Expandable, But at What Cost? Failure Patterns in Corpectomy Cages From 373 Real-World Adverse Events.

Journal: Spine
Published Date:

Abstract

STUDY DESIGN: Cross-sectional study. OBJECTIVE: This study aimed to analyze the failure patterns of expandable corpectomy cages. SUMMARY OF BACKGROUND DATA: Expandable corpectomy cages offer significant advantages for anterior column reconstruction but introduce unique mechanical complexities. Device-specific failure patterns and their clinical implications remain poorly characterized in the literature. MATERIALS AND METHODS: We analyzed 373 adverse event reports involving expandable corpectomy cages from the FDA Manufacturer and User Facility Device Experience (MAUDE) database through October 2024. Using validated AI-assisted classification, reports were categorized by failure mode, anatomic location, revision status, and contributing factors. χ 2 tests with Bonferroni correction were used to assess associations between variables. RESULTS: Inserter-related issues constituted the most common adverse events (34.3%), yet rarely resulted in clinical symptoms (5.4%) or revision surgery (21.9%). Conversely, less frequent mechanical failures demonstrated significantly higher revision rates: endplate subsidence (80.0%), device migration (77.8%), and structural fracture (63.8%). Failure modes showed distinct anatomic patterns, with migration predominating in the lumbar spine (31.4% vs. 2.3% cervical), while height loss occurred more frequently in cervical applications (20.5% vs. 7.8% lumbar). Among inserter issues, torque handle calibration failures (18.8%) and set screw complications (25.0%) accounted for nearly half of these events. Surgical technique was identified as the predominant contributing factor across all failure modes (28.7%), while inadequate fixation was specifically associated with device migration (35.6% of migration cases). CONCLUSION: For surgeons, the high reported prevalence of inserter complications may be a key consideration for device selection, particularly regarding set screw mechanisms, despite the apparent lesser clinical impact. Similarly, heightened vigilance may be warranted for lumbar applications of expandable corpectomy cages due to increased migration risk.

Authors

  • Daniel Schneider
    Diagnostic and Interventional Radiology, University Hospital Ulm, Germany.
  • Ethan D L Brown
    Neurological Surgery, Donald and Barbara Zucker School of Medicine at Hofstra/Northwell, Hempstead, USA.
  • Daniel Toscano
    Department of Neurosurgery, Donald and Barbara Zucker Hofstra School of Medicine at Northwell, Manhasset, NY, USA.
  • Barnabas Obeng-Gyasi
    Department of Neurosurgery, Alleghany General Hospital, Alleghany, PA.
  • Aladine A Elsamadicy
    Department of Neurosurgery, Yale University School of Medicine, New Haven, CT.
  • Daniel M Sciubba
    Department of Neurosurgery, The Johns Hopkins Hospital, 600 North Wolfe Street; Meyer Building, Room 7-109, Baltimore, MD 21287, USA. Electronic address: [email protected].
  • Sheng-Fu Larry Lo
    Department of Neurological Surgery, Donald and Barbara Zucker School of Medicine at Hofstra/Northwell, Lake Success, New York, USA.

Keywords

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