Metacarpal fractures are a type of fracture which trauma surgeons face frequently. Restoration of hand function is the primary objective. The aim of this study was to investigate whether life-like fractures of human cadaveric metacarpals with intact soft-tissue envelope could be simulated for surgical education. Six fresh-frozen human distal forearm and hand specimens were fractured on a custom-made drop-test bench. This reproducible method is based on a weight falling from a predefined height onto the fixed specimens. All fractures were analyzed by fluoroscopy and CT. In all specimens included in this study, several typical lesions were created, resulting in a total of 19 metacarpal fractures. There were 6 fractures involving the capital region, 5 metaphyseal fractures with partial involvement of the diaphysis and 7 pure diaphyseal fractures. One metacarpal comprised a trifocal lesion consisting of a metaphyseal undisplaced fracture, a diaphyseal wedge fracture and a non-displaced articular base fracture. Human cadaveric metacarpals with intact soft tissue can be successfully fractured by a drop-test bench setup. The resulting fractures resemble realistic fracture patterns. Load and exact load angle seem to be critical. Such fractured specimens can be used in surgical education courses. Courses providing fractured specimens with intact soft-tissue envelope can improve clinical teaching for young surgeons and experts alike.
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http://dx.doi.org/10.1016/j.hansur.2022.01.007 | DOI Listing |
Background: Multiple approaches exist for operative fixation of metacarpal fractures; with common treatments including lag screw fixation or open-reduction internal fixation (ORIF) with plates and screws. Recently, the adaptation of intramedullary screw (IMS) placement has allowed for an essentially closed approach with stable fixation and theoretically improved outcomes. Thus, we sought to compare such approaches to ultimately determine the superior method for achieving the goal of return to normal function.
View Article and Find Full Text PDFJ Clin Med
January 2025
Department of Plastic, Aesthetic and Reconstructive Surgery, Kepler University Hospital Linz, Krankenhausstrasse 9, 4020 Linz, Austria.
Vascularized bone grafts have been successfully established for complex bone defects. The integration of three-dimensional (3D) simulation and printing technology may aid in more precise surgical planning and intraoperative bone shaping. The purpose of the present study was to describe the implementation and surgical application of this innovative technology for bone reconstruction.
View Article and Find Full Text PDFEur J Trauma Emerg Surg
January 2025
Department of Hand and Upper Extremity Surgery, Edouard Herriot Hospital, 5 place d'Arsonval, Lyon, 69003, France.
Purpose: To report the radiological outcomes and complications of the Masquelet induced membrane technique (IMT) for acute bone reconstruction in complex hand injuries.
Methods: We retrospectively reviewed 22 patients treated primarily by the IMT for bone defect of the phalanx and/or metacarpals bones in 26 injured digits. The median bone defect length was 17 mm (IQR 13-25).
J Hand Surg Eur Vol
January 2025
Department of Hand Surgery, Beijing Jishuitan Hospital, Capital Medical University, Beijing 100035, China.
Nineteen patients presenting with a secondary metacarpal fracture after a previously fractured little metacarpal were retrospectively reviewed. The new injury was more likely to be at the original fracture site in patients with shaft fractures than those with neck fractures. IV.
View Article and Find Full Text PDFJ Orthop Surg Res
January 2025
Department of Orthopaedics and Traumatology, Selçuk University Faculty of Medicine, Konya, 42130, Türkiye.
Background And Objectives: Bennett fractures are intra-articular fractures of the first metacarpal, typically resulting from axial loading. The optimal surgical method for fixation remains a topic of ongoing debate. This study aims to evaluate and compare the biomechanical properties of different fixation techniques.
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