Three‐Dimensional Fracture Mapping of the Terrible Triad of the Elbow: Morphological Characteristics and Clinical Implications
Shuo Zhang, Xinzhe Ma, Shibo Zhai, Jiawen Wei, Pengfei Shen, Boan Zhu, Zhiyong Hou, Wei Chen, Lijie MaABSTRACT
Background
The morphology of fractures in the terrible triad of the elbow (TTE) is complex, and precise management relies on a profound understanding of this morphology. This study aims to systematically analyze, for the first time, the distribution and morphological characteristics of TTE fracture lines using three‐dimensional (3D) imaging technology.
Methods
Clinical data and thin‐slice CT scans of 112 patients with TTE from January 2021 to December 2024 were retrospectively included. 3D fracture models were reconstructed using Mimics software. Virtual reduction and standardized alignment were performed using 3‐matic software. Fracture lines were mapped onto standard ulnar and radial templates, and 3D fracture heat maps were generated using the E‐3D software to demonstrate the high‐frequency distribution zones of the fracture lines visually. Statistical analysis was performed using SPSS software (version 21.0, IBM Corp., Armonk, NY, USA). Continuous variables were compared using one‐way analysis of variance (ANOVA), and categorical variables were compared using the chi‐square test ( χ 2 test). A two‐tailed p < 0.05 was considered statistically significant.
Results
The study revealed distinct patterns in the distribution of TTE fracture lines. In the coronoid process, the fracture “hot zone” presented as an annular high‐density band extending from the lateral middle aspect to the tip. In the radial head, an oblique high‐density band was observed in the anterolateral quadrant of the articular surface. The radial neck exhibited a circumferential high‐density zone, which was most prominent in the anterolateral aspect. Statistical analysis indicated a significant correlation between age and fracture complexity; the proportion of Regan–Morrey type III coronoid fractures and Mason type III radial head fractures was significantly higher in elderly patients (> 60 years) ( p < 0.05), suggesting that advanced age is a significant risk factor for complex fractures.
Conclusion
This study is the first to visually reveal the Collaborative Distribution Patterns of TTE fracture lines using 3D fracture mapping technology. This model provides morphological evidence for understanding the injury mechanism of TTE and offers an anatomical framework that may assist surgeons in individualizing surgical approaches and fixation strategies.