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Nucleus replacement could get a new chance with annulus closure

机译:nucleus替换可以获得与环形关闭的新机会

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Disc herniations are usually treated by decompression of the spinal nerves via a partial nucleotomy. As a consequence of reduced disc height (DH), reduced intradiscal pressure (IDP) and increased range of motion (ROM), accelerated degeneration may occur. Nucleus replacement implants are intended to restore those values, but are associated with the risk of extrusion. In six fresh frozen lumbar spinal segments (L2-3/L3-4/L4-5/L5-S1, age median 64.5 years (57 72), Pfirrmann grade 2 3), a prolapse was provoked through a box defect (6 10 mm) in the annulus. The herniated nucleus material was removed and replaced by a novel collagen-based nucleus implant. An annulus closure device sealed the defect. ROM, neutral zone (NZ) and IDP were measured in the (1) intact and (2) defect state, (3) postoperatively and (4) after cyclic loading (n = 100,000 cycles) applying pure moments ( 7.5 Nm) in flexion extension, lateral bending and axial rotation. Additionally, the change in DH was determined. Extrusion of implants or nucleus material was evaluated macroscopically. In all specimens, a prolapse could be provoked which decreased DH. Subsequent nucleotomy changed ROM/NZ and IDP considerably. Initial values could be restored by the implantation. Macroscopically, none of the implants nor nucleus material did migrate after cyclic loading. In this study, a prolapse followed by a nucleotomy resulted in a biomechanical destabilisation. Implantation of the nucleus replacement combined with an annulus closure restored the intact condition without showing signs of extrusion nor migration after cyclic loading. Hence, nucleus replacements could have a new chance in combination with annulus closure devices.
机译:椎间盘突出症通常通过通过部分核细胞减压脊髓神经来治疗。由于椎间盘高度(DH)降低,可能发生减少的体内压力(IDP)和增加的运动范围(ROM),可能发生加速变性。核替代植入物旨在恢复这些值,但与挤出的风险有关。在六个新鲜的冷冻腰椎段(L2-3 / L3-4 / L4-5 / L5-S1,年龄中位数64.5年(57 72),PFIRRMANN等级2 3),通过盒子缺陷激发脱垂(6 10 mm)在环空中。除去突出的核材料并用新型胶原基核植入物代替。环形封闭装置密封缺陷。在弯曲的循环加载(n = 100,000个循环)弯曲后(n = 100,000次)后(1)术后(2)缺陷状态,(3)测量ROM,中性区(NZ)和IDP,(3)延伸,横向弯曲和轴向旋转。另外,确定了DH的变化。宏观评估植入物或核材料的挤出。在所有标本中,可以引发脱垂,降低DH。随后的核细胞大大改变了ROM / NZ和IDP。初始值可以通过植入恢复。宏观上,植入物或核材料都没有循环载荷后迁移。在这项研究中,脱垂随后是核桃术导致生物力学稳定化。植入细胞核的替代与环空闭合恢复完整条件而不显示循环载荷后挤出的迹象也不显示液态。因此,核替代物可以具有与环形封闭装置组合的新机会。

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