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Related Experiment Video

Updated: Oct 19, 2025

Novel Mini-open Transforaminal Lumbar Interbody Fusion
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Novel Mini-open Transforaminal Lumbar Interbody Fusion

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Cervical Total Disc Replacement: Novel Devices.

Richard D Guyer1, Joseph L Albano2, Donna D Ohnmeiss3

  • 1Center for Disc Replacement at Texas Back Institute, 6020 W. Parker Rd. #200, Plano, TX 75093, USA.

Neurosurgery Clinics of North America
|September 20, 2021
PubMed
Summary
This summary is machine-generated.

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Radiographic Evaluation of a Modular Anterior Lumbar Interbody Fusion (ALIF) Cage: Subsidence and Segmental Lordosis.

Cureus·2026
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Prospective, Multicenter Study of Two-Level Cervical Arthroplasty With a PEEK-On-Ceramic Cervical Total Disc Replacement: Five-Year Follow-Up.

Spine·2026
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Clinical Outcomes of Lumbar Fusions Using Transfacet Screws.

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Return to Activity for On- and Off-Label Cervical Arthroplasty Patients: A Multicentered Expert Panel Recommendation.

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Section on innovative spine research and novel technologies: fusion cage design, materials, and coatings: Science versus hype.

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Is Discography Associated With a Higher Rate of Reoperation for Disk-Related Pain 10 to 20 Years Later?

Spine·2025

This review covers new cervical total disc replacement devices, examining their design, biomechanics, and clinical outcomes. It assesses devices available globally, offering insights into advancements in spinal surgery.

Area of Science:

  • Orthopedic Surgery
  • Biomedical Engineering
  • Spinal Devices

Background:

  • Cervical total disc replacement (TDR) is an alternative to fusion for treating cervical disc disease.
  • Advancements in TDR technology aim to restore spinal motion and reduce adjacent segment degeneration.
  • A comprehensive review of novel devices is needed to guide clinical practice and future research.

Purpose of the Study:

  • To review the current literature on novel cervical total disc replacement (TDR) devices.
  • To analyze the biomechanical considerations, design characteristics, and clinical data of these devices.
  • To include devices available both within and outside the United States.

Main Methods:

  • Systematic literature search of databases for cervical TDR devices.
Keywords:
Cervical disc arthroplastyCervical disc replacementCervical spineMyelopathyNovel devicesRadiculopathySpine surgery

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  • Inclusion of studies reporting biomechanical data, design features, and clinical outcomes.
  • Analysis of device availability in the United States and internationally.
  • Main Results:

    • Overview of various novel cervical TDR designs and their technological innovations.
    • Summary of biomechanical performance data, including range of motion and stability.
    • Compilation of available clinical data, such as fusion rates, complication rates, and patient-reported outcomes.

    Conclusions:

    • Novel cervical TDR devices exhibit diverse designs and biomechanical profiles.
    • Clinical data, though variable, suggests potential benefits of TDR in select patient populations.
    • Further research and long-term data are crucial for establishing the efficacy and safety of emerging TDR technologies.