Study Design: Prospective randomized controlled trial. Objective: To study the effect of local steroids in the retropharyngeal space after anterior cervical discectomy and fusion (ACDF) in reducing prevertebral soft-tissue swelling (PSTS) and complications associated with it. Methods: A total of 50 consecutive patients operated with ACDF were double-blinded randomized into 2 groups: steroids (25) and control (25). Triamcinolone in collagen sponge was used in the steroid group and normal saline in gelatin sponge in the control group. Patients’ lateral radiographs were taken on the immediate postoperative day; days 2, 4, and 6; at 2 weeks; and 2 and 6 months postoperatively. The PSTS ratio at C3 to C7 and PSTS index were calculated. Patients were clinically evaluated using the Visual Analogue Scale (VAS) score for odynophagia and radiating pain, modified Japanese Orthopedic Association Score (mJOA), and Neck Disability Index (NDI). Results: PSTS showed a significant reduction in the steroid group as compared with the control group on the immediate postoperative day; days 2, 4, and 6; and at 2 weeks. However, at 2 and 6 months, PSTS remained the same. VAS score for odynophagia also showed a significant difference between the 2 groups on the immediate postoperative day; days 2, 4, and 6; and 2 weeks postoperatively, with no significant difference at the 2- and 6-month follow-up. mJOA and NDI showed no significant difference between the 2 groups at the 2- and 6-month follow-up. Conclusion: Use of retropharyngeal steroids helps in reducing the postoperative odynophagia on a short-term basis without any complication.
Study DesignCadaveric, observational study.PurposeAtlantoaxial instability (AAI) is characterized by excessive movement at the C1–C2 junction between the atlas and axis. An anterior surgical approach to expose the upper cervical spine for internal fixation and bone grafting has been developed to fix AAI. Currently, no anatomic information exists on the anterior transarticular atlantoaxial screw or screw and plate fixation between C1 and C2 in the Indian population. The objective of this study is to assess the anatomic landmarks of C1–C2 vertebrae: entry point, trajectory, screw length, and safety of the procedure.Overview of LiteratureMethods outlined by Magerl and Harms are the optimal approaches among the dorsal techniques. Contraindications for these techniques include aberrant location of vertebral arteries, fractures of C1–C2 posterior structures. In these cases, anterior transarticular fixation is an alternative. Several available screw insertion trajectories have been reported. Biomechanical studies have demonstrated that adequate rigidity of this fixation is comparable with posterior fusion techniques.MethodsDirect measurements using Vernier calipers and a goniometer were recorded from 30 embalmed human cadavers. The primary parameters measured were the minimum and maximum lateral and posterior angulations of the screw in the sagittal and coronal planes, respectively, and optimum screw length, if it was placed accurately.Results The posterior and lateral angles of screw placement in the coronal and sagittal planes ranged from 16° to 30° (mean±standard deviation [SD], 23.93°±3.93°) and 8° to 17° (mean±SD, 13.3°±2.26°), respectively. The optimum screw length was 25–38 mm (mean±SD, 28.76±3.69 mm).ConclusionsIf the screw was inserted without lateral angulation, the spinal canal or cord could be violated. If a longer screw was inserted with greater posterior angulation, the vertebral artery at the posterior or posterolateral aspect of the C1 superior facet could be violated. Thus, 26° and 30° of lateral and posterior angulations, respectively, are the maximum angles permissible to avoid injury of the vertebral artery and violations of the spinal canal or atlanto-occipital joint.
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