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Updated: Jan 20, 2026

Anterior Cervical Discectomy and Fusion in the Ovine Model
Published on: October 5, 2009
Perioperative acute neurological deficits in instrumented pediatric cervical spine fusions
Bram P Verhofste1,2, Michael P Glotzbecker1,2, Michael T Hresko1,2
11Department of Orthopaedic Surgery, Boston Children's Hospital; and.
Insights
Pediatric cervical spine fusion rarely causes new neurological deficits (3.3%), with most patients improving or remaining stable. Syndromic diagnoses increase risk, but long-term outcomes for new deficits are generally favorable.
Area of Science:
- Pediatric Orthopedics
- Neurosurgery
- Spinal Surgery
Background:
- Pediatric cervical deformity often necessitates spinal fusion, but data on new perioperative neurological deficits is limited.
- Understanding these deficits is crucial for managing complex pediatric spinal conditions.
Purpose of the Study:
- To describe the incidence and characteristics of new perioperative neurological deficits in pediatric patients undergoing cervical spine instrumentation and fusion.
- To identify risk factors and outcomes associated with these deficits.
Main Methods:
- A single-center retrospective review of 184 pediatric cervical spine fusion cases (2002-2018).
- Data collected included demographics, surgical details, and neurological complications.
- Perioperative neurological deficits were defined as new symptoms or worsening of existing deficits.
Main Results:
- 96.7% of patients improved or remained neurologically stable post-surgery.
- New neurological deficits occurred in 3.3% of cases (6 patients), including hemiparesis, hemiplegia, and quadriplegia.
- Preoperative neurological compromise and complex syndromes were more common in patients with new deficits.
- Intraoperative neuromonitoring changes predicted new deficits (p=0.025).
Conclusions:
- Cervical spine fusion in children has a low rate of new neurological deficits, with most patients showing stability or improvement.
- Children with preoperative neurological symptoms and syndromic diagnoses are at higher risk.
- Long-term outcomes for new deficits are generally favorable, with significant recovery observed within six months.
Objective:
Pediatric cervical deformity is a complex disorder often associated with neurological deterioration requiring cervical spine fusion. However, limited literature exists on new perioperative neurological deficits in children. This study describes new perioperative neurological deficits in pediatric cervical spine instrumentation and fusion.
Methods:
A single-center review of pediatric cervical spine instrumentation and fusion during 2002-2018 was performed. Demographics, surgical characteristics, and neurological complications were recorded. Perioperative neurological deficits were defined as the deterioration of preexisting neurological function or the appearance of new neurological symptoms.
Results:
A total of 184 cases (160 patients, 57% male) with an average age of 12.6 ± 5.30 years (range 0.2-24.9 years) were included. Deformity (n = 39) and instability (n = 36) were the most frequent indications. Syndromes were present in 39% (n = 71), with Down syndrome (n = 20) and neurofibromatosis (n = 12) the most prevalent. Eighty-seven (48%) children presented with preoperative neurological deficits (16 sensory, 16 motor, and 55 combined deficits).A total of 178 (96.7%) cases improved or remained neurologically stable. New neurological deficits occurred in 6 (3.3%) cases: 3 hemiparesis, 1 hemiplegia, 1 quadriplegia, and 1 quadriparesis. Preoperative neurological compromise was seen in 4 (67%) of these new deficits (3 myelopathy, 1 sensory deficit) and 5 had complex syndromes. Three new deficits were anticipated with intraoperative neuromonitoring changes (p = 0.025).Three (50.0%) patients with new neurological deficits recovered within 6 months and the child with quadriparesis was regaining neurological function at the latest follow-up. Hemiplegia persisted in 1 patient, and 1 child died due a complication related to the tracheostomy. No association was found between neurological deficits and indication (p = 0.96), etiology (p = 0.46), preoperative neurological symptoms (p = 0.65), age (p = 0.56), use of halo vest (p = 0.41), estimated blood loss (p = 0.09), levels fused (p = 0.09), approach (p = 0.07), or fusion location (p = 0.07).
Conclusions:
An improvement of the preexisting neurological deficit or stabilization of neurological function was seen in 96.7% of children after cervical spine fusion. New or progressive neurological deficits occurred in 3.3% of the patients and occurred more frequently in children with preoperative neurological symptoms. Patients with syndromic diagnoses are at higher risk to develop a deficit, probably due to the severity of deformity and the degree of cervical instability. Long-term outcomes of new neurological deficits are favorable, and 50% of patients experienced complete neurological recovery within 6 months.
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