
AimsThis study aims to describe a new method that may be used as a supplement to evaluate humeral rotational alignment during intramedullary nail (IMN) insertion using the profile of the perpendicular peak of the greater tuberosity and its relation to the transepicondylar axis. We called this angle the greater tuberosity version angle (GTVA).MethodsThis study analyzed 506 cadaveric humeri of adult patients. All humeri were CT scanned using 0.625 × 0.625 × 0.625 mm cubic voxels. The images acquired were used to generate 3D surface models of the humerus. Next, 3D landmarks were automatically calculated on each 3D bone using custom-written C++ software. The anatomical landmarks analyzed were the transepicondylar axis, the humerus anatomical axis, and the peak of the perpendicular axis of the greater tuberosity. Lastly, the angle between the transepicondylar axis and the greater tuberosity axis was calculated and defined as the GTVA.ResultsThe value of GTVA was 20.9° (SD 4.7°) (95% CI 20.47° to 21.3°). Results of analysis of variance revealed that females had a statistically significant larger angle of 21.95° (SD 4.49°) compared to males, which were found to be 20.49° (SD 4.8°) (p = 0.001).ConclusionThis study identified a consistent relationship between palpable anatomical landmarks, enhancing IMN accuracy by utilizing 3D CT scans and replicating a 20.9° angle from the greater tuberosity to the transepicondylar axis. Using this angle as a secondary reference may help mitigate the complications associated with malrotation of the humerus following IMN. However, future trials are needed for clinical validation.Cite this article: Bone Jt Open 2024;5(10):929–936.
Orthopedic surgery, intramedullary nailing, 3d ct scans, Shoulder & Elbow, alignment, humeral fractures, epicondylar axis, variance, biceps groove, malrotation, humerus, imaging studies, transepicondylar axis, ct scanned, intramedullary nail, greater tuberosity, RD701-811
Orthopedic surgery, intramedullary nailing, 3d ct scans, Shoulder & Elbow, alignment, humeral fractures, epicondylar axis, variance, biceps groove, malrotation, humerus, imaging studies, transepicondylar axis, ct scanned, intramedullary nail, greater tuberosity, RD701-811
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