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Artificial retina model for the retinally blind based on wavelet transform

机译:基于小波变换的人工视网膜模型

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Artificial retina is aimed for the stimulation of remained retinal neurons in the patients with degenerated photoreceptors. Microelectrode arrays have been developed for this as a part of stimulator. Design such microelectrode arrays first requires a suitable mathematical method for human retinal information processing. In this paper, a flexible and adjustable human visual information extracting model is presented, which is based on the wavelet transform. With the flexible of wavelet transform to image information processing and the consistent to human visual information extracting, wavelet transform theory is applied to the artificial retina model for the retinally blind. The response of the model to synthetic image is shown. The simulated experiment demonstrates that the model behaves in a manner qualitatively similar to biological retinas and thus may serve as a basis for the development of an artificial retina.
机译:人工视网膜的目的是刺激患者患者患者患者患者中的仍然是令人退化的感光体。 已经为此开发了微电极阵列作为刺激器的一部分。 设计这种微电极阵列首先需要一种用于人类视网膜信息处理的合适数学方法。 在本文中,提出了一种灵活和可调节的人类视觉信息提取模型,其基于小波变换。 利用柔性的小波变换与图像信息处理和一致的人类视觉信息提取,小波变换理论应用于终端盲目的人工视网膜模型。 示出了模型对合成图像的响应。 模拟实验表明,该模型的行为方式与生物视网膜定性类似,因此可以作为人工视网膜的发展的基础。

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