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Being the artificial retina null artificial retina which has separate median electrode array and peripheral

机译:人工视网膜为空,人工视网膜具有正中电极阵列和外围电极

摘要

The artificial percept of light may be created by electrically stimulating the neurons of the retina. While a photolithographed array internal to the retina provides superior resolution, an array external to the retina provides easier implantation and improved manufacturability. Therefore it is advantageous to supply a high-resolution electrode array internal to the sclera, near the fovea and a lower-resolution electrode array external to the sclera near the periphery of the retina. The preferred method of manufacturing a high-resolution electrode array is through photolithography, which requires the array to be made flat. While it is possible to curve the array afterward, it is difficult and costly. I small high-resolution array can be implanted near the fovea. Due to its small size, curvature is less of an issue. A larger lower-resolution array can be molded in silicone or similar method and placed around the periphery, of the retina, where the retina is naturally lower resolution. Further, the lower-resolution array can be implanted external to the sclera reducing the number of electrical connectors passing through the sclera. Even if a separate lower-resolution array is implanted internal to the sclera, super-choroidal (between the choroid and sclera) or intra-scleral (between the layers of the sclera), it is easier to make a lower-resolution array in a curved shape.
机译:可以通过电刺激视网膜的神经元来产生对光的人工感知。视网膜内部的光刻阵列可提供出色的分辨率,而视网膜外部的阵列可提供更轻松的植入并提高了可制造性。因此,有利的是在中央凹附近在巩膜内部提供高分辨率的电极阵列,并且在视网膜的外围附近在巩膜外部提供较低分辨率的电极阵列。制造高分辨率电极阵列的优选方法是通过光刻法,其需要将阵列制成平坦的。虽然可以在以后弯曲阵列,但这是困难且昂贵的。高分辨率小阵列可以植入到中央凹附近。由于其尺寸小,因此曲率问题不大。较大的较低分辨率的阵列可以用硅树脂或类似方法成型,并放置在视网膜周围,而视网膜自然是较低分辨率的。此外,较低分辨率的阵列可以被植入到巩膜外部,从而减少了穿过巩膜的电连接器的数量。即使将单独的低分辨率阵列植入巩膜内部,超脉络膜(在脉络膜和巩膜之间)或巩膜内(巩膜各层之间),也很容易将低分辨率阵列植入到巩膜内。弯曲的形状。

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