S<sub>1</sub> Pedicle Subtraction Osteotomy in Sagittal Balance Correction. A Feasibility Study on Human Cadaveric Specimens.
biomechanical · Level V
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- Record sourced from PubMed, PMID 30465963.
- Also identified by DOI 10.1016/j.wneu.2018.11.052.
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Abstract
A cadaveric feasibility study was carried out. Osteotomies to correct fixed sagittal imbalance are usually performed at L<sub>3</sub>/ L<sub>4</sub>. To investigate the feasibility of S<sub>1</sub> pedicle subtraction osteotomy to correct spinal deformity and spinopelvic parameters, achieving better results with more limited exposure. The data obtained will allow a fixation construct specific for this osteotomy to be designed. S<sub>1</sub> pedicle subtraction osteotomy was performed on 12 cadaveric specimens. Baseline and postprocedural computed tomography and biomechanical studies were performed. Data were analyzed with a fixation system SolidWorks model, and the redesigned fixation construct was described and analyzed with an ANSYS model. S<sub>1</sub> pedicle subtraction osteotomy is technically feasible. The fixation can be achieved with L<sub>4</sub>, L<sub>5</sub>, and iliac screws connected with bars. The system can be reinforced with a polyetheretherketone cage placed anteriorly in the S<sub>1</sub> body osteotomy site, a cross-connecting bar, a double iliac screw, or an anterior interbody cage placed at the L<sub>5</sub>-S<sub>1</sub> disc. The fixation strength is improved by angulating the iliac rod channel 10°, adding a semi-sphere to the locking screw contact surface and 2 fins to its saddle. The redesigned construct showed suitable stress and deformation levels, achieving the expected biomechanical requirements. Compared with surgery on higher levels, S<sub>1</sub> pedicle subtraction osteotomy allows greater correction with shorter fixation, because the osteotomy is performed at a more caudal level, modifying the spinopelvic parameters. S<sub>1</sub> pedicle subtraction osteotomy is technically feasible. Finite element analysis results indicate that it has appropriate biomechanical properties.
Medical subject headings
- Osteotomy
- Sacrum
- Spinal Curvatures