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首页> 外文期刊>Japanese Journal of Applied Physics. Part 1, Regular Papers, Brief Communications & Review Papers >Development of a Fully Integrated Complementary Metal-Oxide-Semiconductor Image Sensor-Based Device for Real-Time In vivo Fluorescence Imaging inside the Mouse Hippocampus
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Development of a Fully Integrated Complementary Metal-Oxide-Semiconductor Image Sensor-Based Device for Real-Time In vivo Fluorescence Imaging inside the Mouse Hippocampus

机译:基于完全集成的互补金属氧化物半导体图像传感器的设备在小鼠海马体内实时体内荧光成像的发展。

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In our previous work, we demonstrated the potential of a complementary metal-oxide-semiconductor (CMOS) imaging device for use in imaging of the mouse brain. We showed that the device is capable of detecting fluorescence signal inside the mouse brain and successfully imaged real-time protease activity inside the hippocampus. In this work, we have improved the imaging device by integrating an excitation light source in the form of an ultraviolet light-emitting diode chip and an injection needle onto the sensor chip. This results in a compact single device imaging system for minimal invasive imaging inside the mouse brain. Also experimental repeatability is improved which enabled us to successful perform calibration of fluorophore concentration using the device. Fluorescence imaging experiments inside the brain phantom as well as in the mouse brain show that the device is capable of real time fluorescence detection. Using the device, we found that diffusion rate of chemical injected into the brain is smaller than 10 pmol/min. This work is expected to lead to the successful use of a CMOS imaging device for the study of the functions of the brain.
机译:在我们之前的工作中,我们展示了互补金属氧化物半导体(CMOS)成像设备在小鼠大脑成像中的潜力。我们表明该设备能够检测小鼠大脑内部的荧光信号,并成功成像了海马内部的实时蛋白酶活性。在这项工作中,我们通过将激发光源以紫外发光二极管芯片和注射针的形式集成到传感器芯片上,从而改进了成像设备。这样就形成了一个紧凑的单设备成像系统,可在小鼠大脑内部进行微创成像。实验的重复性也得到了改善,这使我们能够使用该设备成功执行荧光团浓度的校准。脑部幻影以及小鼠脑部的荧光成像实验表明,该设备能够进行实时荧光检测。使用该设备,我们发现注入大脑的化学物质的扩散速率小于10 pmol / min。预期这项工作将导致CMOS成像设备成功用于研究大脑功能。

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