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    • 4. 发明授权
    • Retina prosthesis
    • 视网膜假体
    • US09220634B2
    • 2015-12-29
    • US13595812
    • 2012-08-27
    • Sheila Nirenberg
    • Sheila Nirenberg
    • G06K9/00A61F9/08G06N3/04A61K35/30A61N1/05A61N1/36
    • A61N1/36046A61F9/08A61N1/0543G06N3/049
    • The invention provides a retinal prosthetic method and device that mimics the responses of the retina to a broad range of stimuli, including natural stimuli. Ganglion cell firing patterns are generated in response to a stimulus using a set of encoders, interfaces, and transducers, where each transducer targets a single cell or a small number of cells. The conversion occurs on the same time scale as that carried out by the normal retina. In addition, aspects of the invention may be used with robotic or other mechanical devices, where processing of visual information is required. The encoders may be adjusted over time with aging or the progression of a disease.
    • 本发明提供了视网膜假体方法和装置,其模拟视网膜对广泛范围的刺激(包括天然刺激)的反应。 响应于使用一组编码器,接口和换能器的刺激来产生神经节细胞发射模式,其中每个换能器靶向单个细胞或少量细胞。 转换发生在与正常视网膜相同的时间尺度上。 此外,本发明的方面可以与机器人或其他机械装置一起使用,其中需要视觉信息的处理。 随着老化或疾病的进展,编码器可随时间而被调整。
    • 9. 发明申请
    • RETINA PROSTHESIS
    • US20130110236A1
    • 2013-05-02
    • US13595812
    • 2012-08-27
    • Sheila NIRENBERG
    • Sheila NIRENBERG
    • A61F9/08
    • A61N1/36046A61F9/08A61N1/0543G06N3/049
    • The invention provides a retinal prosthetic method and device that mimics the responses of the retina to a broad range of stimuli, including natural stimuli. Ganglion cell firing patterns are generated in response to a stimulus using a set of encoders, interfaces, and transducers, where each transducer targets a single cell or a small number of cells. The conversion occurs on the same time scale as that carried out by the normal retina. In addition, aspects of the invention may be used with robotic or other mechanical devices, where processing of visual information is required. The encoders may be adjusted over time with aging or the progression of a disease.
    • 本发明提供了视网膜假体方法和装置,其模拟视网膜对广泛范围的刺激(包括天然刺激)的反应。 响应于使用一组编码器,接口和换能器的刺激来产生神经节细胞发射模式,其中每个换能器靶向单个细胞或少量细胞。 转换发生在与正常视网膜相同的时间尺度上。 此外,本发明的方面可以与机器人或其他机械装置一起使用,其中需要视觉信息的处理。 随着老化或疾病的进展,编码器可随时间而被调整。