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The Biological Effects of Combining Metals in a Posterior Spinal Implant:In VivoModel Development Report of the First Two Cases

机译:结合金属在后路脊柱植入物中的生物学效应:前两个案例的体内模型开发报告

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Study Design. Combinations of metal implants (stainless steel (SS), titanium (Ti), and cobalt chrome (CC)) were placed in porcine spines. After 12 months, tissue response and implant corrosion were compared between mixed and single metal junctions.Objective.Model development and an attempt to determine any detriment of combining different metals in posterior spinal instrumentation.Methods. Yucatan mini-pigs underwent instrumentation over five unfused lumbar levels. A SS rod and a Ti rod were secured with Ti and SS pedicle screws, SS and Ti crosslinks, SS and CC sublaminar wires, and Ti sublaminar cable. The resulting 4 SS/SS, 3 Ti/Ti, and 11 connections between dissimilar metals per animal were studied after 12 months using radiographs, gross observation, and histology (foreign body reaction (FBR), metal particle count, and inflammation analyzed).Results. Two animals had constructs in place for 12 months with no complications. Histology of tissue over SS/SS connections demonstrated 11.1 ± 7.6 FBR cells, 2.1 ± 1.7 metal particles, and moderate to extensive inflammation. Ti/Ti tissue showed 6.3 ± 3.8 FBR cells, 5.2 ± 6.7 particles, and no to extensive inflammation (83% extensive). Tissue over mixed components had 14.1 ± 12.6 FBR cells and 13.4 ± 27.8 particles. Samples surrounding wires/cables versus other combinations demonstrated FBR (12.4 ± 13.5 versus 12.0 ± 9.6 cells,P= 0.96), particles (19.8 ± 32.6 versus 4.3 ± 12.7,P= 0.24), and inflammation (50% versus 75% extensive,P= 0.12).Conclusions. A nonfusion model was developed to study corrosion and analyze biological responses. Although no statistical differences were found in overlying tissue response to single versus mixed metal combinations, galvanic corrosion between differing metals is not ruled out. This pilot study supports further investigation to answer concerns when mixing metals in spinal constructs.
机译:学习规划。将金属植入物(不锈钢(SS),钛(Ti)和钴铬(CC))的组合放入猪的刺中。 12个月后,比较混合和单个金属连接处的组织反应和植入物腐蚀情况。目的。建立模型并尝试确定在后路脊柱器械中结合不同金属的任何有害方法。尤卡坦小型猪在五个未融合的腰椎水平进行了仪器检查。用Ti和SS椎弓根螺钉,SS和Ti交联键,SS和CC层下钢丝以及Ti层下电缆固定SS棒和Ti棒。在12个月后,使用X射线照片,肉眼观察和组织学(异物反应(FBR),金属颗粒计数和炎症分析)研究了每只动物产生的4种SS / SS,3种Ti / Ti和11种不同金属之间的连接。结果。两只动物在适当的位置放置了12个月的结构,没有并发症。通过SS / SS连接的组织的组织学表现为11.1±7.6 FBR细胞,2.1±1.7金属颗粒以及中度至广泛的炎症。 Ti / Ti组织显示6.3±3.8 FBR细胞,5.2±6.7颗粒,无严重炎症(占83%广泛炎症)。混合成分上的组织具有14.1±12.6 FBR细胞和13.4±27.8颗粒。围绕电线/电缆的样品与其他组合相比显示FBR(12.4±13.5对12.0±9.6细胞,P = 0.96),颗粒(19.8±32.6对4.3±12.7,P = 0.24)和炎症(50%对75%广泛, P = 0.12)。结论。开发了非融合模型来研究腐蚀并分析生物学响应。尽管上覆组织对单一金属和混合金属的反应没有统计学差异,但不排除不同金属之间的电偶腐蚀。该初步研究支持进一步研究,以解决在脊柱结构中混合金属时的担忧。

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