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Stimulus induced pH changes in retinal implants

机译:刺激引起的视网膜植入物pH值变化

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摘要

Electrical stimulation of neural tissue requires charge injection into the biological environment. This is achieved through both Faradaic and non-Faradaic reactions at the electrode/tissue interface. Some Faradaic reactions have the potential to dramatically alter pH levels, leading to tissue damage. The present study looked to investigate the effects of stimulus induced pH changes for a variety of stimulation parameters in a retinal implant. Electrodes were stimulated using monophasic and biphasic pulses at different intensities and in different mediums. Stimulus frequency and pulse width were maintained consistent for all tests. pH levels were recorded using a pH microelectrode and verified using a pH color indicator (phenol red). As expected, no significant pH change could be detected in buffered saline or balanced salt solution. However, stimulation parameters causing pH changes could be detected in unbuffered saline solution. While electrode stimulation using biphasic charge-balanced current pulses showed minimal pH change, stimulation using monophasic pulses showed significant pH shifts. The extent of pH change was related to duration of stimulation. The results from this study provide an insight to the electrochemical mechanisms at the interface of the electrolyte medium and retinal stimulation electrodes.
机译:对神经组织的电刺激需要将电荷注入生物环境。这是通过电极/组织界面处的法拉第反应和非法拉第反应实现的。一些法拉第反应可能会显着改变pH值,从而导致组织损伤。本研究旨在研究视网膜植入物中各种刺激参数对刺激引起的pH值变化的影响。使用单相和双相脉冲在不同的强度和不同的介质中刺激电极。所有测试的刺激频率和脉冲宽度均保持一致。使用pH微电极记录pH值,并使用pH颜色指示剂(酚红)验证pH值。如预期的那样,在缓冲盐溶液或平衡盐溶液中未检测到明显的pH变化。但是,可以在无缓冲盐溶液中检测到引起pH改变的刺激参数。虽然使用双相电荷平衡电流脉冲进行的电极刺激显示出最小的pH变化,但是使用单相脉冲进行的刺激显示出明显的pH漂移。 pH值变化的程度与刺激的持续时间有关。这项研究的结果提供了对电解质介质和视网膜刺激电极界面处的电化学机制的见解。

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