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Journal of Pediatric Orthopaedics - 2026-07-14 - Journal Article

Correlation Between Radiographic Parameters and Clinical Range of Motion in Slipped Capital Femoral Epiphysis.

Streeter SR, Ullmann OC, Sarkar S, Sankar WN

retrospective cohortLOE IIIn = 74 hips in 69 patientsN/A (immediate postoperative radiographs used; no longitudinal follow-up reported)

Topics

pediatrics
PMID: 42447386DOI: 10.1097/BPO.0000000000003411View on PubMed ->

Key Takeaway

In stable SCFE managed with in-situ pinning, each 1% increase in percent epiphyseal displacement (PED) predicts a 2.18° loss of flexion and 2.13° loss of abduction, making PED the strongest radiographic predictor of functional ROM deficit.

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Summary

This study asked which radiographic parameters best predict clinical ROM deficits in stable SCFE after in-situ pinning. Southwick slip angle, posterior sloping angle, PED, and AP alpha angle were measured on immediate postoperative radiographs and correlated with ROM deficits (affected minus unaffected hip) via linear regression in 74 hips. PED most strongly predicted flexion and abduction loss (2.18°/% and 2.13°/% respectively), while SSA, PSA, and AP alpha angle each predicted ~0.78–0.81° loss of internal rotation in flexion per degree increase.

Key Limitation

ROM measurements were extracted retrospectively from the electronic health record without a standardized examination protocol, making it impossible to control for examiner technique, patient cooperation, or pain-limited motion at the time of assessment.

Original Abstract

BACKGROUND

Surgical procedures that improve motion for slipped capital femoral epiphysis (SCFE) deformity are typically guided by radiographic imaging. However, the specific aspects of the deformity that have the greatest impact on hip functional biomechanics remain unclear. This study investigated the relationship between radiographic parameters and clinical ROM measurements in patients with SCFE to better elucidate which elements of SCFE pathoanatomy have the greatest effect on joint mobility.

METHODS

Patients who underwent in situ pinning for stable SCFE at a single institution between 2013 and 2025 were retrospectively reviewed. Patients were excluded if they had unstable SCFE or underwent a modified Dunn osteotomy or simultaneous bilateral SCFE procedures. Demographics and clinical ROM measurements were obtained from the electronic health record. Radiographic parameters, including the Southwick slip angle (SSA), posterior sloping angle (PSA), percent epiphyseal displacement of Wilson (PED), and alpha angle, were measured on immediate postoperative radiographs. ROM deficits were calculated as the difference between affected and unaffected hips. The relationships between radiographic and clinical ROM variables were quantified using linear regressions.

RESULTS

Seventy-four hips in 69 patients (mean age 12.3±1.5 y, 50.7% male) were included. In 5 patients, ROM data were available for the contralateral, unaffected hip just before a subsequent slip and were used as control measurements for that hip. Overall, PED had the largest effect on ROM. For every 1% increase in displacement, patients lost an average of 2.18 degrees of flexion (P<0.001) and 2.13 degrees of abduction (P=0.001). SSA, PSA, and AP alpha angle had statistically significant effects on internal rotation in flexion (IRF)-a 1-degree increase in each led to a 0.78, 0.81, and 0.74-degree decrease in IRF, respectively (P<0.001 for all). The lateral alpha angle had the smallest impact.

CONCLUSIONS

In children with SCFE, radiographic deformity predicts clinical ROM. PED has the strongest negative association with flexion and abduction, while PSA, SSA, and AP alpha angle have negative associations with IRF. Reconstructive strategies should prioritize correction of these aspects of the SCFE deformity to maximize joint mobility.

LEVEL OF EVIDENCE

Level III-retrospective comparative study.