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March 5, 20260 citationsOpen Access

Scapular Morphometry Informs Suprascapular Nerve Injury Risk During Reverse Shoulder Arthroplasty: A Cadaveric Study

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DDDave Osinachukwu DuruSCSalma ChaudhuryNKNiel Kang

Key Points

  • To assess how scapular morphometry impacts the risk of suprascapular nerve injury during reverse shoulder arthroplasty.
  • Dissected twenty cadaveric shoulders (ten pairs) to measure safe zones and scapular dimensions.
  • Performed simulated RSA baseplate fixation with screws placed in various positions.
  • Recorded instances of cortical breach and proximity to the suprascapular nerve.
  • Applied linear regression to evaluate relationships between scapular dimensions and safe zones.
  • Significant correlation found between superior safe zone and scapular dimensions (r=0.78–0.86; p<0.0001).
  • All superior screws remained within bone during simulations.
  • No correlation observed for the posterior safe zone.
  • 50% of specimens experienced cortical breach at posterior positions, linked to shorter scapular spine length (p=0.027).
  • No notable differences in suprascapular nerve proximity between posterior screw placements.

Abstract

Background: Reverse shoulder arthroplasty (RSA) relies on secure baseplate fixation to the glenoid. This carries a risk of suprascapular nerve (SSN) injury during peripheral screw insertion. Although fixed safe zones have been described, it remains unclear whether these scale with scapular morphometry or whether common screw positions confer differential SSN risk. Methods: Twenty cadaveric shoulders (ten pairs) were dis-sected. The superior safe zone (distance from the supraglenoid tubercle to SSN at the suprascapular notch) and posterior safe zone (distance from the glenoid rim to SSN at the spinoglenoid notch) were measured. Scapular dimensions (height, spine length, width) were measured. In ten shoulders, simulated RSA baseplate fixation was performed with superior screws placed at 11, 12, or 1 o’clock and posterior screws at 8, 9, or 10 o’clock. Screw lengths were based on glenoid depth. Cortical breach and SSN proximity were recorded. Linear regression assessed relationships between scapular dimensions and safe zones. Results: The superior safe zone (mean 2.9 ± 0.5 cm) significantly correlated with scapular dimensions (r=0.78–0.86; p<0.0001). All superior screws remained intraosseous across configurations. The posterior safe zone (1.9 ± 0.6 cm) showed no correlation. Pos-terior cortical breach occurred in 50% of specimens across all tested positions and was associated with smaller scapular spine length (p=0.027). No significant difference in SSN proximity was observed between posterior screw positions. Conclusions: Scapular di-mensions predict the superior, but not posterior, safe zone. Scapulae with shorter spine lengths demonstrated increased risk of posterior cortical breach, independent of screw position. These findings establish anatomical scalability of the superior safe zone and suggest that scapular morphometry may inform preoperative RSA planning; however, prospective validation is needed before routine clinical implementation.

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Cite This Study

Duru et al. (2026) studied this question.

synapsesocial.com/papers/69a91e4cd6127c7a504c21f9https://doi.org/10.17863/cam.127897
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