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Thoracic Spine Fracture-Dislocation After Minor Trauma in a Neurologically Intact Patient With Congenital Absence of
Rawwaf Alfarsi1, Mohamed Elkhalifa2, Jaser Tashkandi1
1Department of Orthopedic Surgery, King Saud Bin Abdulaziz University for Health Sciences College of Medicine, Jeddah, SAU.
Abstract:
Thoracic spine fracture-dislocations are typically the product of high-energy injuries, and their neurological sequelae are usually devastating. For a patient to experience such an injury from a minor trauma and preserve all neurological function is rare and is often credited to the paradoxical decompression effect that follows a traumatic fracture of the posterior elements of the spine. This is a case of a 31-year-old female patient who suffered a severe thoracic spine fracture-dislocation from a low-energy fall from a manually operated "merry-go-round" in a kids' park. Despite the apparent instability, she was totally neurologically intact. Furthermore, MRI and CT were performed, which revealed a fracture-dislocation at the T4-T5 level and a previously undiagnosed congenital absence of the spinous processes and the posterior ligamentous complex at the level of T3-T6. The patient was successfully managed with open posterior reduction and instrumented fusion. Her recovery was complete and remains neurologically intact at long-term follow-up. In the context of severe spinal instability, this case highlights a unique pathophysiological mechanism for neurological sparing. The congenital absence of posterior elements of the thoracic spine created a biomechanically vulnerable segment that is susceptible to dislocation from such a minor trauma. Simultaneously, this also created an abnormally capacious spinal canal that protected the spinal cord from getting injured. This report highlights the importance of having a high index of suspicion for underlying congenital abnormalities when a significant spinal injury occurs from a low-energy mechanism.

