| Literature DB >> 26728876 |
Tsai-Sheng Fu1, I-Chun Wang2, Meng-Ling Lu3, Ming-Kai Hsieh4, Lih-Huei Chen5, Wen-Jer Chen6.
Abstract
BACKGROUND: Although autogenous iliac bone graft (AIBG) remains the gold standard for spine fusion, harvesting morbidity has prompted the search for alternatives especially for multi-segment fusion. This study aimed to evaluate the efficacy of using demineralized bone matrix (DBM) as a substitute of AIBG for long instrumented posterolateral fusion (≧ three-level fusion).Entities:
Mesh:
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Year: 2016 PMID: 26728876 PMCID: PMC4700670 DOI: 10.1186/s12891-015-0861-2
Source DB: PubMed Journal: BMC Musculoskelet Disord ISSN: 1471-2474 Impact factor: 2.362
Comparisons of demographic data between groups
| Group | Significance test | ||
|---|---|---|---|
| DBM | AIBG | ||
| ( | ( | ( | |
| Age (years) | 67.19 ± 9.42 | 65.10 ± 6.66 | 0.39 |
| Gender (n, male/female) | 6:20 | 5:16 | 1.00 |
| TLIF/PLIF (n) | 12 | 8 | 0.58 |
| Operative levels (n) | 13 three-level | 11 three-level | 0.58 |
| 11 four-level | 9 four-level | ||
| 1 five-level | 1 six-level | ||
| 1 seven-level | |||
The continue data were compared with independent t test while the categorical data were compared with Chi-square test or Fisher’s exact test
DBM demineralized bone matrix, AIBG autogenous iliac bone graft, TLIF transforaminal lumbar interbody fusion, PLIF posterior lumbar interbody fusion
Fig. 1Radiographs from left to right showed the immediately, 3, 6, and 12 months postoperatively. The immediately postoperative image showed multiple opacity spots at the intertransverse space indicated a mixture of hydroxyapatite-β-tricalcium phosphate granules with laminectomy bone chips and DBM. The 12-month image showed a successful fusion mass with continuously qualitative bony bridging at the intertransverse fusion areas
Fig. 2Radiographs from left to right showed the immediately, 3, 6, and 12 months postoperatively. The immediately postoperative image showed bone graft materials (tricalcium phosphate granules, laminectomy bone chips and DBM) at the intertransverse space. The subsequent images showed absorption of the bone graft materials and unsuccessful fusion mass formation
Comparisons of the results between groups
| Group | Significance test | ||
|---|---|---|---|
| DBM | AIBG | ||
| ( | ( | ( | |
| Fusion/Non-fusion (n) | 21/5 | 18/3 | 0.72 |
| Operating time (min) | 284.89 ± 62.40 | 304.62 ± 61.64 | 0.28 |
| Blood loss (ml, median (IQR)) | 700 (450,950) | 1200 (725,1675) | 0.02a |
| Hospital stay (days) | 10.46 ± 7.77 | 11.33 ± 6.58 | 0.68 |
| Implant loosening (n) | 11 | 6 | 0.33 |
The continue data were compared with independent t test and the Mann-Whitney test while the categorical data were compared with Fisher’s exact test
DBM demineralized bone matrix, AIBG autogenous iliac bone graft, IOR interquartile range
aStatistically significant. analysed by the Mann-Whitney test
Fig. 3A 80-year-old female underwent instrumentation and posterolateral fusion with DBM from L1 to L5 and received second operation for removal of implants. (Left) The postoperative 12-month image showed successful fusion mass formation with pedicle screws loosening. (Middle) The intraoperative image showed solid and continuous fusion mass formation. (Right) After removal of the implants, the plain radiographs showed continuous fusion mass formation from L1 to L5. f, fusion mass; p, pedicle screw hole; s, spinal process