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首页> 外文期刊>Japanese journal of applied physics >Subretinal prosthetic systems and epileptic seizure control systems: Chip design, integration, and animal tests
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Subretinal prosthetic systems and epileptic seizure control systems: Chip design, integration, and animal tests

机译:视网膜下假体系统和癫痫发作控制系统:芯片设计,集成和动物测试

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摘要

In this paper, both implantable subretinal prosthetic systems and closed-loop epileptic seizure control systems reported in the literature are analyzed and reviewed in the terms of chip design, integration, and animal tests. In the review of subretinal prosthetic systems, the four main parts, image sensing, stimulation, data/power transfer, and implantation, are investigated and compared. The review is followed by a comparison to provide a summary. The future challenges and the development of bio-subretinal chips with retinal cells grown on chips are also presented. In the review of state-of-the-art papers on closed-loop epileptic seizure control systems and system on chips (SoCs), the four main parts, the neuralsignal amplifier, biosignal processor, stimulator, and wireless telemetry, are investigated with the design requirements and advantages/shortcomings. The review is summarized by a performance comparison table. It can be seen that the closed-loop epileptic-seizure-control SoCs have advanced to clinical applications on humans. Both reviewed implantable systems will be important milestones for future bioelectronic medicine. (C) 2018 The Japan Society of Applied Physics
机译:在本文中,从芯片设计,集成和动物试验方面对文献中报道的植入式视网膜下假体系统和闭环癫痫发作控制系统进行了分析和审查。在审查视网膜下假体系统时,研究并比较了四个主要部分,即图像传感,刺激,数据/功率传输和植入。审查后进行比较以提供摘要。还介绍了未来的挑战和生物视网膜下芯片的发展,其中视网膜细胞生长在芯片上。在有关闭环癫痫发作控制系统和片上系统(SoC)的最新论文的综述中,神经元信号放大器,生物信号处理器,刺激器和无线遥测技术主要研究了四个主要部分:设计要求和优点/缺点。效果通过性能比较表进行汇总。可以看出,闭环癫痫发作控制SoC已进入人类临床应用。两种经过审查的植入式系统将是未来生物电子医学的重要里程碑。 (C)2018日本应用物理学会

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