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    • 4. 发明授权
    • Retinal light processing using carbon nanotubes
    • 使用碳纳米管的视网膜光处理
    • US06755530B1
    • 2004-06-29
    • US10198672
    • 2002-07-16
    • David J. LoftusTheodore LengHarvey Fishman
    • David J. LoftusTheodore LengHarvey Fishman
    • A61B300
    • A61F9/08A61N1/0543A61N1/36046Y10S977/834Y10S977/902
    • Method and system for processing light signals received by the eye of a human or other animal, where the eye may be compromised or non-functioning. Incident light is received at first and second pixels in a photodetector array and provides a pixel electrical signal representing the received light. Each of an array of carbon nanotube (CNT) towers is connected to a pixel, has a first tower end penetrating a retinal active layer of the animal and has a second tower end positioned to receive to receive and transport the pixel electrical signal to the retinal active layer. The CNT tower may be coated with a biologically active substance or chemically modified to promote neurite connections with the tower. The photoreceptor array can be provide with a signal altering mechanism that alters at least one of light intensity and wavelength intensity sensed by a first pixel relative to a second pixel, to correct for one or more selected eye problems.
    • 用于处理由人或其他动物的眼睛接收的光信号的方法和系统,其中眼睛可能被损害或不起作用。 在光电检测器阵列中的第一和第二像素处接收入射光,并提供表示所接收的光的像素电信号。 碳纳米管(CNT)阵列中的每一个连接到像素,具有穿过动物的视网膜活性层的第一塔端,并且具有第二塔端,其定位成接收并将像素电信号传送到视网膜 活动层 CNT塔可以涂覆有生物活性物质或经化学修饰以促进与塔的神经突连接。 感光体阵列可以提供改变由第一像素相对于第二像素感测的光强度和波长强度中的至少一个的信号改变机构,以校正一个或多个选定的眼睛问题。
    • 10. 发明申请
    • Neural stimulation array providing proximity of electrodes to cells via cellular migration
    • 神经刺激阵列通过细胞迁移提供电极与细胞的接近
    • US20050203601A1
    • 2005-09-15
    • US11035692
    • 2005-01-13
    • Daniel PalankerPhilip HuieAlexander VankovHarvey Fishman
    • Daniel PalankerPhilip HuieAlexander VankovHarvey Fishman
    • A61N1/00A61N1/04A61N1/05A61N1/36
    • A61N1/0543A61N1/36046
    • An interface for selective excitation or sensing of neural cells in a biological neural network is provided. The interface includes a membrane with a number of channels passing through the membrane. Each channel has at least one electrode within it. Neural cells in the biological neural network grow or migrate into the channels, thereby coming into close proximity to the electrodes. Once one or more neural cells have grown or migrated into a channel, a voltage applied to the electrode within the channel selectively excites the neural cell(s) in that channel. The excitation of these neural cell(s) will then transmit throughout the neural network (i.e. cells and axons) that is associated with the neural cell(s) stimulated in the channel. An alternative interface provides cell excitation via an array of electrically conductive pillars on a substrate. The pillars have electrically insulated sides and exposed top surfaces, to provide selective cell excitation.
    • 提供了一种生物神经网络中选择性激发或感应神经细胞的界面。 界面包括具有穿过膜的多个通道的膜。 每个通道内至少有一个电极。 生物神经网络中的神经细胞生长或迁移到通道中,从而接近电极。 一旦一个或多个神经细胞已经生长或迁移到通道中,施加到通道内的电极的电压选择性地激发该通道中的神经细胞。 然后,这些神经细胞的激发将通过与通道中刺激的神经细胞相关联的神经网络(即细胞和轴突)传递。 另一种界面通过衬底上的导电柱阵列提供电池激发。 支柱具有电绝缘的侧面和暴露的顶表面,以提供选择性的电池激发。