3 research outputs found

    Pediatric Cervical Spine Injuries: Report of 102 Cases and Review of the Literature

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    Object. To evaluate and review their experience with pediatric cervical injuries and factors affecting outcome, the authors conducted a retrospective clinical study of 102 cases (65% boys, 35% girls) of pediatric cervical spine injuries treated in the last decade. This study is an extension of and comparison with their earlier experience. Methods. Patients were divided into two age groups-birth to 9 years (Group 1) and 10 to 16 years of age (Group 2)-and managed according to status at presentation and type of injury. Thirty patients were managed surgically and 72 nonsurgically (42 wore a halo brace and 30 wore hard collars or custom-molded braces). Motor vehicle accidents were the most common cause of injury, and 40% were associated with head injury. Patients in the younger-age group (Group 1) sustained more neurological injuries than the older patients in Group 2, and most injuries were in the upper cervical spine. Of the 38 children in Group 1, in 39% a subluxation was present and in 29% a fracture or fracture/subluxation was demonstrated. Of the patients in Group 2, 80% had sustained fractures or fracture/subluxations. Vertebral fractures were the most common radiological findings (32%). At late follow-up review (mean 5 years), solid fusions were demonstrated in all patients. Neurological deterioration did not occur in any patient. The mortality rate was 16%. Compared with the authors\u27 earlier report, the incidence of cases with pediatric cervical injuries increased, as did the number managed surgically. Various fusion techniques were used, and neurological and fusion outcomes improved as compared with the previous report. Conclusions. The prognosis of neurological recovery from pediatric cervical spine injuries is related to the severity of the initial neurological injury. Management must be tailored to the patient\u27s age, neurological status, and type and level of injury. Compared with our earlier experience, fusion and instrumentation procedures were used more frequently. Different types of fusion and instrumentation procedures can be performed safely in children and produce good outcomes

    Posterior transpedicular corpectomy for malignant cervical spine tumors

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    The goal of this study was to assess surgical clinical and radiographic outcomes of using a posterior transpedicular approach (posterolateral) for ventral malignant tumors of the cervical spine. Access to ventral lesions of the cervical spine can be challenging in patients with malignant tumors. Anterior approaches are the gold standard for ventral pathology in the cervical spine, however, there are cases, where a posterior approach is indicated due to multilevel disease, previous radiation, swallowing difficulty with difficulty in retraction of trachea and esophagus, and in cases where circumferential fusion cannot be done due to patients’ poor medical condition. A single approach could provide spinal stabilization and removal of tumor. Eight cases of ventral cervical spine malignant tumors (7 metastatic and 1 chordoma) underwent corpectomy through a posterior transpedicular (posterolateral) approach. Tumors involved C2 (5), C3 (1), C5 (1), and C7 (1). Six cases had anterior reconstruction and three column fusion, and two cases had posterior fusion alone. Gross total resection was achieved in all cases. No hardware failure or worsening of neurological condition was seen (4 patient were neurologically intact and remained intact after surgery and 4 patients improved in their Frankel grade). Pain improved in all patients, mean visual analog scale preoperative was 86 and improved to 22 after surgery. In two patients the vertebral artery was ligated without sequelae. We conclude that cervical spine transpedicular (posterolateral) approach is useful in cases where an anterior approach or a circumferential approach is not an option. It avoids the morbidity of anterior transcervical, transternal, and transoral procedures while providing decompression of neural elements and allowing three column stabilization when needed
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