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Modeling and Characterization of Tissue/Electrode Interface in Capacitive μECoG Glassy Carbon Electrodes

机译:电容式μECoG玻碳电极中组织/电极界面的建模与表征

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摘要

Understanding the chronic immune response of brain tissues to implanted neural electrodes is important from both a patient safety and long-term functionality standpoint. One emerging area of interest is examining the effects of the chronic immune response on the long-term functionality of cortical surface stimulating micro-electrodes. In this study, we use a simulation model to examine the parameters that influence the long-term success of cortical surface stimulating electrodes. Two computational models were developed and solved using finite element analysis; the first investigated the externally-induced electric field distribution in the brain tissues during stimulation and the effect of scar tissue formation on the stimulation thresholds. The second evaluated the potential changes in the pH around the electrode during stimulation. The models were based on in vivo experiments that have previously been conducted using chronically implanted glassy carbon based μECoG arrays.
机译:从患者安全和长期功能的角度来看,了解脑组织对植入的神经电极的慢性免疫反应都很重要。感兴趣的新兴领域之一是研究慢性免疫反应对皮质表面刺激微电极的长期功能的影响。在这项研究中,我们使用一个仿真模型来检查影响皮质表面刺激电极的长期成功的参数。开发了两个计算模型,并使用有限元分析法求解。第一个研究了刺激过程中脑组织中的外部感应电场分布以及瘢痕组织形成对刺激阈值的影响。第二个评估了刺激过程中电极周围pH值的电位变化。该模型基于先前使用长期植入的基于玻璃碳的μECoG阵列进行的体内实验。

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  • 会议地点 San Diego(US)
  • 作者单位

    Department of Mechanical Engineering, San Diego State University, San Diego, California 92182, USA;

    Department of Mechanical Engineering, San Diego State University, San Diego, California 92182, USA;

    Department of Bioengineering, University of Washington, Seattle, Washington 98195, USA;

    Department of Mechanical Engineering, San Diego State University, San Diego, California 92182, USA;

    Department of Mechanical Engineering, San Diego State University, San Diego, California 92182, USA;

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  • 正文语种 eng
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