Journal article
Catastrophic acute failure of pelvic fixation in adult spinal deformity requiring revision surgery: a multicenter review of incidence, failure mechanisms, and risk factors
Journal of neurosurgery. Spine, Vol.38(1), pp.98-106
01/01/2023
DOI: 10.3171/2022.6.SPINE211559
PMID: 36057123
Abstract
OBJECTIVE
There are few prior reports of acute pelvic instrumentation failure in spinal deformity surgery. The objective of this study was to determine if a previously identified mechanism and rate of pelvic fixation failure were present across multiple institutions, and to determine risk factors for these types of failures.
METHODS
Thirteen academic medical centers performed a retrospective review of 18 months of consecutive adult spinal fusions extending 3 or more levels, which included new pelvic screws at the time of surgery. Acute pelvic fixation failure was defined as occurring within 6 months of the index surgery and requiring surgical revision.
RESULTS
Failure occurred in 37 (5%) of 779 cases and consisted of either slippage of the rods or displacement of the set screws from the screw tulip head (17 cases), screw shaft fracture (9 cases), screw loosening (9 cases), and/or resultant kyphotic fracture of the sacrum (6 cases). Revision strategies involved new pelvic fixation and/or multiple rod constructs. Six patients (16%) who underwent revision with fewer than 4 rods to the pelvis sustained a second acute failure, but no secondary failures occurred when at least 4 rods were used. In the univariate analysis, the magnitude of surgical correction was higher in the failure cohort (higher preoperative T1-pelvic angle [T1PA], presence of a 3-column osteotomy; p < 0.05). Uncorrected postoperative deformity increased failure risk (pelvic incidence–lumbar lordosis mismatch > 10°, higher postoperative T1PA; p < 0.05). Use of pelvic screws less than 8.5 mm in diameter also increased the likelihood of failure (p < 0.05). In the multivariate analysis, a larger preoperative global deformity as measured by T1PA was associated with failure, male patients were more likely to experience failure than female patients, and there was a strong association with implant manufacturer (p < 0.05). Anterior column support with an L5–S1 interbody fusion was protective against failure (p < 0.05).
CONCLUSIONS
Acute catastrophic failures involved large-magnitude surgical corrections and likely resulted from high mechanical strain on the pelvic instrumentation. Patients with large corrections may benefit from anterior structural support placed at the most caudal motion segment and multiple rods connecting to more than 2 pelvic fixation points. If failure occurs, salvage with a minimum of 4 rods and 4 pelvic fixation points can be successful.
Details
- Title: Subtitle
- Catastrophic acute failure of pelvic fixation in adult spinal deformity requiring revision surgery: a multicenter review of incidence, failure mechanisms, and risk factors
- Creators
- Christopher T. Martin - University of MinnesotaKenneth J. Holton - University of MinnesotaBenjamin D. Elder - Mayo ClinicJeremy L. Fogelson - Mayo ClinicAnthony L. Mikula - Mayo ClinicChristopher J. Kleck - University of Colorado DenverDavid Calabrese - University of Colorado DenverEvalina L. Burger - University of Colorado DenverDavid Ou-Yang - University of Colorado DenverVikas V. Patel - University of Colorado DenverHan Jo Kim - Hospital for Special SurgeryFrancis Lovecchio - Hospital for Special SurgerySerena S. Hu - Stanford UniversityKirkham B. Wood - Stanford UniversityRobert Harper - Stanford UniversityS. Tim Yoon - Emory UniversityDheera Ananthakrishnan - Emory UniversityKeith W. Michael - Emory UniversityAdam J. Schell - Emory UniversityIsador H. Lieberman - Texas Back InstituteStanley Kisinde - Texas Back InstituteChristopher J. DeWald - Rush University Medical CenterMichael T. Nolte - Rush University Medical CenterMatthew W. Colman - Rush University Medical CenterFrank M. Phillips - Rush University Medical CenterDaniel E. Gelb - University of Maryland, BaltimoreJacob Bruckner - University of Maryland, BaltimoreLindsey B. Ross - Cedars-Sinai Medical CenterJ. Patrick Johnson - Cedars-Sinai Medical CenterTerrence T. Kim - Cedars-Sinai Medical CenterNeel Anand - Cedars-Sinai Medical CenterJoseph S. Cheng - University of Cincinnati Medical CenterZach Plummer - University of Cincinnati Medical CenterPaul Park - University of MichiganMark E. Oppenlander - University of MichiganJonathan N. Sembrano - University of MinnesotaKristen E. Jones - University of MinnesotaDavid W. Polly - University of Minnesota
- Resource Type
- Journal article
- Publication Details
- Journal of neurosurgery. Spine, Vol.38(1), pp.98-106
- DOI
- 10.3171/2022.6.SPINE211559
- PMID
- 36057123
- NLM abbreviation
- J Neurosurg Spine
- ISSN
- 1547-5654
- eISSN
- 1547-5646
- Number of pages
- 9
- Grant note
- Medtronic (http://data.elsevier.com/vocabulary/SciValFunders/100004374) SeaSpine
- Language
- English
- Date published
- 01/01/2023
- Academic Unit
- Orthopedics and Rehabilitation
- Record Identifier
- 9985167643602771
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