Vascular compromise due to arterial injury is a rare but serious complication of a proximal humeral fracture. The aims of this study were to report its incidence in a large urban population, and to identify clinical and radiological factors which are associated with this complication. We also evaluated the results of the use of our protocol for the management of these injuries. A total of 3,497 adult patients with a proximal humeral fracture were managed between January 2015 and December 2022 in a single tertiary trauma centre. Their mean age was 66.7 years (18 to 103) and 2,510 (72%) were female. We compared the demographic data, clinical features, and configuration of those whose fracture was complicated by vascular compromise with those of the remaining patients. The incidence of vascular compromise was calculated from national population data, and predictive factors for its occurrence were investigated using univariate analysis.Aims
Methods
Aims. The Wrightington classification system of
This study aimed to answer the following questions: do 3D-printed models lead to a more accurate recognition of the pattern of complex fractures of the elbow?; do 3D-printed models lead to a more reliable recognition of the pattern of these injuries?; and do junior surgeons benefit more from 3D-printed models than senior surgeons? A total of 15 orthopaedic trauma surgeons (seven juniors, eight seniors) evaluated 20 complex elbow fractures for their overall pattern (i.e. varus posterior medial rotational injury, terrible triad injury, radial head fracture with posterolateral dislocation, anterior (trans-)olecranon fracture-dislocation, posterior (trans-)olecranon fracture-dislocation) and their specific characteristics. First, fractures were assessed based on radiographs and 2D and 3D CT scans; and in a subsequent round, one month later, with additional 3D-printed models. Diagnostic accuracy (acc) and inter-surgeon reliability (κ) were determined for each assessment.Aims
Methods
Heterotopic ossification (HO) is a potentially devastating complication of the surgical treatment of a proximal humeral fracture. The literature on the rate and risk factors for the development of HO under these circumstances is lacking. The aim of this study was to determine the incidence and risk factors for the development of HO in these patients. A retrospective analysis of 170 patients who underwent operative treatment for a proximal humeral fracture between 2005 and 2016, in a single institution, was undertaken. The mean follow-up was 18.2 months (1.5 to 140). The presence of HO was identified on follow-up radiographs.Aims
Methods
We retrospectively reviewed 89 consecutive patients
(45 men and 44 women) with a mean age at the time of injury of 58
years (18 to 97) who had undergone external fixation after sustaining
a unilateral fracture of the distal humerus. Our objectives were
to determine the incidence of heterotopic ossification (HO); identify
risk factors associated with the development of HO; and characterise
the location, severity and resultant functional impairment attributable
to the presence of HO. HO was identified in 37 elbows (42%), mostly around the humerus
and along the course of the medial collateral ligament. HO was hazy
immature in five elbows (13.5%), mature discrete in 20 (54%), extensive
mature in 10 (27%), and complete bone bridges were present in two
elbows (5.5%). Mild functional impairment occurred in eight patients,
moderate in 27 and severe in two. HO was associated with less extension
(p = 0.032) and less overall flexion-to-extension movement (p =
0.022); the flexion-to-extension arc was <
100º in 21 elbows
(57%) with HO compared with 18 elbows (35%) without HO (p = 0.03).
HO was removed surgically in seven elbows. The development of HO was significantly associated with sustaining
a head injury (p = 0.015), delayed internal fixation (p = 0.027),
the method of fracture fixation (p = 0.039) and the use of bone
graft or substitute (p = 0.02).HO continues to be a substantial
complication after internal fixation for distal humerus fractures. Cite this article: