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无线视网膜下植入设备的六边刺激数字控制器设计与验证

Hexagonal Stimulation Digital Controller Design and Verification for Wireless Subretinal Implant Device.

机构信息

Department of Health Science and Technology, Gachon Advanced Institute for Health Sciences and echnology, Incheon 21999, Korea.

Department of Electronic Engineering, Gachon University, 1342 Seongnam-daero, Seongnam 13120, Korea.

出版信息

Sensors (Basel). 2022 Apr 10;22(8):2899. doi: 10.3390/s22082899.

Abstract

Significant progress has been made in the field of micro/nano-retinal implant technologies. However, the high pixel range, power leakage, reliability, and lifespan of retinal implants are still questionable. Active implantable devices are safe, cost-effective, and reliable. Although a device that can meet basic safety requirements set by the Food and Drug Administration and the European Union is reliable for long-term use and provides control on current and voltage parameters, it will be expensive and cannot be commercially successful. This study proposes an economical, fully controllable, and configurable wireless communication system based on field-programmable gated arrays (FPGAs) that were designed with the ability to cope with the issues that arise in retinal implantation. This system incorporates hexagonal biphasic stimulation pulses generated by a digital controller that can be fully controlled using an external transmitter. The integration of two separate domain analog systems and a digital controller based on FPGAs is proposed in this study. The system was also implemented on a microchip and verified using in vitro results.

摘要

在微/纳米视网膜植入技术领域已经取得了重大进展。然而,视网膜植入物的高像素范围、功率泄漏、可靠性和寿命仍然存在问题。有源植入式设备更安全、更具成本效益且更可靠。尽管符合食品和药物管理局以及欧盟设定的基本安全要求的设备在长期使用和控制电流和电压参数方面是可靠的,但它的成本昂贵,无法实现商业成功。本研究提出了一种经济、完全可控且可配置的无线通信系统,该系统基于现场可编程门阵列 (FPGA) 设计,具有应对视网膜植入中出现的问题的能力。该系统采用数字控制器生成的六边形双相刺激脉冲,可通过外部发射器进行完全控制。本研究提出了将两个独立的模拟域系统和基于 FPGA 的数字控制器集成在一起的方案。该系统还在微芯片上进行了实现,并通过体外结果进行了验证。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c8a1/9027213/90c947f38089/sensors-22-02899-g001.jpg

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