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In vivo comparison of the charge densities required to evoke motor responses using novel annular penetrating microelectrodes

机译:使用新型环形穿透微电极在体内引起运动反应所需的电荷密度比较

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摘要

Electrodes for cortical stimulation need to deliver current to neural tissue effectively and safely. We have developed electrodes with a novel annular geometry for use in cortical visual prostheses. Here, we explore a critical question on the ideal annulus height to ensure electrical stimulation will be safe and effective. We implanted single electrodes into the motor cortex of anesthetized rats and measured the current required to evoke a motor response to stimulation, and the charge injection capacity (CIC) of the electrodes. We compared platinum iridium (PtIr) electrodes with different annulus heights, with and without a coating of porous titanium nitride (TiN). Threshold charge densities to evoke a motor response ranged from 12 to 36 μC.cm-2.ph-1. Electrodes with larger geometric surface areas (GSAs) required higher currents to evoke responses, but lower charge densities. The addition of a porous TiN coating did not significantly influence the current required to evoke a motor response. The CIC of both electrode types was significantly reduced in vivo compared with in vitro measurements. The measured CIC was 72 and 18 μC.cm-2.ph-1 for electrodes with and without a TiN coating, respectively. These results support the use of PtIr annular electrodes with annulus heights greater than 100 μm (GSA of 38, 000 μm2). However, if the electrodes are coated with porous TiN the annulus height can be reduced to 40 μm (GSA of 16,000 μm2).
机译:用于皮层刺激的电极需要有效,安全地将电流输送到神经组织。我们已经开发出具有新颖环形几何形状的电极,可用于皮层视觉假体。在这里,我们探讨关于理想环空高度的关键问题,以确保电刺激安全有效。我们将单个电极植入麻醉大鼠的运动皮层,并测量引起刺激对运动的反应所需的电流,以及电极的电荷注入能力(CIC)。我们比较了具有和不具有多孔氮化钛(TiN)涂层的不同环空高度的铂铱(PtIr)电极。引起电机响应的阈值电荷密度范围为12至36μC.cm -2 .ph -1 。具有较大几何表面积(GSA)的电极需要较高的电流才能引起响应,但电荷密度较低。多孔TiN涂层的添加不会显着影响引起电机响应所需的电流。与体外测量相比,体内两种电极的CIC均显着降低。对于带和不带TiN涂层的电极,测得的CIC分别为72和18μC.cm -2 .ph -1 。这些结果支持使用环空高度大于100μm(GSA为38,000μm 2 )的PtIr环形电极。但是,如果电极涂有多孔TiN,则环空高度可以减小到40μm(GSA为16,000μm 2 )。

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