PubMed Health⌕ Search

PubMed · 16885481

The floating shoulder.

Abstract

The floating shoulder is an uncommon but important injury pattern. Although it is frequently defined as an ipsilateral fracture of the clavicle and scapular neck, recent studies suggest that ligament disruption associated with a scapular neck fracture contributes to the functional equivalent of this injury pattern, with or without an associated clavicle fracture. Determining the specific injury patterns indicates the potential for significant instability, and correlating these patterns with clinical outcome is a challenge. Because the degree of ligament disruption is difficult to assess on radiographs, indications for nonsurgical and surgical management are not well defined. Minimally displaced fractures typically do well with nonsurgical care. However, the degree of fracture displacement and ligament disruption that results in less predictable outcomes after nonsurgical treatment is uncertain, and the indications for surgery can be controversial. Internal fixation of a displaced clavicle fracture restores the contour of the shoulder, regulates soft-tissue tension, and often indirectly reduces the scapular neck fracture. Fixation of both fractures is recommended in certain fracture patterns. Because these controversies cannot be resolved by current evidence, surgeons must choose an individualized approach based on an understanding of the pathoanatomy and personal experience.

Explore related subjects

Keep this discovery

Explore connections, maps & timelines

BibTeXRIS

Michael J DeFranco, Brendan M Patterson. 2006. The floating shoulder.. https://doi.org/10.5435/00124635-200608000-00007

Cite the original work for its findings. Save a collection to share your selection of sources.

KEEP EXPLORING

Related citations

Three-dimensional computed tomographic scan of the external third of the clavicle.

PURPOSE: The aims of this radiologic study were to explore the anatomic aspect of the external third of the clavicle and to determine anatomic elements that can be useful for surgeons who perform surgery that involves this area. METHODS: Twenty patients with healthy acromioclavicular (AC) joints underwent computed tomographic (CT) scan for assessment of the lateral clavicle. Three-dimensional reconstruction of the AC joint and of the external third of the clavicle was performed. The axis of the external third was determined by CT scan reconstruction. Two-dimensional reconstructions were performed perpendicular to this axis; each involved 5 mm for exploration of the size of the 4 cortical bones and of the inner diameter of the clavicle. RESULTS: The average size of the external third before the anterior curve of the clavicle was 40 mm. The average inner diameter of the clavicle ranged from 8.24 to 4.7 mm when measured medially, but many differences were noted between patients. The upper cortical bone was thicker than 2 mm at an average of 17 mm from the AC joint. Three forms of the external third of the clavicle were identified: truncated (n = 6), conical (n = 4), and cylindrical (n = 10). The projection of the axis of the external third of the clavicle at the external side of the acromial bone ranged from 4.8 to 21 mm (average, 12.42 mm) at the backward anterior side of the acromial bone. CONCLUSIONS: Our study shows the great variability of the anatomy of the external third of the clavicle. CLINICAL RELEVANCE: Anatomic data should be useful for surgeons who perform fixation or resection of the distal part of the clavicle.

Clavicle↗

Fractures of the medial end of the clavicle.

Much is known regarding the epidemiology of clavicle fractures, particularly those of the middle-third and distal clavicle. Medial clavicle fractures are uncommon, and as a result, there is little information available. The purpose of this study is to review retrospectively a case series of medial clavicle fractures treated at a tertiary trauma center. All clavicle fractures treated at our institution over a 5-year period were reviewed by use of all available radiographic studies and medical records. These data were evaluated with respect to several epidemiologic points, including mechanism of injury, associated injuries, fracture orientation, fracture displacement, treatment, and associated injuries. Follow-up data were gathered in 32 of 44 available patients with chart review and telephone survey. We evaluated 57 medial fractures in 55 patients. Patients were typically men in the fifth decade injured as a result of vehicular trauma. Fractures were occasionally missed on chest radiographs but were always identifiable by computed tomography scan. Injuries were most often closed and without neurovascular injury. However, patients almost always had multisystem trauma. Operative treatment was rarely performed, and patients typically had little or no pain at the time of follow-up. Finally, it was found that 11 patients died within 1 month of their injuries, indicating that 20% (11/55) of patients with medial clavicle fractures died as a result of the trauma associated with their injury. Medial clavicle fractures remain a relatively uncommon injury compared with other clavicular fractures. However, they typically are accompanied by significant multisystem trauma and have a high associated mortality rate.

Clavicle↗

Malunion of the clavicle causes significant glenoid malposition: a quantitative anatomic investigation.

OBJECTIVE: An experimental cadaver model was used to assess the effects of a malunited fracture of the middle third of the clavicle on the functional anatomy of the shoulder joint. METHOD: Anatomic samples were prepared with simulated shortening and axial malposition of the clavicle. From these, alterations in glenoid fossa position were measured and depicted graphically. RESULTS: Healing of clavicle fractures with bony shortening leads to a ventromedialcaudal shift in glenoid fossa position. The following malpositions of the clavicle lead to the respective glenoid fossa positional changes: caudal deviation leads to a mediocaudal shift, cranial deviation leads to a dorsolateral shift of the glenoid fossa, ventral deviation causes a ventrolateral shift, dorsal deviation leads to mediocaudal shift of the fossa, cranial rotation leads to ventrolateral shift in fossa position, and caudal rotation leads to a dorsomedial shift in glenoid fossa position. CONCLUSION: Clinical implication of these data is that bony shortening in combination with caudal displacement leads to distinct functional deficits in abduction, particularly overhead motion. Using the above data, a vector model was created to calculate position of the glenoid fossa dependent on clavicle position/malposition. The model is a valuable tool to be used for planning open reduction and fixation of clavicular fractures or malunions.

Clavicle↗