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Anterior vertebroplasty of adjacent levels after vertebral body replacement

机译:椎体置换后邻近水平的前路椎体成形术

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The aim of this study was to evaluate the feasibility of a new method, which should help to avoid cage subsidence after vertebrectomy in short fusions. After implantation of an extendable vertebral body replacement (VBR) the two adjacent endplates to the fractured or destroyed vertebra were augmented with bone cement using the anterior approach in 20 patients with short circumferential fusion. All patients were followed up for 2 years clinically and radiographically. X-rays were reviewed for kyphosis, cage subsidence, presence of a solid fusion mass and instrumentation failure. Changes in every day activities (Oswestry Disability Index-ODI) and visual analogue scale (VAS), pain score, as well as technique-related complications were examined. The mean amount of kyphosis correction was 12.8° (±6.4°) and changed by only 0.3° (±0.4°) until last follow-up. Pain (VAS) and ODI scores were significantly improved and did not change until last follow-up. In all but two cases, the authors observed solid union with incorporation of the cage. No surgery-related complications were recorded. In one case revision was advised because of non-union due to septic loosening. The augmentation of the adjacent vertebras after anterior VBR provides an enhancement of the interface between cage and vertebra in cases with poor bone quality and in revision surgery. The technique is simple and safe, as the needles can be placed under visual control. Cement augmentation of the endplates may reduce interbody device subsidence.
机译:这项研究的目的是评估一种新方法的可行性,该方法应有助于避免在短融合术中椎骨切除术后的笼子下陷。在植入可扩展椎体置换术(VBR)后,使用前路入路对20例短环融合患者进行了骨水泥增强了骨折或破坏椎骨的两个相邻终板。所有患者均经过临床和影像学随访2年。回顾了X射线检查的后凸畸形,笼子下陷,固体融合块的存在和仪器故障。检查每天活动(Oswestry残疾指数-ODI)和视觉模拟量表(VAS),疼痛评分以及与技术相关的并发症的变化。驼背矫正的平均量为12.8°(±6.4°),直到最后一次随访才变化0.3°(±0.4°)。疼痛(VAS)和ODI评分得到明显改善,直到上次随访才改变。在除两种情况外的所有情况下,作者均观察到牢笼结合并结合了笼子。没有手术相关并发症的记录。在一种情况下,建议由于化脓性松动导致不愈合而进行翻修。在骨质量较差的情况下和翻修手术中,前VBR后相邻椎骨的增大可增强笼和椎骨之间的界面。该技术简单安全,因为可以在视觉控制下放置针头。端板的水泥增强可以减少椎间装置的沉陷。

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