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斜坡脉冲形状在动物模型中对耳蜗植入刺激更有效。

Ramped pulse shapes are more efficient for cochlear implant stimulation in an animal model.

机构信息

Hearing Systems Group, Department of Health Technology, Technical University of Denmark, Kgs. Lyngby, Denmark.

Brain and Sound Lab, Department of Biomedicine, Basel University, Basel, Switzerland.

出版信息

Sci Rep. 2020 Feb 24;10(1):3288. doi: 10.1038/s41598-020-60181-5.

Abstract

In all commercial cochlear implant (CI) devices, the electric stimulation is performed with a rectangular pulse that generally has two phases of opposite polarity. To date, developing new stimulation strategies has relied on the efficacy of this shape. Here, we investigate the potential of a novel stimulation paradigm that uses biophysically-inspired electrical ramped pulses. Using electrically-evoked auditory brainstem response (eABR) recordings in mice, we found that less charge, but higher current level amplitude, is needed to evoke responses with ramped shapes that are similar in amplitude to responses obtained with rectangular shapes. The most charge-efficient pulse shape had a rising ramp over both phases, supporting findings from previous in vitro studies. This was also true for longer phase durations. Our study presents the first physiological data on CI-stimulation with ramped pulse shapes. By reducing charge consumption ramped pulses have the potential to produce more battery-efficient CIs and may open new perspectives for designing other efficient neural implants in the future.

摘要

在所有商业的人工耳蜗(CI)设备中,电刺激都是通过具有相反极性的两个相的矩形脉冲来进行的。迄今为止,开发新的刺激策略一直依赖于这种形状的功效。在这里,我们研究了一种新的刺激范式的潜力,该范式使用了基于生物物理的电斜坡脉冲。我们使用电诱发的听觉脑干反应(eABR)记录在小鼠中发现,与使用矩形形状获得的响应幅度相似的斜坡形状需要更少的电荷,但更高的电流幅度才能引起响应。最具电荷效率的脉冲形状在两个相上都有上升的斜坡,这与之前的体外研究结果一致。对于较长的相持续时间也是如此。我们的研究提供了关于 CI 刺激的斜坡脉冲形状的第一个生理数据。通过减少电荷消耗,斜坡脉冲有可能产生更节能的 CI,并且可能为未来设计其他高效神经植入物开辟新的前景。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3d55/7039949/9fbdb25fc6ca/41598_2020_60181_Fig1_HTML.jpg

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