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Predicting postoperative coronal alignment for adult spinal deformity: do lower-extremity factors matter?
This study introduces an intraoperative method to predict coronal alignment in adult spinal deformity surgery. The technique accurately forecasts postoperative alignment up to two years by considering lower-extremity parameters like leg length discrepancy.
Area of Science:
- Spine surgery
- Orthopedic surgery
- Adult spinal deformity
Background:
- Accurate prediction of postoperative coronal alignment is crucial for adult spinal deformity (ASD) surgery outcomes.
- Existing methods may not fully account for complex lower-extremity biomechanics influencing spinal alignment.
Purpose of the Study:
- To describe and validate an intraoperative method for predicting postoperative coronal alignment in ASD surgery.
- To assess the accuracy of this method up to 2 years postoperatively.
- To determine if lower-extremity parameters influence the choice of intraoperative measurement.
Main Methods:
- Developed an intraoperative method using prone radiographs with two reference lines: central sacral pelvic line (CSPL) and intraoperative central sacral vertical line (iCSVL).
- Compared measurements (C7-CSPL, iCVA) with immediate and 2-year postoperative coronal vertical axis (CVA).
- Categorized 108 ASD patients into four groups based on leg length discrepancy (LLD) and lower-extremity compensation (pelvic obliquity, knee bending, mechanical axis difference).
Main Results:
- The intraoperative method demonstrated high accuracy in predicting postoperative CVA for up to 2 years.
- For patients without LLD (Type 1 & 2), C7-CSPL showed minimal error (mean 0.5 cm).
- For patients with LLD (Type 3 & 4), iCVA was more accurate (mean error 0.4 cm).
Conclusions:
- The described intraoperative system accurately predicts postoperative coronal alignment in ASD patients.
- The method's accuracy is maintained up to 2 years post-surgery.
- Accounting for lower-extremity parameters (LLD, compensation) is essential for selecting the appropriate intraoperative measurement technique.
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