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Electrochemical properties of titanium nitride nerve stimulation electrodes: an in vitro and in vivo study

机译:氮化钛神经刺激电极的电化学性质:体内和体外研究

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摘要

The in vivo electrochemical behavior of titanium nitride (TiN) nerve stimulation electrodes was compared to their in vitro behavior for a period of 90 days. Ten electrodes were implanted in two Göttingen minipigs. Four of these were used for electrical stimulation and electrochemical measurements. Five electrodes were kept in Ringer's solution at 37.5°C, of which four were used for electrical stimulation and electrochemical measurements. The voltage transients measured in vivo were 13 times greater than in vitro at implantation and they continued to increase with time. The electrochemical properties in vivo and the tissue resistance (Rtissue) followed a similar trend with time. There was no consistent significant difference between the electrochemical properties of the in vivo and in vitro electrodes after the implanted period. The differences between the in vivo and in vitro electrodes during the implanted period show that the evaluation of electrochemical performance of implantable stimulation electrodes cannot be substituted with in vitro measurements. After the implanted period, however, the performance of the in vivo and in vitro electrodes in saline was similar. In addition, the changes observed over time during the post-implantation period regarding the electrochemical properties of the in vivo electrodes and Rtissue were similar, which indicates that these changes are due to the foreign body response to implantation.
机译:在90天的时间内,将氮化钛(TiN)神经刺激电极的体内电化学行为与其体外行为进行了比较。将十个电极植入两只哥廷根小型猪中。其中四个用于电刺激和电化学测量。将五个电极保持在37.5°C的林格氏溶液中,其中四个用于电刺激和电化学测量。植入时在体内测得的电压瞬变比在体外大13倍,并且随着时间的推移持续增加。体内的电化学性质和组织电阻(Rtissue)随时间变化趋势相似。植入期后,体内和体外电极的电化学性质之间没有一致的显着差异。植入期间体内和体外电极之间的差异表明,植入式刺激电极的电化学性能评估无法用体外测量替代。然而,在植入期之后,体内和体外电极在盐水中的性能是相似的。另外,在植入后期间关于体内电极和Rtissue的电化学性质随时间观察到的变化是相似的,这表明这些变化是由于异物对植入的响应所致。

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