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ULTRA-HIGH PHOTOSENSITIVITY VERTICAL NANOWIRE ARRAYS FOR RETINAL PROSTHESIS

机译:视网膜假体的超高感光度垂直纳米阵列

摘要

A prosthetic retina for implantation in an eye having a defective retina is formed from an array of nanowires having a predetermined spatial distribution, density, size and shape implanted in close proximity to the retina. An electrical conductor is formed at a first end of all nanowires in the array of nanowires and placed in contact with a bias source which biases the array. A plurality of electrodes is located on a second end of each of one nanowire or a bundle of nanowires in the array. Each nanowire produces a photocurrent at a corresponding electrode in response to detection of light impinging on the array of nanowires and the photocurrent stimulates one or more neurons adapted for visual perception. In the preferred embodiment, the predetermined spatial distribution mimics a distribution of rods and cones in a normal eye.
机译:由具有预定的空间分布,密度,大小和形状的纳米线阵列形成的用于植入具有缺陷的视网膜的眼睛中的假体视网膜,该纳米线被植入到紧邻视网膜的位置。电导体形成在纳米线阵列中所有纳米线的第一端,并与偏置该阵列的偏置源接触。多个电极位于阵列中一个纳米线或纳米线束的每一个的第二端上。每一纳米线响应于检测到撞击在纳米线阵列上的光而在相应的电极处产生光电流,并且光电流刺激适于视觉感知的一个或多个神经元。在优选实施例中,预定的空间分布模仿正常眼睛中杆和锥的分布。

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