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Research ArticleSpecial Issue

Expandable Interbody Fusion Cages: An Editorial on the Surgeon's Perspective on Recent Technological Advances and Their Biomechanical Implications

Kai-Uwe Lewandrowski, Lisa Ferrara and Boyle Cheng
International Journal of Spine Surgery October 2020, 7127; DOI: https://doi.org/10.14444/7127
Kai-Uwe Lewandrowski
1Center for Advanced Spine Care of Southern Arizona and Surgical Institute of Tucson, Arizona; Department of Orthopaedics, Fundación Universitaria Sanitas, Bogotá, D.C., Colombia; Department of Neurosurgery, Universidade Federal do Estado do Rio de Janeiro, Rio de Janeiro, Brazil
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Lisa Ferrara
2OrthoKinetic Technologies LLC, Southport, North Carolina
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Boyle Cheng
3Carnegie Mellon University, Neurosurgical and Spine Research, Allegheny General Hospital, Pittsburgh, Pennsylvania
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ABSTRACT

Background Expandable cages have gone through several iterations since they first appeared on the market in the early 2000s. Their development was prompted by some common problems associated with static interbody cages, including migration, expulsion, dural or neural traction injury, and pseudarthrosis.

Objective To summarize current technological advances from earlier expandable lumbar interbody fusion devices to implants with vertical and medial-to-lateral expansion mechanisms.

Methods The authors review the currently available expandable cage designs, the incremental technological advances, and how these devices impact minimally invasive surgery interbody procedures and clinical outcomes. The strategic concepts intended to improve the minimally invasive application of expandable interbody fusion implants are reviewed from a surgeon's perspective in a clinical context to discuss how their use may improve patient outcomes.

Conclusions The geometrical configuration, effective stiffness of composite multi-material cage designs may impact the bone-implant contact area with the endplates. Hybridization strategies of expandable cage technology with modern minimally invasive and endoscopic spinal surgery techniques are presented by outlining their advantages and disadvantages.

Level of Evidence 1

Clinical Relevance Systematic review.

  • interbody fusion
  • cage
  • expandable

Footnotes

  • Disclosures and COI: The views expressed in this article represent those of the authors and no other entity or organization. The authors have no conflict of interest in regards to this research. KUL and BC have nothing to disclose.

  • This manuscript is generously published free of charge by ISASS, the International Society for the Advancement of Spine Surgery. Copyright © 2020 ISASS
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International Journal of Spine Surgery: 19 (S2)
International Journal of Spine Surgery
Vol. 19, Issue S2
1 Apr 2025
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Expandable Interbody Fusion Cages: An Editorial on the Surgeon's Perspective on Recent Technological Advances and Their Biomechanical Implications
Kai-Uwe Lewandrowski, Lisa Ferrara, Boyle Cheng
International Journal of Spine Surgery Oct 2020, 7127; DOI: 10.14444/7127

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Expandable Interbody Fusion Cages: An Editorial on the Surgeon's Perspective on Recent Technological Advances and Their Biomechanical Implications
Kai-Uwe Lewandrowski, Lisa Ferrara, Boyle Cheng
International Journal of Spine Surgery Oct 2020, 7127; DOI: 10.14444/7127
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  • Biplanar Expandable Cages for Transforaminal Lumbar Interbody Fusion Are Safe and Achieve Good 1-Year Clinical and Radiological Outcomes in an Asian Population
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  • Expandable vs Static Interbody Devices for Lateral Lumbar Interbody Fusion
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  • Letter to the Editor: Rasch Analysis and High Value Spinal Endoscopy—Another Perspective
  • Real-World Implementation of Artificial Intelligence/Machine Learning for Managing Surgical Spine Patients at 2 Academic Health Care Systems
  • Potential Applications of Artificial Intelligence and Machine Learning in Spine Surgery Across the Continuum of Care
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Keywords

  • interbody fusion
  • cage
  • expandable

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