基于柔性聚苯乙烯的眼内视网膜假体微电极技术

D. Rodger, Wen Li, H. Ameri, A. Ray, J. Weiland, M. Humayun, Y. Tai
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引用次数: 39

摘要

我们提出了第一个单金属层柔性微电极阵列,设计用于眼内植入,利用聚对二甲苯作为其主要结构和绝缘材料。这些电极是眼内视网膜假体的关键组成部分,包括用于电力和数据传输的射频线圈,封装的高铅计数遥测恢复和驱动专用集成电路(ASIC),以及用于治疗人类视网膜退行性失明的高密度视网膜外刺激微电极阵列。电化学测试表明,这些薄膜铂电极对神经元刺激是必要的。本文还提出了一种新的生物适形MEMS几何结构,用于具有囊状保留翼的完整眼内系统,使系统的所有组件能够植入并保留在眼睛的晶状体囊和玻璃体腔内。这种几何形状的有效性,与以前的模型相比,没有包膜保留翼已经通过手术植入动物模型进行了验证。
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Flexible Parylene-based Microelectrode Technology for Intraocular Retinal Prostheses
We present the first single metal layer flexible microelectrode arrays designed for intraocular implantation that utilize parylene C as their primary structural and insulating material. These electrodes are fabricated as a key component of an intraocular retinal prosthesis comprising a radio-frequency coil for power and data transfer, a packaged high lead-count telemetry-recovery and driving application-specific integrated circuit (ASIC), and a high-density epiretinal stimulating microelectrode array for the treatment of retinal degenerative blindness in humans. Electrochemical tests have demonstrated that these thin-film platinum electrodes perform as necessary for neuronal stimulation. A novel bioconformal MEMS geometry for a complete intraocular system with capsular retaining-wings that enables all the components of the system to be implanted and retained within the lens capsule and vitreous cavity of the eye is also presented. The efficacy of this geometry when compared with a previous model without capsular retaining-wings has been verified by surgical implantation in animal models.
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