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Orthopaedic Proceedings
Vol. 96-B, Issue SUPP_15 | Pages 26 - 26
1 Oct 2014
Molloy S Butler J Yu H Sewell M Benton A Selvadurai S Agu O
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To assess implant performance, to evaluate fusion and to assess clinical and radiologic outcome of circumferential fusion using porous tantalum cages for ALIF in a 360-degree fusion. A retrospective cohort study was performed over a 4-year period that included the implantation of 280 tantalum cages in 98 patients by the technique of anterior lumbar interbody fusion (ALIF) and posterolateral spondylodesis. Radiographic follow-up was performed to document any implant related problems. Preoperative and postoperative clinical outcome measures were assessed. No neurological, vascular or visceral injuries were reported. There were no rod breakages and no symptomatic non-unions. One revision procedure was performed for fracture. Mean VAS back pain score in our patient cohort improved from 7.5 preoperatively to 1.9 at latest follow-up, mean VAS leg pain score improved from 6.2 to 1.1 and mean ODI score improved from 51.1 to 18.3. Porous tantalum cages have high strength and flexibility, in addition to having similar biomaterial properties to cancellous bone. Their use in 360-degree spondylodesis to treat degenerative lumbar spine deformity has been demonstrated to be very safe and effective, with excellent clinical and functional outcomes


Orthopaedic Proceedings
Vol. 96-B, Issue SUPP_15 | Pages 29 - 29
1 Oct 2014
Molloy S Butler J Selvadurai S Whitman P
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To describe a staged surgical technique to correct significant progressive sagittal malalignment, without the need for 3-column osteotomy, in patients with prior long thoracolumbar instrumentation for scoliosis and to evaluate the radiographic and clinical outcome from this surgical strategy. A small cohort study (n=6) of patients with significant sagittal malalignment following extensive thoracolumbar instrumented fusions for scoliotic deformity. Radiographic parameters analysed included pelvic incidence, pelvic tilt, sacral slope, lumbar lordosis, thoracic kyphosis and sagittal vertical axis. Clinical outcome measures collected included EQ-5D, ODI, SRS 22 and VAS Pain Scores. 3 patients had 2-stage anterior release and instrumented fusion followed by a posterior instrumented fusion 3 patients with a large sagittal plane deformity had a 3-stage surgical technique. All patients achieved an excellent correction of sagittal alignment, with no surgical complications and excellent health related quality of life (HRQOL) outcome measures at follow-up. There was no symptomatic non-unions or implant failures including rod breakages. We present a safe and effective surgical strategy to treat the complex problem of progressive sagittal malalignment in the previously instrumented adult deformity patient, avoiding the need for 3-column osteotomies in the lumbar spine


Orthopaedic Proceedings
Vol. 94-B, Issue SUPP_XXVII | Pages 13 - 13
1 Jun 2012
Gaines R Mehta J Kusakabe T
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Introduction. Our short segment anterior technique produces similar correction and better functional outcomes for patients with adolescent idiopathic scoliosis by instrumentation of fewer levels than does posterior segmental instrumentation. We present the results of the first consecutive 45 patients operated by the short segment bone-on-bone anterior scoliosis technique, with a mean follow-up of 6 years. Every patient was followed up over 2 years and none was lost to follow-up. Methods. The patients (28 with thoracic scoliosis; 17 with thoracolumbar scoliosis) were operated between 1996 and 2004 for single curve idiopathic scoliosis. The mean age was 19 years (range 9–51); 87% of the cohort was female and the mean follow-up was 72 months (range 28–121). We operated on curves less than 75° by the short segment anterior approach with total discectomy, bone-on-bone apposition, and dual-rod instrumentation. We assessed the sagittal and coronal corrections on erect anteroposterior and lateral radiographs done preoperatively, postoperatively, and at final follow-up. Results. A mean of five vertebrae (four discs) were instrumented. The mean operative time was 360 min, blood loss was 877mL, and hospital stay was 9·1 days. The preoperative thoracolumbar major curve was 50·5°, and 18·3° at final follow-up (image A, B). The preoperative lower tilt angle was 27·7°, and 8·3° at final follow-up. The main preoperative thoracic curve was 52·5°, and the final postoperative curve measured 27·9° (image C, D). The lower preoperative tilt angle was 20·9°, and 11° at final follow-up. Spontaneous improvement of 37·4% was noted in thoracic compensatory curves and 47·5% in thoracolumbar compensatory curves. The sagittal and coronal balance was restored in all patients. There was no loss of correction in the operated segment. There were no infections, non-unions, or neurological, vascular, pulmonary, or implant-related complications in the entire series. Union occurred in all the patients in 2–4 months. All the patients had an unrestricted lifestyle within 4 months. Conclusions. In treatment of single major curves of less than 75° in patients with adolescent idiopathic scoliosis, the short segment approach of straightening the apical five vertebrae while removing the apical four discs produces good clinical and radiological results with no loss of correction at 6 years. Our series was also free of mechanical complications, re-admissions, or “adding-on” as frequently seen in series of similar cases operated with posterior segmental implants. The short fusions, superb functional rehab, and lack of complications make the short segment bone-on-bone surgical reconstruction the optimal reconstructive option for well screened adolescents whose single curves fit the selection criteria well