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首页> 外文期刊>Japanese Journal of Applied Physics. Part 1, Regular Papers, Brief Communications & Review Papers >Evaluation of Platinum-Black Stimulus Electrode Array for Electrical Stimulation of Retinal Cells in Retinal Prosthesis System
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Evaluation of Platinum-Black Stimulus Electrode Array for Electrical Stimulation of Retinal Cells in Retinal Prosthesis System

机译:铂黑刺激电极阵列对视网膜假体系统中视网膜细胞电刺激的评估

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摘要

A retinal prosthesis system with a three-dimensionally (3D) stacked LSI chip has been proposed. We fabricated a new implantable stimulus electrode array deposited with Platinum-black (Pt-b) on a polyimide-based flexible printed circuit (FPC) for the electrical stimulation of the retinal cells. Impedance measurement of the Pt-b electrode-electrolyte interface in a saline solution was performed and the Pt-b electrode realized a very low impedance. The power consumption at the electrode array when retinal cells were stimulated by a stimulus current was evaluated. The power consumption of the Pt-b stimulus electrode array was 91% lower than that of a previously fabricated Al stimulus electrode array due to a convexo-concave surface. In the cytotoxicity test (CT), we confirmed that Pt implantation induced no cellular degeneration of the rat retina. In the animal experiments, electrically evoked potential (EEP) was successfully recorded using Japanese white rabbits. These results indicate that electrical stimulation using the Pt-b stimulus electrode array can restore visual sensation.
机译:已经提出了具有三维(3D)堆叠的LSI芯片的视网膜假体系统。我们制造了一种新的可植入刺激电极阵列,该沉积电极阵列在铂基柔性印刷电路(FPC)上沉积了铂黑(Pt-b),用于电刺激视网膜细胞。在盐水溶液中进行Pt-b电极-电解质界面的阻抗测量,并且Pt-b电极实现了非常低的阻抗。评估了当视网膜细胞被刺激电流刺激时电极阵列的功耗。由于凹凸表面,Pt-b刺激电极阵列的功耗比先前制造的Al刺激电极阵列的功耗低91%。在细胞毒性试验(CT)中,我们证实Pt植入不会引起大鼠视网膜的细胞变性。在动物实验中,使用日本白兔成功记录了电诱发电位(EEP)。这些结果表明,使用Pt-b刺激电极阵列进行电刺激可以恢复视觉。

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