after chart review, including age, sex, dominant side whenever available, follow-up duration, and elbow range of motion preoperatively and at the final visit. Radiographic parameters, including Baumann’s angle, humeroulnar angle, humerocondylar angle, and elbow range of motion were evaluated preoperatively, postoperatively, and at the final visit to identify the surgical correction outcomes.

          Results:

          The mean age of the patients at fracture was 5.6 (±2.7) years, and the mean age at surgical intervention was 8.6 (±2.6) years. The mean follow-up period of the current series was 28.2 (±31.1) months. Baumann’s angle, humeroulnar angle, and humerocondylar angle were successfully restored to physiological ranges (72.6°, 5.4°, and 36.1°, respectively). Postoperatively, elbow extension improved from -22° (±5.7) to -2.7° (±7.2) versus flexion from 115° (±13.2) to 128.2° (±11.1). Three revision surgeries (8%) were encountered.

          Conclusions:

          Corrective osteotomy of the distal humerus with K-wire fixation is a reliable method to efficiently correct malunion of the distal humerus in different planes, thereby improving elbow range of motion and appearance.

          Level of evidence:

          level IV: Retrospective therapeutic study.

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          Most cited references24

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          Three-dimensional corrective osteotomy of malunited fractures of the upper extremity with use of a computer simulation system.

          Three-dimensional anatomical correction is desirable for the treatment of a long-bone deformity of the upper extremity. We developed an original system, including a three-dimensional computer simulation program and a custom-made surgical device designed on the basis of simulation, to achieve accurate results. In this study, we investigated the clinical application of this system using a corrective osteotomy of malunited fractures of the upper extremity. Twenty-two patients with a long-bone deformity of the upper extremity (four with a cubitus varus deformity, ten with a malunited forearm fracture, and eight with a malunited distal radial fracture) participated in this study. Three-dimensional computer models of the affected and contralateral, normal bones were constructed with use of data from computed tomography, and a deformity correction was simulated. A custom-made osteotomy template was designed and manufactured to reproduce the preoperative simulation during the actual surgery. When we performed the surgery, we placed the template on the bone surface, cut the bone through a slit on the template, and corrected the deformity as preoperatively simulated; this was followed by internal fixation. All patients underwent radiographic and clinical evaluations before surgery and at the time of the most recent follow-up. A corrective osteotomy was achieved as simulated in all patients. Osseous union occurred in all patients within six months. Regarding cubitus varus deformity, the humerus-elbow-wrist angle and the anterior tilt of the distal part of the humerus were an average of 2 degrees and 28 degrees, respectively, after surgery. Radiographically, the preoperative angular deformities were nearly nonexistent after surgery. All radiographic parameters for malunited distal radial fractures were normalized. The range of forearm rotation in patients with forearm malunion and the range of wrist flexion-extension in patients with a malunited distal radial fracture improved after surgery. Corrective osteotomy for a malunited fracture of the upper extremity with use of computer simulation and a custom-designed osteotomy template can accurately correct the deformity and improve the clinical outcome.
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            Loss of pin fixation in displaced supracondylar humeral fractures in children: causes and prevention.

            Although the results are generally good following pin fixation of supracondylar humeral fractures in children, occasionally there is postoperative displacement. The purposes of the present study were to identify the causes leading to loss of fixation after pin fixation and to present methods for prevention. We evaluated 322 displaced supracondylar humeral fractures that had been treated with percutaneous pin fixation. We examined fracture classification, pin configuration, intraoperative alignment after fixation, change in alignment after fixation, details of additional procedures, and final radiographic and clinical outcomes. Adequate radiographs were available for 279 of the 322 fractures. Eight (2.9%) of the 279 fractures were associated with postoperative loss of fixation; all eight were Gartland type-III fractures. Seven of these eight fractures initially had been treated with two lateral-entry pins, and one had been treated with two crossed pins. In patients with Gartland type-III fractures, loss of fixation was successfully avoided more often when three pins were used (with fixation being maintained in thirty-seven of thirty-seven patients) as opposed to when two lateral-entry pins were used (with fixation being maintained in thirty-five of forty-two patients) (p = 0.01). In all cases, loss of fixation was due to technical errors that were identifiable on the intraoperative fluoroscopic images and that could have been prevented with proper technique. We identified three types of pin-fixation errors: (1) failure to engage both fragments with two pins or more, (2) failure to achieve bicortical fixation with two pins or more, and (3) failure to achieve adequate pin separation (>2 mm) at the fracture site. Postoperative displacement following pin fixation of supracondylar humeral fractures in children is uncommon. In the present series, loss of fixation was most likely to occur when Gartland type-III fractures were treated with two lateral-entry pins. There were no failures when three pins were used. In all cases of failure, there were identifiable technical errors in pin placement. Therapeutic Level III. See Instructions to Authors for a complete description of levels of evidence.
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              Preoperative, computer simulation-based, three-dimensional corrective osteotomy for cubitus varus deformity with use of a custom-designed surgical device.

              Cubitus varus deformity after a supracondylar fracture classically includes varus, extension, and internal rotation components. However, to our knowledge, no reliable surgical method for three-dimensional corrective osteotomy has been established. We developed an intraoperative guide system involving a custom-made surgical template designed on the basis of a three-dimensional computer simulation incorporating computed tomography (CT) data. We aimed to investigate the feasibility of this novel technique for correcting cubitus varus deformity. Thirty consecutive patients (twenty-three males and seven females) with a cubitus varus deformity resulting from the malunion of a distal humeral supracondylar fracture were included in this study. Between October 2003 and May 2011, the patients underwent a three-dimensional corrective osteotomy with use of a custom-made surgical template. The patients were then followed for a minimum of twelve months. We evaluated radiographic parameters, including the humerus-elbow-wrist angle and tilting angle, as well as the ranges of motion of the elbow and shoulder at the time of the most recent follow-up. An overall clinical evaluation was performed. Bone union was achieved at a mean of four months after surgery. The mean humerus-elbow-wrist angle and tilting angle on the affected side improved significantly from 18.2° (varus) and 25.0°, respectively, before surgery, to 5.8° (valgus) and 38.0°, respectively, after surgery. Hyperextension of the elbow and internal rotation of the shoulder were normalized in all patients. Early plate breakage was observed in one patient. One patient had mild recurrence of varus deformity. Twenty-seven patients had an excellent result, three had a good result, and none had a poor result. Three-dimensional corrective osteotomy with the use of a custom-made surgical template that is designed and produced on the basis of computer simulation is a feasible and useful treatment option for cubitus varus deformity.
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                Author and article information

                Journal
                J Child Orthop
                J Child Orthop
                CHO
                spcho
                Journal of Children's Orthopaedics
                SAGE Publications (Sage UK: London, England )
                1863-2521
                1863-2548
                18 March 2023
                June 2023
                : 17
                : 3
                : 232-238
                Affiliations
                [1 ]Department of Orthopedic Surgery, King Fahad Medical City, Riyadh, Saudi Arabia
                [2 ]Department of Orthopedic Surgery, Royal Medical Services, Amman, Jordan
                [3 ]Department of Pediatric Orthopedics and Foot and Ankle Surgery, Orthopedic Hospital Speising, Vienna, Austria
                Author notes
                [*]Sebastian Farr, Department of Pediatric Orthopedics and Foot and Ankle Surgery, Orthopedic Hospital Speising, Speisingerstrasse 109, 1130 Vienna, Austria. Email: sebastian.farr@ 123456oss.at
                Author information
                https://orcid.org/0000-0003-2903-7723
                Article
                10.1177_18632521231156942
                10.1177/18632521231156942
                10242378
                75a1afdb-4a9e-4f93-8522-3cc70716afa8
                © The Author(s) 2023

                This article is distributed under the terms of the Creative Commons Attribution-NonCommercial 4.0 License ( https://creativecommons.org/licenses/by-nc/4.0/) which permits non-commercial use, reproduction and distribution of the work without further permission provided the original work is attributed as specified on the SAGE and Open Access page( https://us.sagepub.com/en-us/nam/open-access-at-sage).

                History
                : 11 December 2022
                : 26 January 2023
                Funding
                Funded by: Exzellenzfeld Orthopädie der Vinzenz Gruppe, ;
                Categories
                Trauma
                Original Clinical Articles
                Custom metadata
                ts1

                Orthopedics
                supracondylar fracture,malunion,cubitus varus,cubitus valgus,flexion osteotomy
                Orthopedics
                supracondylar fracture, malunion, cubitus varus, cubitus valgus, flexion osteotomy

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