Literature DB >> 22139050

The efficacy of porous hydroxyapatite bone chip as an extender of local bone graft in posterior lumbar interbody fusion.

Hyoungmin Kim1, Choon-Ki Lee, Jin-Sup Yeom, Jae-Hyup Lee, Ki-Ho Lee, Bong-Soon Chang.   

Abstract

OBJECTIVE: To evaluate whether a synthetic bone chip made of porous hydroxyapatite can effectively extend local decompressed bone graft in instrumented posterior lumbar interbody fusion (PLIF).
METHODS: 130 patients, 165 segments, who had undergone PLIF with cages and instrumentation for single or double level due to degenerative conditions, were investigated retrospectively by independent blinded observer. According to the material of graft, patients were divided into three groups. HA group (19 patients, 25 segments): with hydroxyapatite bone chip in addition to autologous local decompressed bone, IBG group (25 patients, 28 segments): with autologous iliac crest bone graft in addition to local decompressed bone and LB group (86 patients, 112 segments): with local decompressed bone only. Radiologic and clinical outcome were compared among groups and postoperative complications, transfusion, time and cost of operation and duration of hospitalization were also investigated.
RESULTS: Radiologic fusion rate and clinical outcome were not different. Economic cost, transfusion and hospital stay were also similar. But operation time was significantly longer in IBG group than in other groups. There were no lasting complications associated with HA and LB group with contrast to five cases with persisting donor site pain in IBG group.
CONCLUSION: Porous hydroxyapatite bone chip is a useful bone graft extender in PLIF when used in conjunction with local decompressed bone.

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Year:  2011        PMID: 22139050      PMCID: PMC3389110          DOI: 10.1007/s00586-011-2092-z

Source DB:  PubMed          Journal:  Eur Spine J        ISSN: 0940-6719            Impact factor:   3.134


  24 in total

Review 1.  Overview of the biology of lumbar spine fusion and principles for selecting a bone graft substitute.

Authors:  Scott D Boden
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2.  The treatment of ruptured lumbar intervertebral discs by vertebral body fusion. I. Indications, operative technique, after care.

Authors:  R B CLOWARD
Journal:  J Neurosurg       Date:  1953-03       Impact factor: 5.115

Review 3.  Patient outcomes after lumbar spinal fusions.

Authors:  J A Turner; M Ersek; L Herron; J Haselkorn; D Kent; M A Ciol; R Deyo
Journal:  JAMA       Date:  1992-08-19       Impact factor: 56.272

4.  Lumbar spine interbody fusion with reinforced hydroxyapatite implants.

Authors:  P Ylinen; J Kinnunen; E M Laasonen; A Lamminen; S Vainionpää; M Raekallio; P Rokkanen; P Törmälä
Journal:  Arch Orthop Trauma Surg       Date:  1991       Impact factor: 3.067

5.  A carbon fiber implant to aid interbody lumbar fusion. Mechanical testing.

Authors:  J W Brantigan; A D Steffee; J M Geiger
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6.  Harvesting of bone from the iliac crest--comparison of the anterior and posterior sites.

Authors:  P Kessler; M Thorwarth; A Bloch-Birkholz; E Nkenke; F W Neukam
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7.  A carbon fiber implant to aid interbody lumbar fusion. Two-year clinical results in the first 26 patients.

Authors:  J W Brantigan; A D Steffee
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8.  Osteogenin, a bone morphogenetic protein, adsorbed on porous hydroxyapatite substrata, induces rapid bone differentiation in calvarial defects of adult primates.

Authors:  U Ripamonti; S S Ma; B van den Heever; A H Reddi
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Review 9.  Nonunion of the spine: a review.

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Authors:  J S Thalgott; J M Giuffre; K Fritts; M Timlin; Z Klezl
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