首页> 外文会议>Conference on sensors and camera systems for scientific, industrial, and digital photography applications >A 16x16-pixel retinal-prosthesis vision chip with in-pixel digital image processing in a frequency domain by use of a pulse-frequency-modulation photosensor
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A 16x16-pixel retinal-prosthesis vision chip with in-pixel digital image processing in a frequency domain by use of a pulse-frequency-modulation photosensor

机译:通过使用脉冲频率调制光电传感器,在频域中具有在像素数字图像处理的16x16-像素视网膜假体芯片

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We are exploring an application of pulse-frequency-modulation (PFM) photosensor to retinal prosthesis for the blind because behavior of PFM photosensors is similar to retinal ganglion cells, from which visual data are transmitted from the retina toward the brain. We have developed retinal-prosthesis vision chips that reshape the output pulses of the PFM photosensor to biphasic current pulses suitable for electric stimulation of retinal cells. In this paper, we introduce image-processing functions to the pixel circuits. We have designed a 16x16-pixel retinal-prosthesis vision chip with several kinds of in-pixel digital image processing such as edge enhancement, edge detection, and blurring. This chip is a prototype demonstrator of the retinal prosthesis vision chip applicable to in-vitro experiments. By utilizing the feature of PFM photosensor, we propose a new scheme to implement the above image processing in a frequency domain by digital circuitry. Intensity of incident light is converted to a 1-bit data stream by a PFM photosensor, and then image processing is executed by a 1-bit image processor based on joint and annihilation of pulses. The pixel size is 240um x 240um. Each pixel has a bonding pad on which stimulus electrode is to be formed. We will show the experimental results of the test chip.
机译:我们正在探索脉冲频率调制(PFM)的光传感器的视网膜假体为盲人的应用程序,因为PFM光传感器的行为类似于视网膜神经节细胞,从该可视数据从朝向脑的视网膜发送。我们已经开发了重塑PFM光传感器适合于视网膜细胞的电刺激两相电流脉冲的输出脉冲视网膜假体视觉芯片。在本文中,我们引入图像处理功能的像素电路。我们设计的16x16像素的视网膜假体视觉芯片几种在像素数码图像处理,如边缘增强,边缘检测和模糊。该芯片适用于体外实验的人工视网膜的视觉芯片的原型演示。通过利用PFM光电传感器的特征,我们提出了通过数字电路来实现在频域中上述图像处理的新的方案。入射光的强度由光电传感器PFM转换为1比特的数据流,然后通过基于关节和脉冲的湮灭1位图像处理器执行的图像处理。像素尺寸为240um X 240um。每个像素具有一个键合焊盘上,其刺激电极被形成。我们将展示的测试芯片的实验结果。

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