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A Contusive Model of Unilateral Cervical Spinal Cord Injury Using the Infinite Horizon Impactor
Published on: July 24, 2012
Technical note: Traumatic atlanto-occipital dislocation and severe subaxial cervical distraction injury in an infant
Alexander M Tucker1,2, Peter J Madsen3,4, Shih-Shan Lang3,4
1Children's Hospital of Philadelphia, Division of Neurosurgery, The Hub for Clinical Collaboration, 3500 Civic Center Blvd, 10th Floor, Philadelphia, PA, 19104, USA. tuckeram@chop.edu.
Insights
This study presents a novel posterior spinal instrumentation technique for severe infant spinal column disruption, successfully treating atlanto-occipital dislocation and C6-7 distraction with good functional recovery.
Area of Science:
- Pediatric Neurosurgery
- Spinal Surgery
- Traumatology
Background:
- Traumatic spinal injuries requiring surgery are uncommon in infants.
- Surgical fusion techniques for the very young, especially at the atlanto-occipital junction and subaxial spine, are not well-documented.
Observation:
- A 13-month-old male with severe atlanto-occipital dislocation and C6-7 distraction (ASIA A) sustained in a motor vehicle accident.
- The patient underwent posterior instrumented fusion (occiput-C2 and C6-7) with halo placement, achieving reduction of C6-7 vertebral bodies.
- Post-operatively, the patient showed improved upper extremity function and, within 1 month, demonstrated bony fusion and spontaneous C6-7 reduction on CT imaging.
Findings:
- Novel segmental posterior instrumentation was successfully employed in a severe infant spinal column disruption.
- The technique involved occiput-C2 and C6-7 fixation using occipital keel, C2 pedicle screws, C1 polyester tape, and laminar hooks.
- Arthrodesis was achieved with allograft and autograft, avoiding anterior column stabilization due to a CSF leak.
Implications:
- Posterior stabilization and halo placement may obviate the need for anterior fusion in infants with spinal column disruption.
- This approach offers a viable surgical solution for complex pediatric spinal trauma.
- The described technique expands the armamentarium for treating severe spinal injuries in very young children.
Introduction:
Traumatic injuries of the spine requiring surgery are rare in infancy. Fusion procedures in the very young are not well-described at the atlanto-occipital junction or subaxial spine. Here we describe novel segmental posterior instrumentation in a severe spinal column disruption in an infant.
Case Presentation:
A 13-month-old male with atlanto-occipital dislocation and severe C6-7 distraction (ASIA impairment scale A) presented after a motor vehicle accident. He underwent instrumented fusion (occiput-C2 and C6-7) and halo placement. Postoperative imaging demonstrated reduction of the C6-7 vertebral bodies. Physical examination showed lower limb paraplegia and preserved upper extremity strength except for mild weakness in hand grip (3/5 on the MRC grading scale). Occiput-C2 instrumentation was performed using occipital keel and C2 pedicle screws with sublaminar C1 polyester tape. C6-7 reduction and fixation was performed with laminar hooks. Arthrodesis was promoted with lineage-committed cellular bone matrix allograft and suboccipital autograft. Anterior column stabilization was deferred secondary to a CSF leak. Intraoperative monitoring was performed throughout the procedure. Within 1 month after surgery the patient was able to manipulate objects against gravity. CT imaging revealed bony fusion and spontaneous reduction of C6-7.
Discussion:
Spinal instrumentation is technically challenging in infants, regardless of injury mechanism, particularly in cases with complete spinal column disruption, but an anterior fusion may be avoided in infants and small children with posterior stabilization and halo placement.
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