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In Vitro Testing of Floating Light Activated Micro-Electrical Stimulators

机译:浮动光激活微电子刺激器的体外测试

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摘要

Chronic tissue response to microelectrode implants stands in the way as a major challenge to development of many neural prosthetic applications. The long term tissue response is mostly due to the movement of interconnects and the resulting mechanical stress between the electrode and the surrounding neural tissue. Remotely activated floating micro-stimulators are one possible method of eliminating the interconnects. As a method of energy transfer to the micro-stimulator, we proposed to use a laser beam at near infrared (NIR) wavelengths. FLAMES of various sizes were fabricated with integrated silicon PIN photodiodes. Sizes varied from 120 (Width) × 300 (Length) × 100 (Height) μm to 200 × 500 × 100μm. Devices were bench tested using 850nm excitation from a Ti:Sapphire laser. To test this method, the voltage field of the FLAMES was experimentally tested in saline solution pulsed with a NIR laser beam. The voltage generated is around 196mV in peak at the cathodic contact as a response to a single pulse. When a train of laser pulses was applied at 100Hz, the peak voltage at the cathodic contact remained around 141mV suggesting the feasibility of this approach for applications with pulse frequencies up to 100Hz.
机译:慢性组织对微电极植入物的反应成为许多神经修复应用发展的主要挑战。长期的组织反应主要是由于互连的运动以及电极与周围神经组织之间产生的机械应力所致。远程激活的浮动微刺激器是消除互连的一种可能方法。作为向微刺激器传递能量的一种方法,我们建议使用近红外(NIR)波长的激光束。使用集成的硅PIN光电二极管制造了各种尺寸的火焰。尺寸从120(宽)×300(长)×100(高)μm到200×500×100μm不等。使用来自Ti:Sapphire激光器的850nm激发对设备进行了台式测试。为了测试此方法,在以NIR激光脉冲脉冲的盐溶液中对FLAMES的电压场进行了实验测试。作为对单个脉冲的响应,在阴极触点处产生的电压峰值约为196mV。当以100Hz施加一系列激光脉冲时,阴极触点的峰值电压保持在141mV左右,这表明该方法在脉冲频率高达100Hz的应用中是可行的。

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