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High efficient electrical stimulation of hippocampal slices with vertically aligned carbon nanofiber microbrush array

机译:垂直排列的碳纳米纤维微刷阵列对海马切片的高效电刺激

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摘要

Long-term neuroprostheses for functional electrical stimulation must efficiently stimulate tissue without electrolyzing water and raising the extracellular pH to toxic levels. Comparison of the stimulation efficiency of tungsten wire electrodes (W wires), platinum microelectrode arrays (PtMEA), as-grown vertically aligned carbon nanofiber microbrush arrays (VACNF MBAs), and polypyrrole coated (PPy-coated) VACNF MBAs in eliciting field potentials in the hippocampus slice indicates that, at low stimulating voltages that preclude the electrolysis of water, only the PPy-coated VACNF MBA is able to stimulate the CA3 to CA1 pathway. Unlike the W wires, PtMEA, as-grown VACNF MBA, and the PPy-coated VACNF MBA elicit only excitatory postsynaptic potentials (EPSPs). Furthermore, the PPy-coated VACNF MBA evokes somatic action potentials in addition to EPSPs. These results highlight the PPy-coated VACNF’s advantages in lower electrode impedance, ability to stimulate tissue through a biocompatible chloride flux, and stable vertical alignment in liquid that enables access to spatially confined regions of neuronal cells.
机译:用于功能性电刺激的长期神经假体必须有效刺激组织而不需电解水并将细胞外pH升高至毒性水平。比较钨丝电极(W线),铂微电极阵列(PtMEA),生长中的垂直排列的碳纳米纤维微刷阵列(VACNF MBA)和聚吡咯涂层(PPy涂层)的VACNF MBAs在激发电场中的刺激效率海马切片表明,在低刺激电压下(阻止水电解),只有PPy涂层的VACNF MBA能够刺激CA3至CA1途径。与W线不同,PtMEA,成年的VACNF MBA和PPy涂层的VACNF MBA仅引起兴奋性突触后电位(EPSP)。此外,除EPSP外,PPy涂层的VACNF MBA还具有体细胞动作电位。这些结果凸显了PPy涂层的VACNF的优势,它具有较低的电极阻抗,通过生物相容性氯化物通量刺激组织的能力以及在液体中的稳定垂直排列,从而能够进入神经细胞的空间受限区域。

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