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TOWARDS A FULLY-INTEGRATED CMOS-BASED IN VIVO NEURAL IMAGING AND INTERFACE DEVICE

机译:朝向基于体内神经成像和接口设备的全集成CMOS

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We are developing a CMOS device with integrated imaging array, electrical stimulus electrodes and chemical delivery for neural imaging and interfacing. Our aim is to perform functional imaging deep inside the mouse hippocampus at the molecular level. The device has an irregular front shape to minimize injury during insertion into the brain. Four electrodes are embedded strategically on the image array for electrical interface. A special technique is developed to package the device for in vivo fluorescence imaging and interfacing. Fluorescence imaging has been verified in vitro using a brain phantom, and electrical stimulation capability of the embedded electrodes is confirmed by impedance tests in buffered saline. Using the device, we have successful performed stimulation of the Schaffer collateral in vivo.
机译:我们正在开发具有集成的成像阵列,电刺激电极和用于神经成像和接口的化学传递的CMOS器件。我们的目的是在分子水平下对小鼠海马内部进行深度的功能成像。该装置具有不规则的前形状,以最小化插入大脑期间的损伤。在用于电接口的图像阵列上策略性地嵌入四个电极。开发了一种特殊的技术来包装用于体内荧光成像和接口的装置。使用脑体模过体外验证荧光成像,通过缓冲盐水中的阻抗试验证实了嵌入电极的电刺激能力。使用该设备,我们已经成功地进行了体内Schaffer抵押品的刺激。

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