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Design and material evaluation for a novel lumbar disc replacement implanted via unilateral transforaminal approach

机译:通过单侧跨轮锤肌瘤方法植入新型腰盘的设计和材料评估

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The degeneration of the intervertebral disc is one of the principal causes of low back pain. Total disc replacement is a surgical treatment that aims to replace the degenerated disc with a dynamic implant to restore spine biomechanics. This paper proposes the first design of an elastomeric lumbar disc replacement that is implanted as a pair of devices via unilateral transforaminal surgical approach. Furthermore, several biomaterials (Polyurethanes (PU) and Polycarbonate Urethanes (PCU)) are evaluated for the purpose of the implant to mimic the axial compliance of the spine. Bionate II 80A (a pure PCU), Elast Eon 82A E5-325 (a PU with polydimethylsiloxane and polyhexamethylene oxide), Chronosil (a PCU based silicone elastomer) 80A with 5% and 10% of silicone were obtained and injection moulded according to the shape of the implant core, which was defined after a stress distribution analysis with the finite element method. The dimensions for each specimen were: 14.6 x 5.6 x 6.1 mm (length, width and height). Quasistatic compression tests were performed at a displacement rate of 0.02 mm/s. The obtained stiffness for each material at 1 mm displacement was: Bionate II 80A, 448.48 N/mm; Elast Eon 82A E5-325, 216.55 N/mm; Chronosil 80A 5%, 127.73 N/mm; and Chronosil 80A 10%, 126.48 N/mm. Dimensional changes were quantified after two quasi-static compression tests. Plastic deformation was perceived in all cases with a total percentage of height loss of: 4.1 +/- 0.5% for Elast Eon 82A E5-325; 3.2 +/- 0.5% for Chronosil 80A 10%; 2.7 +/- 0.3% for Chronosil 80A 5% and 1.1 +/- 0.2% for Bionate II 80A. The mechanical behaviour of these biomaterials is discussed to assess their suitability for the novel disc replacement device proposed.
机译:椎间盘的退化是低腰痛的主要原因之一。总盘替代是一种手术治疗,旨在用动态植入物代替退化的椎间盘,以恢复脊柱生物力学。本文提出了一种弹性腰盘更换的第一种设计,其通过单侧静脉手术方法植入一对装置。此外,为植入物的目的评价几种生物材料(聚氨酯(PU)和聚碳酸酯氨基甲酸酯(PCU))以模仿脊柱的轴向顺应性。脱烷酸酯II 80A(纯PCU),弹性EON 82A E5-325(具有聚二甲基硅氧烷和聚环氧化乙烷的PU),得到符号(PCU的硅氧烷弹性体)80A,其中5%和10%有机硅获得,并根据植入物芯的形状,在具有有限元法的应力分布分析之后定义。每个样本的尺寸为:14.6 x 5.6 x 6.1 mm(长度,宽度和高度)。以0.02mm / s的位移率进行Quasistatic压缩试验。在1mm位移下的每种材料的所得刚度是:脱烷酸酯II 80a,448.48 n / mm;弹性EON 82A E5-325,216.55 N / mm;刻度80a 5%,127.73 n / mm;和刻度80A 10%,126.48毫升。在两种准静态压缩测试之后量化尺寸变化。所有病例中的塑性变形都感受到了总百分比的高度损失:4.1 +/- 0.5%,适用于弹性EON 82A E5-325; 3.2 +/- 0.5%的刻度80a 10%; 2.7 +/- 0.3%用于脱烷酸酯II 80a的刻度80a的5%和1.1 +/- 0.2%。讨论了这些生物材料的力学行为,以评估其提出的新型盘替换装置的适用性。

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