Monitoring scoliosis and other spinal deformity surgeries
- PMID: 35772886
- DOI: 10.1016/B978-0-12-819826-1.00014-4
Monitoring scoliosis and other spinal deformity surgeries
Abstract
Surgery to correct a spinal deformity incurs a risk of injury to the spinal cord and roots. Injuries include postoperative paraplegia. Surgery for cervical myelopathy also incurs risk for postoperative motor deficits, as well as nerve injury most commonly at the C5 root. Risks can be mitigated by monitoring the nervous system during surgery. Ideally, monitoring detects an impending injury in time to intervene and correct the impairment before it becomes permanent. Monitoring includes several modalities of testing. Somatosensory evoked potentials measure axonal conduction in the spinal cord posterior columns. This can be checked almost continuously during surgery. Motor evoked potentials measure conduction along the lateral corticospinal tracts. Because motor pathway stimulation often produces a patient movement on the table, these often are tested periodically rather than continuously. Electromyography observes for spontaneous discharges accompanying injuries, and is useful to assess misplacement of pedicle screws. Literature demonstrates the usefulness of these techniques, their association with reducing motor adverse outcomes, and the relative value of the techniques. Neurophysiologic monitoring for scoliosis, kyphosis, and cervical myelopathy surgery are addressed, along with background information about those conditions.
Keywords: Electromyography; Kyphosis; Motor evoked potentials; Myelopathy; Neurologic deficits; Neurophysiologic intraoperative monitoring; Scoliosis; Somatosensory evoked potentials; Spinal deformity.
Copyright © 2022 Elsevier B.V. All rights reserved.
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