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JOA - 2026-07-15 - Journal Article

Posterior Condylar Offset and Joint-Line Restoration Are Associated with Improved Patient-Reported Outcomes After Robotic-Arm-Assisted Total Knee Arthroplasty.

Suhardi VJ, McCormick K, Hepinstall M, Meftah M

retrospective cohortLOE IIIn = 479One year (outcomes assessed at 6 weeks, 3 months, and 1 year)

Topics

arthroplasty
PMID: 42456785DOI: 10.1016/j.arth.2026.06.080View on PubMed ->

Key Takeaway

In robotic-arm-assisted TKA, lateral change in posterior condylar offset correlated with 3-month KOOS JR improvement (r=0.179) and PROMIS Pain Interference reduction (r=-0.218), identifying PCO restoration and joint-line preservation as the dominant sagittal parameters driving early patient-reported recovery.

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Summary

This retrospective analysis of 479 consecutive robotic-arm-assisted TKAs extracted 12 intraoperative sagittal alignment parameters from robotic planning data and correlated them with KOOS JR and PROMIS scores at 6 weeks, 3 months, and 1 year using exhaustive multivariable regression across 1,585 predictor combinations with ridge regression and five-fold cross-validation. At 3 months, lateral change in PCO correlated positively with KOOS JR improvement (r=0.179, P=0.036) and negatively with PROMIS Pain Interference (r=-0.218, P=0.009). The highest-performing predictive models consistently included medial and lateral PCO change and change in tibial resection depth, while posterior tibial slope and femoral sagittal rotation did not emerge as consistent predictors.

Key Limitation

The study is restricted to a single condylar-stabilizing implant design, so findings cannot be extrapolated to CR or PS implants where PCO and joint-line mechanics differ substantially.

Original Abstract

BACKGROUND

The relationship between sagittal alignment in total knee arthroplasty (TKA) and patient-reported outcomes remains incompletely defined. Prior studies have largely relied on conventional instrumentation and radiographic measurements, which are limited by variability between planned and executed component position and inability to precisely quantify intraoperative balance. Robotic-arm-assisted TKA enables highly reproducible execution, providing an opportunity to identify sagittal parameters that are measurable, actionable, and clinically meaningful. The purpose of this study was to determine which sagittal alignment parameters are associated with patient-reported outcomes.

METHODS

We performed a retrospective analysis of 479 consecutive robotic-arm-assisted TKAs. There were 12 sagittal alignment parameters extracted from intraoperative robotic planning data, including posterior tibial slope, femoral sagittal rotation, tibial sagittal rotation, change in posterior condylar offset (change in PCO), and change in tibial resection depth. Patient-reported outcomes were assessed using the Knee injury and Osteoarthritis Outcome Score for Joint Replacement (KOOS JR) and the Patient-Reported Outcomes Measurement Information System (PROMIS) at six weeks, three months, and one year. Associations were evaluated using univariate correlations and exhaustive multivariable regressions (1,585 predictor combinations per outcome) with ridge regression, five-fold cross-validation, and false discovery rate correction.

RESULTS

At three months, lateral change in PCO correlated positively with KOOS JR improvement (r = 0.179, P = 0.036) and with PROMIS Pain Interference reduction (r = -0.218, P = 0.009). The highest-performing models consistently included medial and lateral change in PCO and change in tibial resection depth with positive cross-validated R 2 values.

CONCLUSIONS

In robotic-arm-assisted TKA with a condylar-stabilizing implant, restoration of posterior condylar offset and preservation of joint-line position demonstrated consistent significant associations with improved function and reduced pain. These findings suggest sagittal optimization should prioritize PCO restoration and joint-line preservation to optimize patient-reported recovery.