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Composite piezoelectric spinal fusion implant: Effects of stacked generators

机译:复合压电脊柱融合植入物:堆叠式发生器的作用

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Spinal fusion surgeries have a high failure rate for difficult-to-fuse patients. A piezoelectric spinal fusion implant was developed to overcome the issues with other adjunct therapies. Stacked generators were used to improve power generation at low electrical load resistances. The effects of the number of layers on average maximum power and the optimal electrical load resistance were characterized. The effects of mechanical preload, load frequency, and amplitude on maximum power and optimal electrical load resistance were also characterized. Increasing the number of layers from one to nine was found to lower the optimal electrical load resistance from 1.00 G to 16.78 M while maintaining maximum power generation. Mechanical preload did not have a significant effect on power output or optimal electrical load resistance. Increases in mechanical loading frequency increased average maximum power, while decreasing the optimal electrical load resistance. Increases in mechanical loading amplitude increased average maximum power output without affecting the optimal electrical load resistance. (c) 2015 Wiley Periodicals, Inc. J Biomed Mater Res Part B: Appl Biomater, 104B: 158-164, 2016.
机译:对于难以融合的患者,脊柱融合手术的失败率很高。压电脊柱融合植入物被开发来克服其他辅助疗法的问题。堆叠式发电机用于改善低电气负载电阻下的发电。表征了层数对平均最大功率和最佳电负载电阻的影响。还表征了机械预紧力,负载频率和幅度对最大功率和最佳电气负载电阻的影响。发现将层数从一层增加到九层可以将最佳电负载电阻从1.00 G降低到16.78 M,同时保持最大的发电量。机械预紧对功率输出或最佳电气负载电阻没有显着影响。机械负载频率的增加增加了平均最大功率,同时减小了最佳电负载电阻。机械负载振幅的增加会增加平均最大功率输出,而不会影响最佳的电气负载电阻。 (c)2015 Wiley Periodicals,Inc.J Biomed Mater Res B部分:Appl Biomater,104B:158-164,2016。

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