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电极位点放置在皮层内微刺激长期稳定性中的作用

The Role of Electrode-Site Placement in the Long-Term Stability of Intracortical Microstimulation.

作者信息

Saldanha Ramya L, Urdaneta Morgan E, Otto Kevin J

机构信息

J. Crayton Pruitt Family Department of Biomedical Engineering, University of Florida, Gainesville, FL, United States.

Department of Neuroscience, University of Florida, Gainesville, FL, United States.

出版信息

Front Neurosci. 2021 Sep 8;15:712578. doi: 10.3389/fnins.2021.712578. eCollection 2021.

Abstract

Intracortical microelectrodes are neuroprosthetic devices used in brain-machine interfaces to both record and stimulate neural activity in the brain. These technologies have been improved by advances in microfabrication, which have led to the creation of subcellular and high-density microelectrodes. The greater number of independent stimulation channels in these devices allows for improved neuromodulation selectivity, compared to single-site microelectrodes. Elements of electrode design such as electrode-site placement can influence the long-term performance of neuroprostheses. Previous studies have shown that electrode-sites placed on the edge of a planar microelectrode have greater chronic recording functionality than sites placed in the center. However, the effect of electrode-site placement on long-term intracortical microstimulation (ICMS) is still unknown. Here, we show that, in rats chronically implanted with custom-made planar silicon microelectrodes, electrode-sites on the tip of the device outperformed those on both the edge and center in terms of the effect per charge delivered, though there is still a slight advantage to using edge sites over center sites for ICMS. Longitudinal analysis of ICMS detection thresholds over a 16-week period revealed that while all sites followed a similar trend over time, the tip and edge sites consistently elicited the behavioral response with less charge compared to center sites. Furthermore, we quantified channel activity over time and found that edge sites remained more active than center sites over time, though the rate of decay of active sites for center and edge sites was comparable. Our results demonstrate that electrode-site placement plays an important role in the long-term stability of intracortical microstimulation and could be a potential factor to consider in the design of future intracortical electrodes.

摘要

皮层内微电极是用于脑机接口的神经假体装置,用于记录和刺激大脑中的神经活动。微制造技术的进步改进了这些技术,从而催生了亚细胞和高密度微电极。与单部位微电极相比,这些装置中更多的独立刺激通道可提高神经调节的选择性。电极设计的要素,如电极部位的放置,会影响神经假体的长期性能。先前的研究表明,放置在平面微电极边缘的电极部位比放置在中心的部位具有更好的长期记录功能。然而,电极部位放置对长期皮层内微刺激(ICMS)的影响仍然未知。在此,我们表明,在长期植入定制平面硅微电极的大鼠中,就每次传递电荷的效果而言,装置尖端的电极部位优于边缘和中心的部位,不过在ICMS方面,使用边缘部位仍比中心部位略有优势。对16周期间ICMS检测阈值的纵向分析表明,虽然所有部位随时间的变化趋势相似,但与中心部位相比,尖端和边缘部位始终能用更少的电荷引发行为反应。此外,我们对通道活性随时间的变化进行了量化,发现随着时间的推移,边缘部位的活性始终高于中心部位,不过中心部位和边缘部位活性位点的衰减速率相当。我们的结果表明,电极部位的放置在皮层内微刺激的长期稳定性中起着重要作用,可能是未来皮层内电极设计中需要考虑的一个潜在因素。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2538/8455844/afbd3fccd098/fnins-15-712578-g001.jpg

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