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Defining cage subsidence in anterior, oblique, and lateral lumbar spine fusion approaches: a systematic review of the literature

  • Alexander O. Aguirre
  • , Mohamed A.R. Soliman
  • , Cathleen C. Kuo
  • , Andrea Kassay
  • , Gaganjot Parmar
  • , Marissa D. Kruk
  • , Esteban Quiceno
  • , Asham Khan
  • , Jaims Lim
  • , Ryan M. Hess
  • , Jeffrey P. Mullin
  • , John Pollina
  • SUNY Buffalo
  • Women and Children's Hospital of Buffalo
  • Cairo University
  • University of Toronto

Research output: Contribution to journalReview articlepeer-review

11 Scopus citations

Abstract

One of the most common complications of lumbar fusions is cage subsidence, which leads to collapse of disc height and reappearance of the presenting symptomology. However, definitions of cage subsidence are inconsistent, leading to a variety of subsidence calculation methodologies and thresholds. To review previously published literature on cage subsidence in order to present the most common methods for calculating and defining subsidence in the anterior lumbar interbody fusion (ALIF), oblique lateral interbody fusion (OLIF), and lateral lumbar interbody fusion (LLIF) approaches. A search was completed in PubMed and Embase with inclusion criteria focused on identifying any study that provided descriptions of the method, imaging modality, or subsidence threshold used to calculate the presence of cage subsidence. A total of 69 articles were included in the final analysis, of which 18 (26.1%) reported on the ALIF approach, 22 (31.9%) on the OLIF approach, and 31 (44.9%) on the LLIF approach, 2 of which reported on more than one approach. ALIF articles most commonly calculated the loss of disc height over time with a subsidence threshold of > 2 mm. Most OLIF articles calculated the total amount of cage migration into the vertebral bodies, with a threshold of > 2 mm. LLIF was the only approach in which most articles applied the same method for calculation, namely, a grading scale for classifying the loss of disc height over time. We recommend future articles adhere to the most common methodologies presented here to ensure accuracy and generalizability in reporting cage subsidence.

Original languageEnglish
Article number332
JournalNeurosurgical Review
Volume47
Issue number1
DOIs
StatePublished - Dec 2024

Keywords

  • Anterior lumbar interbody fusion
  • Cage subsidence
  • Lateral lumbar interbody fusion
  • Oblique lateral interbody fusion
  • Systematic review

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