Double-level noncontiguous thoracic Chance fractures treated with percutaneous stabilization: illustrative case

Author:

MacLennan Matthew H.1,El-Mughayyar Dana23,Attabib Najmedden123

Affiliation:

1. Department of Medicine, Dalhousie Medicine New Brunswick, Saint John, New Brunswick, Canada

2. Canada East Spine Centre, Saint John, New Brunswick, Canada; and

3. Division of Neurosurgery, Department of Surgery, Horizon Health Network, Saint John, New Brunswick, Canada

Abstract

BACKGROUND Chance fractures are unstable due to horizontal extension of the injury, disrupting all three columns of the vertebra. Since being first described in 1948, Chance fractures have been commonly found at a single level near the thoracolumbar junction. Noncontiguous double-level Chance fractures that result from a single traumatic event are rarely reported in the literature. OBSERVATIONS The authors report a case of an 18-year-old male who presented to the emergency department after a rollover motor vehicle accident. The patient complained of severe back pain when at rest and had no neurological deficits. Computed tomography revealed two unstable Chance fractures of bony subtype located at T6 and T11. The patient underwent percutaneous stabilization from T4 to T12. The postoperative assessment revealed continued 5/5 power bilaterally in all extremities, back pain, and the ability to ambulate with a walker. At 3 months after the operation, clinical assessment revealed no significant back pain and the ability to walk independently. Imaging confirmed stable fixation of the spine with no acute osseous or hardware complications. LESSONS This report complements previous studies demonstrating support for more extensive stabilization for such unique fractures. Additionally, rapid radiological imaging is needed to identify the full injury and lead patients to appropriate treatment.

Publisher

Journal of Neurosurgery Publishing Group (JNSPG)

Subject

Management Science and Operations Research,Mechanical Engineering,Energy Engineering and Power Technology

Reference40 articles.

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