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首页> 外文期刊>IEEE transactions on circuits and systems . I , Regular papers >CMOS 256-Pixel/480-Pixel Photovoltaic-Powered Subretinal Prosthetic Chips With Wide Image Dynamic Range and Bi/Four-Directional Sharing Electrodes and Their Ex Vivo Experimental Validations With Mice
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CMOS 256-Pixel/480-Pixel Photovoltaic-Powered Subretinal Prosthetic Chips With Wide Image Dynamic Range and Bi/Four-Directional Sharing Electrodes and Their Ex Vivo Experimental Validations With Mice

机译:CMOS 256 - 像素/ 480像素光伏电压芯片型假肢芯片,具有宽幅动态范围和BI /四方向共用电极及其与小鼠的前体内实验验证

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CMOS photovoltaic-powered 256-pixel/480-pixel implantable chips with a wide image dynamic range and shared electrodes are proposed and fabricated in CIS technology for subretinal prostheses. The infra-red (IR) light is incident only on photovoltaic cells of the chip whereas the visible light is mainly incident on pixels. The proposed adaptive background cancellation circuit (ABCC) is adopted to increase the image dynamic range so that the subretinal chips can adapt for different surrounding illuminances. A two-dimensional equivalent electrode model for electric crosstalk simulation is proposed to analyze the crosstalk charges and enable the stimulation pattern design with minimum crosstalk for both chips. Moreover, the bi-directional sharing electrodes (BDSEs) are used in the 256-pixel chip to increase electrode size under the same chip area and boost the stimulation charges to 11.4 nC. The four-directional sharing electrodes (FDSEs) are used to share the electrodes in both vertical and horizontal directions and achieve 480 pixels with nearly the same electrode size under the same pixel array area. The maximum stimulation charge is 9.8 nC. The dynamic range of image light is increased to 31.65 dB (24.9 dB) in the fabricated 256-pixel (480-pixel) chip. The functions of the chip have been successfully validated by both electrical measurement and ex vivo patch clamp experiments with the retinas of mice.
机译:CIS技术提出了具有宽图像动态范围和共用电极的CMOS光伏供电的256像素/ 480像素可植入芯片。红外线(IR)光仅在芯片的光伏电池上入射,而可见光主要是入射在像素上。采用所提出的自适应背景消除电路(ABCC)来增加图像动态范围,使得子芯片芯片可以适应不同的周围照度。提出了一种用于电串展示模拟的二维等效电极模型,以分析串扰电荷,并使刺激图案设计与两个芯片的最小串扰。此外,在256像素芯片中使用双向共享电极(BDSES)以增加相同芯片区域下的电极尺寸,并将刺激电荷提升到11.4nc。四方向共享电极(FDSES)用于在垂直和水平方向上共享电极,并在相同像素阵列区域下实现具有几乎相同的电极尺寸的480像素。最大刺激充电是9.8 NC。在制造的256像素(480像素)芯片中,图像光的动态范围增加到31.65dB(24.9dB)。通过电气测量和exVivo斑块钳位实验,芯片的功能已成功验证,并用小鼠的视网膜进行实验。

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