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High duty-cycle ac stimulation for electrically-mediated spinal cord therapy.

机译:高占空比交流刺激,用于电介导的脊髓治疗。

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摘要

Applied electric fields have previously been presented as a potential method of inducing functional recovery after neural trauma, specifically spinal cord injury. To date, most of this research has focused on the application of a direct current (dc) stimulus to produce the desired therapeutic electric field and induce preferential neuronal growth. It is proposed that high duty-cycle alternating current stimulation (ac) is capable of inducing similar electric fields within the spinal cord and eliciting a neural response with the added benefits of increased field propagation and lower power consumption. Through ex-vivo tissue testing of porcine spinal columns and Xenopus laevis cell cultures, 80% duty-cycle ac stimulation was compared to dc stimulation for efficacy in field generation and induction of neurite growth. Results from ex-vivo measurement show that ac stimulation is capable of producing electric fields of greater magnitudes over an increased distance in the spinal cord than dc stimulation at the same current magnitude. Furthermore, stimulation of Xenopus laevis neuronal cultures with 80% duty-cycle rectangular waves indicated a significant increase in neurite length as compared to non-stimulated controls, growth that was statistically similar to dc stimulated cells. These results suggest high duty-cycle stimulation modalities to be applicable and perhaps preferable to dc stimulation in electrically mediated neuronal therapies.
机译:先前已经提出了施加电场作为诱导神经损伤,特别是脊髓损伤后功能恢复的潜在方法。迄今为止,大多数研究都集中在直流电(dc)刺激的应用上,以产生所需的治疗电场并诱导神经元优先生长。提出高占空比交流电刺激(ac)能够在脊髓内诱发相似的电场并引起神经反应,并具有增加的场传播和更低的功耗等优点。通过对猪脊柱和非洲爪蟾细胞培养物的离体组织测试,将80%占空比的交流刺激与直流刺激进行了比较,以证明其在田间产生和诱导神经突生长方面的功效。离体测量的结果表明,与在相同电流强度下的直流电刺激相比,交流电刺激在脊髓增加的距离上能够产生更大幅度的电场。此外,与未刺激的对照组相比,用80%占空比矩形波刺激非洲爪蟾神经元培养表明神经突长度显着增加,其生长在统计学上类似于直流刺激的细胞。这些结果表明,高占空比刺激方式是适用的,并且可能比电刺激的神经元治疗中的直流刺激更可取。

著录项

  • 作者

    Graves, Matthew S.;

  • 作者单位

    Purdue University.;

  • 授予单位 Purdue University.;
  • 学科 Biology Neuroscience.;Engineering Biomedical.
  • 学位 M.S.B.M.E.
  • 年度 2009
  • 页码 41 p.
  • 总页数 41
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:37:47

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