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用于角膜电刺激的基于柔性薄膜的微电极阵列的制造与表征

Fabrication and Characterization of a Flexible Thin-Film-Based Array of Microelectrodes for Corneal Electrical Stimulation.

作者信息

Hernández-Sebastián Natiely, Carpio-Verdín Víctor Manuel, Ambriz-Vargas Fabián, Morales-Morales Francisco, Benítez-Lara Alfredo, Buenrostro-Jáuregui Mario Humberto, Bojorges-Valdez Erik, Barrientos-García Bernardino

机构信息

Centro de Investigaciones en Óptica, A.C. Loma del Bosque 115, León 37150, Mexico.

CONAHCYT, Centro de Investigaciones en Óptica, A.C. Loma del Bosque 115, León 37150, Mexico.

出版信息

Micromachines (Basel). 2023 Oct 27;14(11):1999. doi: 10.3390/mi14111999.

Abstract

The electric stimulation (ES) of the cornea is a novel therapeutic approach to the treatment of degenerative visual diseases. Currently, ES is delivered by placing a mono-element electrode on the surface of the cornea that uniformly stimulates the eye along the electrode site. It has been reported that a certain degree of correlation exists between the location of the stimulated retinal area and the position of the electrode. Therefore, in this study, we present the development of a sectioned surface electrode for selective electric stimulation of the human cornea. The proposed device consists of 16 independent microelectrodes, a reference electrode, and 18 contact pads. The microelectrodes have a size of 200 µm × 200 µm, are arranged in a 4 × 4 matrix, and cover a total stimulation area of 16 mm. The proposed fabrication process, based on surface micromachining technology and flexible electronics, uses only three materials: polyimide, aluminum, and titanium, which allow us to obtain a simplified, ergonomic, and reproducible fabrication process. The fabricated prototype was validated to laboratory level by electrical and electrochemical tests, showing a relatively high electrical conductivity and average impedance from 712 kΩ to 1.4 MΩ at the clinically relevant frequency range (from 11 Hz to 30 Hz). Additionally, the biocompatibility of the electrode prototype was demonstrated by performing in vivo tests and by analyzing the polyimide films using Fourier transform infrared spectroscopy (FTIR). The resulting electrode prototype is robust, mechanically flexible, and biocompatible, with a high potential to be used for selective ES of the cornea.

摘要

角膜电刺激(ES)是一种治疗退行性视觉疾病的新型治疗方法。目前,通过将单元素电极放置在角膜表面来进行电刺激,该电极会沿着电极部位均匀刺激眼睛。据报道,受刺激视网膜区域的位置与电极位置之间存在一定程度的相关性。因此,在本研究中,我们展示了一种用于选择性电刺激人角膜的分段表面电极的研发情况。所提出的装置由16个独立的微电极、一个参考电极和18个接触垫组成。微电极尺寸为200 µm×200 µm,以4×4矩阵排列,总刺激面积为16 mm。所提出的制造工艺基于表面微机械加工技术和柔性电子学,仅使用三种材料:聚酰亚胺、铝和钛,这使我们能够获得一种简化、符合人体工程学且可重复的制造工艺。通过电气和电化学测试对制造出的原型进行了实验室水平的验证,结果表明在临床相关频率范围(11 Hz至30 Hz)内具有相对较高的电导率,平均阻抗在712 kΩ至1.4 MΩ之间。此外,通过进行体内测试以及使用傅里叶变换红外光谱(FTIR)分析聚酰亚胺薄膜,证明了电极原型的生物相容性。所得的电极原型坚固耐用、具有机械柔性且生物相容,具有用于角膜选择性电刺激的巨大潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/32d5/10673352/e020c3740dec/micromachines-14-01999-g001.jpg

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