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Clinical Trials/NCT00493558
NCT00493558CompletedPhase 4

A Consecutive Case Series of One-Level Lumbar Fusions With Pedicle Screw Instrumentation and the Trabecular Metal™ Intervertebral Cage Using Roentgen Stereophotogrammetric Analysis (RSA)

Nova Scotia Health Authority2 sites in 1 country17 target enrollmentStarted: July 1, 2007Last updated:
Conditions

Trial Snapshot

Phase
Phase 4
Status
Completed
Enrollment
17
Locations
2
Primary Endpoint
Spinal fusion and the rate of fusion and maintenance of spinal alignment will be assessed

Study Overview

Brief Summary

The purpose of this study is to gather information on the effectiveness of a new spine implant for patients who require spinal fusion surgery. Based on this information, we hope to create a standard of good performance, or benchmark, against which future studies on this spine implant can be compared. By creating this benchmark we hope to improve care for patients who require spinal fusion surgery.

Detailed Description

For patients in whom a spinal fusion is indicated, the posterior lumbar interbody fusion (PLIF) may be recommended to restore stability to the affected spinal segment1. Pioneered by a Dr.Cloward in the 1940s to treat painful intervertebral discs damaged by degeneration, PLIF involves removal of the entire nuclear portion of the disc and subsequent replacement with multiple blocks of transplanted bone. The purpose of the fusion is to eliminate or reduce the amount of the motion at the affected site, and, therefore, the source of pain.

Four major intervertebral cages have been approved by the Food and Drug Administration (FDA) for use in humans: the Brantigan Interbody fusion Cage, the Ray Threaded Fusion Cage, the Bagby and Kuslich cage, and, most recently, the Trabecular Metal™ Cage. Comprised of 98 percent tantalum and 2 percent vitreous carbon, Trabecular Metal™ has the highest coefficient of friction of any implant material on the market, allowing for optimal initial implant-bone fit. Furthermore, the unique porous structure of Trabecular Metal™ provides significantly more space for tissue ingrowth to occur, facilitating a more cohesive implant-bone interface as well as long-term stability of the implant.

Long-term follow up data on the efficacy of the Brantigan Interbody fusion cage, Ray Threaded Fusion cage, and Bagby and Kuslich cages are limited, with the most rigorous studies (i.e. controlled prospective studies) typically providing outcomes approximately 2 years post-surgery. Overall, these studies show that, while existing intervertebral cages have made significant advances in terms of addressing the disadvantages associated with traditional bone grafting/fixation techniques, problems continue to persist. Through comprehensive and accurate clinical evaluation of the Trabecular Metal™ intervertebral cage, the Research Team hopes to document advances in the PLIF technique, thereby informing current research as well as clinical practice.

The primary goal of the proposed research is to gather data on the clinical efficacy of the Trabecular Metal™ Posterior Lumbar Interbody Fusion (PLIF) cage with pedicle screw instrumentation for the treatment of one-level lumbar spine fusions. Based on this pilot data, we hope to establish a level of acceptable clinical performance for the Trabecular Metal™ cage, a benchmark against which subsequent investigations can be compared.

Direct surgical exploration is considered the most reliable method for accurately determining fusion success, both from a structural and functional perspective, following spinal fusion surgery. Unfortunately, this method is highly invasive, costly and seldom used. Furthermore, surgical exploration does not provide any longitudinal information as to the stability of the implant, including the monitoring of any occurrence of migration.

Study Design

Study Type
Interventional
Allocation
Na
Intervention Model
Single Group
Primary Purpose
Treatment
Masking
None

Eligibility Criteria

Ages
20 Years to — (Adult, Older Adult)
Sex
All
Accepts Healthy Volunteers
No

Inclusion Criteria

  • Patients must be at least 20 years of age
  • Clinical and radiologic history of spondylolisthesis (no greater than grade 1)
  • Spinal stenosis for which conservative treatment has failed
  • Degenerative disc disease, characterized by one or more of the following:
  • instability (defined as angular motion > 5° and/or translation > 4mm, based on Flex/Ext radiographs)
  • osteophyte formation
  • decreased disc height
  • thickening of ligamentous tissue
  • disc degeneration or herniation
  • facet joint degeneration

Exclusion Criteria

  • Fusion at more than one level
  • Non-fusion surgery at the involved level
  • Previously diagnosed with osteopenia, osteoporosis, or osteomalacia to a degree that spinal instrumentation would be contraindicated
  • Patients with a highly-communicable disease, inflammatory or auto-immune based joint disease
  • Those with a history of endocrine or metabolic disorders known to affect osteogenesis (e.g. Paget's disease, renal osteodystrophy, Ehlers-Danios syndrome or osteogenesis imperfecta)
  • Patients with a documented titanium or tantalum alloy allergy or intolerance
  • Patients currently receiving active treatment for cancer or treatment with steroids such as cortisone
  • Patients with significant medical history that, in the Investigator's opinion, would not make them a good study candidate

Outcomes

Primary Outcomes

Spinal fusion and the rate of fusion and maintenance of spinal alignment will be assessed

Time Frame: 6 weeks, 3, 6, 12, and 24months.

Secondary Outcomes

  • Subjective outcome questionnaires will be used to characterize the patient sample used for the study to allow for comparisons to other treatments for this condition in the future.(3, 6, 12, 24 months)

Investigators

Sponsor Class
Other
Responsible Party
Principal Investigator
Principal Investigator

William Oxner

Principal Investigator

Nova Scotia Health Authority

Study Sites (2)

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