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具有自适应无线供电和数据遥测功能的视神经刺激系统

Optic Nerve Stimulation System with Adaptive Wireless Powering and Data Telemetry.

作者信息

Li Xing, Lu Yan, Meng Xiaodong, Tsui Chi-Ying, Ki Wing-Hung

机构信息

Broadcom Corporation, Irvine, CA 92618, USA.

State Key Laboratory of Analog and Mixed-Signal VLSI, University of Macau, Macao, China.

出版信息

Micromachines (Basel). 2017 Dec 20;8(12):368. doi: 10.3390/mi8120368.

Abstract

To treat retinal degenerative diseases, a transcorneal electrical stimulation-based system is proposed, which consists of an eye implant and an external component. The eye implant is wirelessly powered and controlled by the external component to generate the required bi-polar current pattern for transcorneal stimulation with an amplitude range of 5 μA to 320 μA, a frequency range of 10 Hz to 160 Hz and a duty ratio range of 2.5% to 20%. Power delivery control includes power boosting in preparation for stimulation, and normal power regulation that adapts to both coupling and load variations. Only one pair of coils is used for both the power link and the bi-directional data link. Except for the secondary coil, the eye implant is fully integrated on chip and is fabricated using UMC (United Microelectronics Corporation, Hsinchu, Taiwan) 0.13 μm complementary metal-oxide-semiconductor (CMOS) process with a size of 1.5 mm × 1.5 mm. The secondary coil is fabricated on a printed circuit board (PCB) with a diameter of only 4.4 mm. After coating with biocompatible silicone, the whole implant has dimensions of 6 mm in diameter with a thickness of less than 1 mm. The whole device can be put onto the sclera and beneath the eye's conjunctiva. System functionality and electrical performance are demonstrated with measurement results.

摘要

为了治疗视网膜退行性疾病,提出了一种基于经角膜电刺激的系统,该系统由眼内植入物和外部组件组成。眼内植入物由外部组件进行无线供电和控制,以产生经角膜刺激所需的双极电流模式,其幅度范围为5 μA至320 μA,频率范围为10 Hz至160 Hz,占空比范围为2.5%至20%。功率传输控制包括为刺激做准备的功率提升,以及适应耦合和负载变化的正常功率调节。仅使用一对线圈用于功率链路和双向数据链路。除了次级线圈外,眼内植入物完全集成在芯片上,并采用联华电子(中国台湾新竹)0.13 μm互补金属氧化物半导体(CMOS)工艺制造,尺寸为1.5 mm×1.5 mm。次级线圈制作在直径仅为4.4 mm的印刷电路板(PCB)上。在用生物相容性硅酮涂层后,整个植入物的直径为6 mm,厚度小于1 mm。整个装置可以放置在巩膜上和眼结膜下方。通过测量结果展示了系统功能和电气性能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/267d/6187914/bcce5655c866/micromachines-08-00368-g003.jpg

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