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An Optically Powered Single-Channel Stimulation Implant as Test System for Chronic Biocompatibility and Biostability of Miniaturized Retinal Vision Prostheses

机译:光学驱动的单通道刺激植入物作为微型视网膜视觉假体的慢性生物相容性和生物稳定性的测试系统

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摘要

A microsystem based microimplant with an optically powered single-channel stimulator was designed and developed as test system for an epi-retinal vision implant. Biostability of the hybrid assembly and the encapsulation materials were evaluated in pilot experiments in chronic implantations in a cat animal model. The implant was fabricated on a flexible polyimide substrate with integrated platinum electrode, interconnection lines, and contact pads for hybrid integration of electronic components. The receiver part was realized with four photodiodes connected in series. A parylene C coating was deposited on the electronic components as insulation layer. Silicone rubber was used to encapsulate the electronics in the shape of an artificial intraocular lens to allow proper implantation in the eye. Pilot experiments showed the biostability of the encapsulation approach and full electric functionality of the microimplant to generate stimulation currents over the implantation period of three months in two cats. In one cat, electrical stimulation of the retina evoked neuronal responses in the visual cortex and indicated the feasibility of the system approach for chronic use
机译:设计并开发了具有光动力单通道刺激器的基于微系统的微植入物,作为视网膜上视觉植入物的测试系统。在猫动物模型的长期植入实验中,对混合组件和封装材料的生物稳定性进行了评估。植入物在具有集成铂电极,互连线和用于电子组件混合集成的接触垫的柔性聚酰亚胺基板上制造。接收器部分是通过四个串联的光电二极管实现的。在电子部件上沉积聚对二甲苯C涂层作为绝缘层。硅橡胶用于将电子器件封装为人工眼内透镜的形状,以便正确植入眼内。初步实验表明,封装方法的生物稳定性和微型植入物的全部电功能可在两只猫的植入期三个月内产生刺激电流。在一只猫中,对视网膜的电刺激诱发了视觉皮层中的神经元反应,并表明该系统方法可用于长期使用

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