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Efficacy of different bone volume expanders for augmenting lumbar fusions.

AbstractBACKGROUND:
A wide variety of bone volume expanders are being used in performing posterolateral lumbar noninstrumented and instrumented lumbar fusions. This article presents a review of their efficacy based on fusion rates, complications, and outcomes.
METHODS:
Lumbar noninstrumented and instrumented fusions frequently use laminar autografts and different bone graft expanders. This review presents the utility of multiple forms/ratios of DBMs containing allografts. It also discusses the efficacy of artificial bone graft substitutes, including HA and B-TCP. Dynamic x-ray and/or CT examinations were used to document fusion in most series. Outcomes were variously assessed using Odom's criteria or different outcome questionnaires (Oswestry Questionnaire, SF-36, Dallas Pain Questionnaire, and/or Low Back Pain Rating Scale).
RESULTS:
Performing noninstrumented and instrumented lumbar posterolateral fusions resulted in comparable fusion rates in many series. Similar outcomes were also documented based on Odom's criteria or the multiple patient-based questionnaires. However, in some studies, the addition of spinal instrumentation increased the reoperation rate, operative time, blood loss, and cost. Various forms of DBMs, applied in different ratios to autografts, effectively supplemented spinal fusions in animal models and patient series. beta-Tricalcium phosphate, which is used to augment autograft fusions addressing idiopathic scoliosis or lumbar disease, also proved to be effective.
CONCLUSIONS:
Different types of bone volume expanders, including various forms of allograft-based DBMs, and artificial bone graft substitutes (HA and B-TCP) effectively promote posterolateral lumbar noninstrumented and instrumented fusions when added to autografts.
AuthorsNancy E Epstein
JournalSurgical neurology (Surg Neurol) Vol. 69 Issue 1 Pg. 16-9; discussion 19 (Jan 2008) ISSN: 0090-3019 [Print] United States
PMID18054607 (Publication Type: Journal Article, Review)
Chemical References
  • Bone Substitutes
  • Calcium Phosphates
  • Grafton demineralized bone matrix gel
  • beta-tricalcium phosphate
  • Durapatite
  • Glycerol
Topics
  • Bone Substitutes (therapeutic use)
  • Calcium Phosphates (therapeutic use)
  • Durapatite (therapeutic use)
  • Glycerol (therapeutic use)
  • Humans
  • Lumbar Vertebrae
  • Spinal Fusion (methods)

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